SlideShare a Scribd company logo
1 of 12
Download to read offline
GBH Enterprises, Ltd.

Process Engineering Guide:
GBHE-PEG-HEA-517

Laminar Heat Transfer to NonNewtonian Fluids in Circular Tubes

Information contained in this publication or as otherwise supplied to Users is
believed to be accurate and correct at time of going to press, and is given in
good faith, but it is for the User to satisfy itself of the suitability of the information
for its own particular purpose. GBHE gives no warranty as to the fitness of this
information for any particular purpose and any implied warranty or condition
(statutory or otherwise) is excluded except to the extent that exclusion is
prevented by law. GBHE accepts no liability resulting from reliance on this
information. Freedom under Patent, Copyright and Designs cannot be assumed.

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
Process Engineering Guide:

Laminar Heat Transfer to NonNewtonian Fluids in Circular
Tubes

CONTENTS

SECTION

0

INTRODUCTION/PURPOSE

2

1

SCOPE

2

2

FIELD OF APPLICATION

2

3

DEFINITIONS

2

4

APPLICABILITY AND LIMITATIONS

2

4.1
4.2

Applicability
Limitations

2
3

5

THEORETICAL BACKGROUND

4

6

PRESENTATION OF RESULTS

5

7

PRESENTATION OF RESULTS

5

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
8

USE OF “The VAULT”

5

8.1

Limitations of “The VAULT”

6

9

NOMENCLATURE

6

10

BIBLIOGRAPHY

7

DOCUMENTS REFERRED TO IN THIS PROCESS
ENGINEERING GUIDE

APPENDICES

7

A

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
0

INTRODUCTION/PURPOSE

This Process Engineering Guide is one of a series of guides on non-Newtonian
fluids based on reports prepared for GBH Enterprises.
Heat transfer to viscous fluids in laminar flow is a process which is frequently
encountered. The fluids of commercial interest may be Newtonian or nonNewtonian. A notable feature of many such viscous fluids is that their rheological
properties are very sensitive to temperature. For heat transfer the viscosity will
vary markedly with radial position. This variation can have a large effect on both
the radial temperature and velocity profiles and consequently on heat transfer
rates and pressure drop.

1

SCOPE

This guide introduces a mathematical model which is capable of accurately
predicting temperature and velocity profiles, heat transfer rates and pressure
drop for viscous Newtonian and non-Newtonian fluids during heat transfer in
laminar flow in tubes. The model deals not only with the simple problem of
laminar heat transfer to Newtonian fluids, but also with the following
complications which can have a significant effect in some situations:
(a)

Fluid Rheology.

(b)

Boundary Conditions.

(c)

Viscous Shear Heating.

(d)

Expansion Cooling.

(e)

nternal Heat Generation.

The complete mathematical treatment of this problem is complex and beyond the
scope of this guide.

2

FIELD OF APPLICATION

This guide applies to the process engineering community in GBH Enterprises
worldwide.

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
3

DEFINITIONS

For the purposes of this guide, no specific definitions apply.
4

APPLICABILITY AND LIMITATIONS

4.1

Applicability
(a) Fluid Rheology
The method will cater for a range of non-Newtonian fluid types, viz.,
power law fluids which can have a yield stress for which the rheological
equation is of the form:

and also fluids whose rheological characteristics are more generally
described in terms of shear stress and shear rate by:

where the viscosity is evaluated as a function directly from viscometric data. The
Newtonian fluid is included merely as a special case.
For more information on the interpretation of viscometric data for non-Newtonian
fluids, see GBHE-PEG-FLO-302.
(b)

Boundary conditions
The inlet fluid temperature can be constant or vary with radial position.
The wall temperature can be constant or an arbitrary function of distance.
Uniform wall heat flux also can be dealt with.

(c)

Viscous shear heating
Viscous shear heating is included but this will only be of significance with
fluids of very high viscosity such as polymer melts which are subjected to
high pressure drops (greater than 30 bar).

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
(d)

Expansion cooling
This effect is included but except for very high pressure drop situations,
such as in polymer melt flow, it will not be significant.

(e)

Internal heat generation
Internal heat generation, such as due to heat of reaction, can be included
provided this is uniform.

4.2

Limitations

The analysis of heat transfer to non-Newtonian fluids requires that many
simplifications be made to the equations of conservation of mass, momentum
and energy in order to allow a solution to be obtained. The normal assumptions
are:
(a)

Density, thermal conductivity and specific heat of the fluid are independent
of temperature (and these are usually realistic assumptions).

(b)

The shear stress at any point is a function of shear rate, temperature and
pressure only. (Time dependant rheological behavior is not considered)

(c)

The flow is steady, laminar and axisymmetric and radial and tangential
velocities are negligible.

(d)

Natural convection is negligible and all elastic forces are treated as
entrance losses.

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
5

THEORETICAL BACKGROUND

The simplified conservation equations are as follows:
Conservation of momentum:

Assuming

And

Conservation of mass:

Conservation of energy:

Simplifying the thermal expansion term gives:

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
Substituting this in equation (7) and rearranging gives:

These equations should be solved in conjunction with the definition of the
rheological character of the fluid which is assumed to be viscous, non-Newtonian
fluid. The shear stress may be expressed by Equation! (2), or the viscosity term
in equation (2) may be expressed as a temperature dependent power law
function from equation (1).
Before solving, the equations and the corresponding boundary conditions are
expressed in non-dimensional form.
These equations are solved by the substitution of implicit finite difference
approximations for the partial differentials. The resultant algebraic equations
were solved using Thomas's method. The non-linear terms were rendered
constant at each point by secondary calculations based upon their values at the
previous position upstream, thus eliminating lengthy iterative calculations.

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
6

PRESENTATION OF RESULTS

The results are computed in the form T(r,z), u(r,z) and P(z), i.e. the radial
temperature and velocity profiles and the axial pressure profile. In some cases
this is the result required, but for heat transfer calculations it is often useful to
present the results in the form of a Nusselt number as a function of the Graetz
number (a dimensionless axial distance). The appropriate definition of the
Nusselt number depends on the wall boundary conditions as follows.

7

EXPERIMENTAL VERIFICATION OF PROCEDURE

The procedures adopted in this guide have been substantiated by experiment for
a range of fluids, including Newtonian oils and solutions of polymers (see Ref.
[1]).

8

USE OF “The VAULT”

As well as performing the calculations for laminar heat transfer, The VAULT will
also calculate turbulent heat transfer and isothermal pressure drop for nonNewtonian fluid flow in circular pipes.
The VAULT will handle laminar heat transfer for both Newtonian fluids and
generalized Bingham plastics. The rheological properties of the generalized
Bingham plastic are assumed to be described by the equation :

The consistency index K is considered to be a function of temperature, defined
by :

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
The yield stress xy and the flow behavior index n are both assumed to be
independent of temperature. (Equations (10) and (11) are equivalent to the
equation (1).)
Two alternative boundary conditions may be specified:
a)

Constant wall temperature.

b)

Constant wall heat flux

An example of the output from “The VAULT” is given as Appendix A

8.1

Limitations of “The VAULT”

General methods describe / generate temperatures and velocities as functions of
both radial and longitudinal position, and pressures as functions of longitudinal
position, the output from “The VAULT” only gives the total pressure drop and
the radial variation of temperature and velocity at the exit of the pipe. It also gives
the average Nusselt number and heat transfer coefficient. If the variation of these
values along the pipe is required, it is necessary to perform several runs with
different pipe lengths. Unfortunately, “The VAULT” does not accept data input
from a file, so all the data has to be entered afresh for each different pipe length.
The radial variation in inlet temperature described in Clause 4.1 (b) above cannot
be used with VISFLO, nor can the variable wall temperature option. The latter
may be partially simulated by dividing the pipe into a series of sections and
performing repeated runs with differing inlet and wall temperatures, but this will
not correctly model the radial variation of temperature from one section to the
next.

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
9

NOMENCLATURE

Symbol

Meaning

Unit

CP
Cv
f
K
Ko
k
n
p
Q
r
T
uz
z

Specific heat at constant pressure
Specific heat at constant volume
function
consistency index
reference consistency index at To
thermal conductivity
power law index
pressure
rate of internal heat generation
radial distance
temperature
axial velocity
axial position

Jkg-1K-1
Jkg-1K-1

Symbol
(Greek)

Meaning

Unit

β
ẏ
µ
ρ
ṫ
ṫw
Ҝ

compressibility [m2/N]
shear rate
viscosity
density
shear stress
wall shear stress
coefficient of thermal expansion

Wm-1K-1
Nm-2
W
m
K
ms-1
m

s-1
N.s m-2
kgm-3
kgm-1s-2
kgm-1s-2
K-1

Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com
Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown
Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass
Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance
Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts /
Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals
Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries
Web Site: www.GBHEnterprises.com

More Related Content

What's hot

Heat & Mass Transfer Chap 1 (FE-509) Food Engineering UAF
Heat & Mass Transfer Chap 1 (FE-509) Food Engineering UAFHeat & Mass Transfer Chap 1 (FE-509) Food Engineering UAF
Heat & Mass Transfer Chap 1 (FE-509) Food Engineering UAFAown Rizvi
 
Chemical reaction engineering
Chemical reaction engineeringChemical reaction engineering
Chemical reaction engineering1langshen
 
Heat and Mass Transfer - HMT
Heat and Mass Transfer - HMTHeat and Mass Transfer - HMT
Heat and Mass Transfer - HMTThe Learning Hub
 
Distillation Sequences, Complex Columns and Heat Integration
Distillation Sequences, Complex Columns and Heat IntegrationDistillation Sequences, Complex Columns and Heat Integration
Distillation Sequences, Complex Columns and Heat IntegrationGerard B. Hawkins
 
Thermal Design Margins for Heat Exchangers
Thermal Design Margins for Heat ExchangersThermal Design Margins for Heat Exchangers
Thermal Design Margins for Heat ExchangersGerard B. Hawkins
 
Heat Exchangers
Heat ExchangersHeat Exchangers
Heat Exchangersmohkab1
 
Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.
Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.
Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.Vishvaraj Chauhan
 
flow of falling film, transport phenomenon, navier stokes equation derivation
flow of falling film, transport phenomenon, navier stokes equation derivationflow of falling film, transport phenomenon, navier stokes equation derivation
flow of falling film, transport phenomenon, navier stokes equation derivationABU UMEER BANBHAN
 
Elementary and non elementary reaction(no-18) - copy
Elementary and non elementary reaction(no-18) - copyElementary and non elementary reaction(no-18) - copy
Elementary and non elementary reaction(no-18) - copyPrawin Ddy
 
Design of heat exchanger
Design of heat exchangerDesign of heat exchanger
Design of heat exchangerRana Abdul Rauf
 

What's hot (20)

Heat & Mass Transfer Chap 1 (FE-509) Food Engineering UAF
Heat & Mass Transfer Chap 1 (FE-509) Food Engineering UAFHeat & Mass Transfer Chap 1 (FE-509) Food Engineering UAF
Heat & Mass Transfer Chap 1 (FE-509) Food Engineering UAF
 
Introduction to transport phenomena bodh raj
Introduction to transport phenomena bodh rajIntroduction to transport phenomena bodh raj
Introduction to transport phenomena bodh raj
 
Chemical reaction engineering
Chemical reaction engineeringChemical reaction engineering
Chemical reaction engineering
 
Heat and Mass Transfer - HMT
Heat and Mass Transfer - HMTHeat and Mass Transfer - HMT
Heat and Mass Transfer - HMT
 
Solid Catalyzed Reactions
Solid Catalyzed Reactions Solid Catalyzed Reactions
Solid Catalyzed Reactions
 
Heat Exchanger
Heat ExchangerHeat Exchanger
Heat Exchanger
 
Convective mass transfer
Convective mass transferConvective mass transfer
Convective mass transfer
 
Distillation Sequences, Complex Columns and Heat Integration
Distillation Sequences, Complex Columns and Heat IntegrationDistillation Sequences, Complex Columns and Heat Integration
Distillation Sequences, Complex Columns and Heat Integration
 
Thermal Design Margins for Heat Exchangers
Thermal Design Margins for Heat ExchangersThermal Design Margins for Heat Exchangers
Thermal Design Margins for Heat Exchangers
 
Heat Exchangers
Heat ExchangersHeat Exchangers
Heat Exchangers
 
Heat exchanger design.
Heat exchanger design.Heat exchanger design.
Heat exchanger design.
 
Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.
Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.
Shell and Tube Heat Exchangers, LMTD, Extended Surface Heat Exchangers.
 
flow of falling film, transport phenomenon, navier stokes equation derivation
flow of falling film, transport phenomenon, navier stokes equation derivationflow of falling film, transport phenomenon, navier stokes equation derivation
flow of falling film, transport phenomenon, navier stokes equation derivation
 
Cre ppt
Cre pptCre ppt
Cre ppt
 
Elementary and non elementary reaction(no-18) - copy
Elementary and non elementary reaction(no-18) - copyElementary and non elementary reaction(no-18) - copy
Elementary and non elementary reaction(no-18) - copy
 
Dimensionless number
Dimensionless numberDimensionless number
Dimensionless number
 
Heat Exchangers
Heat ExchangersHeat Exchangers
Heat Exchangers
 
Heat exchangers
Heat exchangersHeat exchangers
Heat exchangers
 
Design of heat exchanger
Design of heat exchangerDesign of heat exchanger
Design of heat exchanger
 
Reactor types.ppt
Reactor types.pptReactor types.ppt
Reactor types.ppt
 

Viewers also liked

Turbulent Heat Transfer to Non Newtonian Fluids in Circular Tubes
Turbulent Heat Transfer to Non Newtonian Fluids in Circular TubesTurbulent Heat Transfer to Non Newtonian Fluids in Circular Tubes
Turbulent Heat Transfer to Non Newtonian Fluids in Circular TubesGerard B. Hawkins
 
Selection of Heat Exchanger Types
Selection of Heat Exchanger TypesSelection of Heat Exchanger Types
Selection of Heat Exchanger TypesGerard B. Hawkins
 
AIR COOLED HEAT EXCHANGER
AIR COOLED HEAT EXCHANGERAIR COOLED HEAT EXCHANGER
AIR COOLED HEAT EXCHANGERAhsan Shakil
 
Heating and Cooling of Batch Processes
Heating and Cooling of Batch ProcessesHeating and Cooling of Batch Processes
Heating and Cooling of Batch ProcessesGerard B. Hawkins
 
Selection and Design of Condensers
Selection and Design of CondensersSelection and Design of Condensers
Selection and Design of CondensersGerard B. Hawkins
 
Heat exchanger design handbook
Heat exchanger design handbookHeat exchanger design handbook
Heat exchanger design handbookvijayabhaskar83
 
Fundamentals of heat exchanger design
Fundamentals of heat exchanger designFundamentals of heat exchanger design
Fundamentals of heat exchanger designJuan Guillermo
 
Air Cooled Heat Exchanger Design
Air Cooled Heat Exchanger DesignAir Cooled Heat Exchanger Design
Air Cooled Heat Exchanger DesignGerard B. Hawkins
 

Viewers also liked (8)

Turbulent Heat Transfer to Non Newtonian Fluids in Circular Tubes
Turbulent Heat Transfer to Non Newtonian Fluids in Circular TubesTurbulent Heat Transfer to Non Newtonian Fluids in Circular Tubes
Turbulent Heat Transfer to Non Newtonian Fluids in Circular Tubes
 
Selection of Heat Exchanger Types
Selection of Heat Exchanger TypesSelection of Heat Exchanger Types
Selection of Heat Exchanger Types
 
AIR COOLED HEAT EXCHANGER
AIR COOLED HEAT EXCHANGERAIR COOLED HEAT EXCHANGER
AIR COOLED HEAT EXCHANGER
 
Heating and Cooling of Batch Processes
Heating and Cooling of Batch ProcessesHeating and Cooling of Batch Processes
Heating and Cooling of Batch Processes
 
Selection and Design of Condensers
Selection and Design of CondensersSelection and Design of Condensers
Selection and Design of Condensers
 
Heat exchanger design handbook
Heat exchanger design handbookHeat exchanger design handbook
Heat exchanger design handbook
 
Fundamentals of heat exchanger design
Fundamentals of heat exchanger designFundamentals of heat exchanger design
Fundamentals of heat exchanger design
 
Air Cooled Heat Exchanger Design
Air Cooled Heat Exchanger DesignAir Cooled Heat Exchanger Design
Air Cooled Heat Exchanger Design
 

Similar to Laminar Heat Transfer to Non Newtonian Fluids in Circular Tubes

Pipeline Design for Isothermal, Laminar Flow of Non-Newtonian Fluids
Pipeline Design for Isothermal, Laminar Flow of Non-Newtonian FluidsPipeline Design for Isothermal, Laminar Flow of Non-Newtonian Fluids
Pipeline Design for Isothermal, Laminar Flow of Non-Newtonian FluidsGerard B. Hawkins
 
Physical properties and thermochemistry for reactor technology
Physical properties and thermochemistry for reactor technologyPhysical properties and thermochemistry for reactor technology
Physical properties and thermochemistry for reactor technologyGerard B. Hawkins
 
Mixing of Gas Liquid Systems
Mixing of Gas Liquid SystemsMixing of Gas Liquid Systems
Mixing of Gas Liquid SystemsGerard B. Hawkins
 
The Design and Layout of Vertical Thermosyphon Reboilers
The Design and Layout of Vertical Thermosyphon ReboilersThe Design and Layout of Vertical Thermosyphon Reboilers
The Design and Layout of Vertical Thermosyphon ReboilersGerard B. Hawkins
 
Fouling Resistances for Cooling Water
Fouling Resistances for Cooling WaterFouling Resistances for Cooling Water
Fouling Resistances for Cooling WaterGerard B. Hawkins
 
Shell and Tube Heat Exchangers Using Cooling Water
Shell and Tube Heat Exchangers Using Cooling WaterShell and Tube Heat Exchangers Using Cooling Water
Shell and Tube Heat Exchangers Using Cooling WaterGerard B. Hawkins
 
Overflows and Gravity Drainage Systems
Overflows and Gravity Drainage SystemsOverflows and Gravity Drainage Systems
Overflows and Gravity Drainage SystemsGerard B. Hawkins
 
Liquid Liquid Extraction - Basic Principles
Liquid Liquid Extraction - Basic PrinciplesLiquid Liquid Extraction - Basic Principles
Liquid Liquid Extraction - Basic PrinciplesGerard B. Hawkins
 
H - Acid Caustic Fusion Stage
H - Acid Caustic Fusion StageH - Acid Caustic Fusion Stage
H - Acid Caustic Fusion StageGerard B. Hawkins
 
Control of Continuous Distillation Columns
Control of Continuous Distillation ColumnsControl of Continuous Distillation Columns
Control of Continuous Distillation ColumnsGerard B. Hawkins
 
Avoiding Stress Corrosion Cracking of Carbon Low Alloy and Austenitic Stainl...
Avoiding Stress Corrosion Cracking of  Carbon Low Alloy and Austenitic Stainl...Avoiding Stress Corrosion Cracking of  Carbon Low Alloy and Austenitic Stainl...
Avoiding Stress Corrosion Cracking of Carbon Low Alloy and Austenitic Stainl...Gerard B. Hawkins
 
Data Sources For Calculating Chemical Reaction Equilibria
Data Sources For Calculating Chemical Reaction EquilibriaData Sources For Calculating Chemical Reaction Equilibria
Data Sources For Calculating Chemical Reaction EquilibriaGerard B. Hawkins
 
Estimation of Pressure Drop in Pipe Systems
Estimation of Pressure Drop in Pipe SystemsEstimation of Pressure Drop in Pipe Systems
Estimation of Pressure Drop in Pipe SystemsGerard B. Hawkins
 
Hydrogenation Reactor Run Away Conditions
Hydrogenation Reactor Run Away ConditionsHydrogenation Reactor Run Away Conditions
Hydrogenation Reactor Run Away ConditionsGerard B. Hawkins
 
(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT
(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT
(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENTGerard B. Hawkins
 

Similar to Laminar Heat Transfer to Non Newtonian Fluids in Circular Tubes (20)

Pipeline Design for Isothermal, Laminar Flow of Non-Newtonian Fluids
Pipeline Design for Isothermal, Laminar Flow of Non-Newtonian FluidsPipeline Design for Isothermal, Laminar Flow of Non-Newtonian Fluids
Pipeline Design for Isothermal, Laminar Flow of Non-Newtonian Fluids
 
Batch Distillation
Batch DistillationBatch Distillation
Batch Distillation
 
Physical properties and thermochemistry for reactor technology
Physical properties and thermochemistry for reactor technologyPhysical properties and thermochemistry for reactor technology
Physical properties and thermochemistry for reactor technology
 
Sedimentation
SedimentationSedimentation
Sedimentation
 
Filtration
FiltrationFiltration
Filtration
 
Mixing of Gas Liquid Systems
Mixing of Gas Liquid SystemsMixing of Gas Liquid Systems
Mixing of Gas Liquid Systems
 
The Design and Layout of Vertical Thermosyphon Reboilers
The Design and Layout of Vertical Thermosyphon ReboilersThe Design and Layout of Vertical Thermosyphon Reboilers
The Design and Layout of Vertical Thermosyphon Reboilers
 
Large Water Pumps
Large Water PumpsLarge Water Pumps
Large Water Pumps
 
Fouling Resistances for Cooling Water
Fouling Resistances for Cooling WaterFouling Resistances for Cooling Water
Fouling Resistances for Cooling Water
 
Shell and Tube Heat Exchangers Using Cooling Water
Shell and Tube Heat Exchangers Using Cooling WaterShell and Tube Heat Exchangers Using Cooling Water
Shell and Tube Heat Exchangers Using Cooling Water
 
Overflows and Gravity Drainage Systems
Overflows and Gravity Drainage SystemsOverflows and Gravity Drainage Systems
Overflows and Gravity Drainage Systems
 
Liquid Liquid Extraction - Basic Principles
Liquid Liquid Extraction - Basic PrinciplesLiquid Liquid Extraction - Basic Principles
Liquid Liquid Extraction - Basic Principles
 
Gas Mixing
Gas MixingGas Mixing
Gas Mixing
 
H - Acid Caustic Fusion Stage
H - Acid Caustic Fusion StageH - Acid Caustic Fusion Stage
H - Acid Caustic Fusion Stage
 
Control of Continuous Distillation Columns
Control of Continuous Distillation ColumnsControl of Continuous Distillation Columns
Control of Continuous Distillation Columns
 
Avoiding Stress Corrosion Cracking of Carbon Low Alloy and Austenitic Stainl...
Avoiding Stress Corrosion Cracking of  Carbon Low Alloy and Austenitic Stainl...Avoiding Stress Corrosion Cracking of  Carbon Low Alloy and Austenitic Stainl...
Avoiding Stress Corrosion Cracking of Carbon Low Alloy and Austenitic Stainl...
 
Data Sources For Calculating Chemical Reaction Equilibria
Data Sources For Calculating Chemical Reaction EquilibriaData Sources For Calculating Chemical Reaction Equilibria
Data Sources For Calculating Chemical Reaction Equilibria
 
Estimation of Pressure Drop in Pipe Systems
Estimation of Pressure Drop in Pipe SystemsEstimation of Pressure Drop in Pipe Systems
Estimation of Pressure Drop in Pipe Systems
 
Hydrogenation Reactor Run Away Conditions
Hydrogenation Reactor Run Away ConditionsHydrogenation Reactor Run Away Conditions
Hydrogenation Reactor Run Away Conditions
 
(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT
(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT
(AGRU) ACID GAS SOUR SHIFT: CASE STUDY IN REFINERY GAS TREATMENT
 

More from Gerard B. Hawkins

Pressure Relief Systems Vol 2
Pressure Relief Systems   Vol 2Pressure Relief Systems   Vol 2
Pressure Relief Systems Vol 2Gerard B. Hawkins
 
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy GasesGAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy GasesGerard B. Hawkins
 
101 Things That Can Go Wrong on a Primary Reformer - Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer - Best Practices GuideGerard B. Hawkins
 
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...Gerard B. Hawkins
 
Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming Gerard B. Hawkins
 
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...Gerard B. Hawkins
 
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTSSTEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTSGerard B. Hawkins
 
Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption:  Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption: Gerard B. Hawkins
 
Calculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel GasCalculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel GasGerard B. Hawkins
 
Piping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning ProcedurePiping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning ProcedureGerard B. Hawkins
 
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS Gerard B. Hawkins
 
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...Gerard B. Hawkins
 
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...Gerard B. Hawkins
 
Getting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen PlantGetting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen PlantGerard B. Hawkins
 
EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS Gerard B. Hawkins
 
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...Gerard B. Hawkins
 
Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción Gerard B. Hawkins
 
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide Gerard B. Hawkins
 

More from Gerard B. Hawkins (20)

Pressure Relief Systems Vol 2
Pressure Relief Systems   Vol 2Pressure Relief Systems   Vol 2
Pressure Relief Systems Vol 2
 
Pressure Relief Systems
Pressure Relief Systems Pressure Relief Systems
Pressure Relief Systems
 
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy GasesGAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy Gases
 
101 Things That Can Go Wrong on a Primary Reformer - Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer - Best Practices Guide
 
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
 
Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming
 
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...
 
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTSSTEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
 
Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption:  Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption:
 
Calculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel GasCalculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel Gas
 
Pickling & Passivation
Pickling & PassivationPickling & Passivation
Pickling & Passivation
 
Piping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning ProcedurePiping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning Procedure
 
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
 
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
 
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
 
Getting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen PlantGetting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen Plant
 
EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS
 
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...
 
Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción
 
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide
 

Recently uploaded

Powerful Google developer tools for immediate impact! (2023-24 C)
Powerful Google developer tools for immediate impact! (2023-24 C)Powerful Google developer tools for immediate impact! (2023-24 C)
Powerful Google developer tools for immediate impact! (2023-24 C)wesley chun
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking MenDelhi Call girls
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)Gabriella Davis
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slidevu2urc
 
Data Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonData Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonAnna Loughnan Colquhoun
 
Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsJoaquim Jorge
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Miguel Araújo
 
Handwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsHandwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsMaria Levchenko
 
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...apidays
 
Factors to Consider When Choosing Accounts Payable Services Providers.pptx
Factors to Consider When Choosing Accounts Payable Services Providers.pptxFactors to Consider When Choosing Accounts Payable Services Providers.pptx
Factors to Consider When Choosing Accounts Payable Services Providers.pptxKatpro Technologies
 
A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?Igalia
 
EIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptx
EIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptxEIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptx
EIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptxEarley Information Science
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxMalak Abu Hammad
 
Slack Application Development 101 Slides
Slack Application Development 101 SlidesSlack Application Development 101 Slides
Slack Application Development 101 Slidespraypatel2
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘RTylerCroy
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Enterprise Knowledge
 
08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking MenDelhi Call girls
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Drew Madelung
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024The Digital Insurer
 

Recently uploaded (20)

Powerful Google developer tools for immediate impact! (2023-24 C)
Powerful Google developer tools for immediate impact! (2023-24 C)Powerful Google developer tools for immediate impact! (2023-24 C)
Powerful Google developer tools for immediate impact! (2023-24 C)
 
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
08448380779 Call Girls In Diplomatic Enclave Women Seeking Men
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slide
 
Data Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonData Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt Robison
 
Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and Myths
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
 
Handwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsHandwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed texts
 
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
 
Factors to Consider When Choosing Accounts Payable Services Providers.pptx
Factors to Consider When Choosing Accounts Payable Services Providers.pptxFactors to Consider When Choosing Accounts Payable Services Providers.pptx
Factors to Consider When Choosing Accounts Payable Services Providers.pptx
 
A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?
 
EIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptx
EIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptxEIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptx
EIS-Webinar-Prompt-Knowledge-Eng-2024-04-08.pptx
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptx
 
Slack Application Development 101 Slides
Slack Application Development 101 SlidesSlack Application Development 101 Slides
Slack Application Development 101 Slides
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...
 
08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men08448380779 Call Girls In Civil Lines Women Seeking Men
08448380779 Call Girls In Civil Lines Women Seeking Men
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024
 

Laminar Heat Transfer to Non Newtonian Fluids in Circular Tubes

  • 1. GBH Enterprises, Ltd. Process Engineering Guide: GBHE-PEG-HEA-517 Laminar Heat Transfer to NonNewtonian Fluids in Circular Tubes Information contained in this publication or as otherwise supplied to Users is believed to be accurate and correct at time of going to press, and is given in good faith, but it is for the User to satisfy itself of the suitability of the information for its own particular purpose. GBHE gives no warranty as to the fitness of this information for any particular purpose and any implied warranty or condition (statutory or otherwise) is excluded except to the extent that exclusion is prevented by law. GBHE accepts no liability resulting from reliance on this information. Freedom under Patent, Copyright and Designs cannot be assumed. Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 2. Process Engineering Guide: Laminar Heat Transfer to NonNewtonian Fluids in Circular Tubes CONTENTS SECTION 0 INTRODUCTION/PURPOSE 2 1 SCOPE 2 2 FIELD OF APPLICATION 2 3 DEFINITIONS 2 4 APPLICABILITY AND LIMITATIONS 2 4.1 4.2 Applicability Limitations 2 3 5 THEORETICAL BACKGROUND 4 6 PRESENTATION OF RESULTS 5 7 PRESENTATION OF RESULTS 5 Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 3. 8 USE OF “The VAULT” 5 8.1 Limitations of “The VAULT” 6 9 NOMENCLATURE 6 10 BIBLIOGRAPHY 7 DOCUMENTS REFERRED TO IN THIS PROCESS ENGINEERING GUIDE APPENDICES 7 A Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 4. 0 INTRODUCTION/PURPOSE This Process Engineering Guide is one of a series of guides on non-Newtonian fluids based on reports prepared for GBH Enterprises. Heat transfer to viscous fluids in laminar flow is a process which is frequently encountered. The fluids of commercial interest may be Newtonian or nonNewtonian. A notable feature of many such viscous fluids is that their rheological properties are very sensitive to temperature. For heat transfer the viscosity will vary markedly with radial position. This variation can have a large effect on both the radial temperature and velocity profiles and consequently on heat transfer rates and pressure drop. 1 SCOPE This guide introduces a mathematical model which is capable of accurately predicting temperature and velocity profiles, heat transfer rates and pressure drop for viscous Newtonian and non-Newtonian fluids during heat transfer in laminar flow in tubes. The model deals not only with the simple problem of laminar heat transfer to Newtonian fluids, but also with the following complications which can have a significant effect in some situations: (a) Fluid Rheology. (b) Boundary Conditions. (c) Viscous Shear Heating. (d) Expansion Cooling. (e) nternal Heat Generation. The complete mathematical treatment of this problem is complex and beyond the scope of this guide. 2 FIELD OF APPLICATION This guide applies to the process engineering community in GBH Enterprises worldwide. Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 5. 3 DEFINITIONS For the purposes of this guide, no specific definitions apply. 4 APPLICABILITY AND LIMITATIONS 4.1 Applicability (a) Fluid Rheology The method will cater for a range of non-Newtonian fluid types, viz., power law fluids which can have a yield stress for which the rheological equation is of the form: and also fluids whose rheological characteristics are more generally described in terms of shear stress and shear rate by: where the viscosity is evaluated as a function directly from viscometric data. The Newtonian fluid is included merely as a special case. For more information on the interpretation of viscometric data for non-Newtonian fluids, see GBHE-PEG-FLO-302. (b) Boundary conditions The inlet fluid temperature can be constant or vary with radial position. The wall temperature can be constant or an arbitrary function of distance. Uniform wall heat flux also can be dealt with. (c) Viscous shear heating Viscous shear heating is included but this will only be of significance with fluids of very high viscosity such as polymer melts which are subjected to high pressure drops (greater than 30 bar). Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 6. (d) Expansion cooling This effect is included but except for very high pressure drop situations, such as in polymer melt flow, it will not be significant. (e) Internal heat generation Internal heat generation, such as due to heat of reaction, can be included provided this is uniform. 4.2 Limitations The analysis of heat transfer to non-Newtonian fluids requires that many simplifications be made to the equations of conservation of mass, momentum and energy in order to allow a solution to be obtained. The normal assumptions are: (a) Density, thermal conductivity and specific heat of the fluid are independent of temperature (and these are usually realistic assumptions). (b) The shear stress at any point is a function of shear rate, temperature and pressure only. (Time dependant rheological behavior is not considered) (c) The flow is steady, laminar and axisymmetric and radial and tangential velocities are negligible. (d) Natural convection is negligible and all elastic forces are treated as entrance losses. Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 7. 5 THEORETICAL BACKGROUND The simplified conservation equations are as follows: Conservation of momentum: Assuming And Conservation of mass: Conservation of energy: Simplifying the thermal expansion term gives: Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 8. Substituting this in equation (7) and rearranging gives: These equations should be solved in conjunction with the definition of the rheological character of the fluid which is assumed to be viscous, non-Newtonian fluid. The shear stress may be expressed by Equation! (2), or the viscosity term in equation (2) may be expressed as a temperature dependent power law function from equation (1). Before solving, the equations and the corresponding boundary conditions are expressed in non-dimensional form. These equations are solved by the substitution of implicit finite difference approximations for the partial differentials. The resultant algebraic equations were solved using Thomas's method. The non-linear terms were rendered constant at each point by secondary calculations based upon their values at the previous position upstream, thus eliminating lengthy iterative calculations. Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 9. 6 PRESENTATION OF RESULTS The results are computed in the form T(r,z), u(r,z) and P(z), i.e. the radial temperature and velocity profiles and the axial pressure profile. In some cases this is the result required, but for heat transfer calculations it is often useful to present the results in the form of a Nusselt number as a function of the Graetz number (a dimensionless axial distance). The appropriate definition of the Nusselt number depends on the wall boundary conditions as follows. 7 EXPERIMENTAL VERIFICATION OF PROCEDURE The procedures adopted in this guide have been substantiated by experiment for a range of fluids, including Newtonian oils and solutions of polymers (see Ref. [1]). 8 USE OF “The VAULT” As well as performing the calculations for laminar heat transfer, The VAULT will also calculate turbulent heat transfer and isothermal pressure drop for nonNewtonian fluid flow in circular pipes. The VAULT will handle laminar heat transfer for both Newtonian fluids and generalized Bingham plastics. The rheological properties of the generalized Bingham plastic are assumed to be described by the equation : The consistency index K is considered to be a function of temperature, defined by : Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 10. The yield stress xy and the flow behavior index n are both assumed to be independent of temperature. (Equations (10) and (11) are equivalent to the equation (1).) Two alternative boundary conditions may be specified: a) Constant wall temperature. b) Constant wall heat flux An example of the output from “The VAULT” is given as Appendix A 8.1 Limitations of “The VAULT” General methods describe / generate temperatures and velocities as functions of both radial and longitudinal position, and pressures as functions of longitudinal position, the output from “The VAULT” only gives the total pressure drop and the radial variation of temperature and velocity at the exit of the pipe. It also gives the average Nusselt number and heat transfer coefficient. If the variation of these values along the pipe is required, it is necessary to perform several runs with different pipe lengths. Unfortunately, “The VAULT” does not accept data input from a file, so all the data has to be entered afresh for each different pipe length. The radial variation in inlet temperature described in Clause 4.1 (b) above cannot be used with VISFLO, nor can the variable wall temperature option. The latter may be partially simulated by dividing the pipe into a series of sections and performing repeated runs with differing inlet and wall temperatures, but this will not correctly model the radial variation of temperature from one section to the next. Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 11. 9 NOMENCLATURE Symbol Meaning Unit CP Cv f K Ko k n p Q r T uz z Specific heat at constant pressure Specific heat at constant volume function consistency index reference consistency index at To thermal conductivity power law index pressure rate of internal heat generation radial distance temperature axial velocity axial position Jkg-1K-1 Jkg-1K-1 Symbol (Greek) Meaning Unit β ẏ µ ρ ṫ ṫw Ҝ compressibility [m2/N] shear rate viscosity density shear stress wall shear stress coefficient of thermal expansion Wm-1K-1 Nm-2 W m K ms-1 m s-1 N.s m-2 kgm-3 kgm-1s-2 kgm-1s-2 K-1 Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com
  • 12. Refinery Process Stream Purification Refinery Process Catalysts Troubleshooting Refinery Process Catalyst Start-Up / Shutdown Activation Reduction In-situ Ex-situ Sulfiding Specializing in Refinery Process Catalyst Performance Evaluation Heat & Mass Balance Analysis Catalyst Remaining Life Determination Catalyst Deactivation Assessment Catalyst Performance Characterization Refining & Gas Processing & Petrochemical Industries Catalysts / Process Technology - Hydrogen Catalysts / Process Technology – Ammonia Catalyst Process Technology - Methanol Catalysts / process Technology – Petrochemicals Specializing in the Development & Commercialization of New Technology in the Refining & Petrochemical Industries Web Site: www.GBHEnterprises.com