SlideShare ist ein Scribd-Unternehmen logo
1 von 20
Outline.
Horizontal Vessel Loading Calculation Procedure.
Conclusion.
Questions.
Step 1: Review of vessel drawing (Vendor Equipment Drawing).
Step 2: Verification of foundation location, elevation & external fittings loads.
Step 3: Description of Foundation Loads.
Step 4: Load combinations for foundation sizing / loads & Foundation design.
Step 5: Anchor Bolt Check.
Step 6: Pedestal Sizing and reinforcement.
Step 7: Slide plate.
Horizontal Vessel Loading Calculation
Procedure
Step 1: Review of Vessel Drawing (Vendor Equipment Drawing).
 Engineer needs to review the drawings came from the vender, and check whether
you have all the following information:
1. Vessel Erection weight (Df).
2. Vessel Empty weight (De).
3. Vessel Operating weight (Do).
4. Vessel Hydro test weight (Dt).
5. Wind Shear and Moment in transverse direction.
6. Seismic Shear and Moment in transverse direction.
7. Vessel operating temperature and confirm with Mechanical discipline.
8. Total length of vessel and spacing of saddle supports.
9. Vessel Center of Gravity location with respect to saddle.
10. Anchor bolt location on fixed and sliding saddle.
11. Detail of equipment saddle (fixed and sliding).
Step 2: Verification of Foundation Location, Elevation & External Fittings
Loads.
 Engineer need to review Plot plan, Equipment location drawings and 3-D Models
and check whether you have all the following information:
1. Verify the area available for foundation.
2. Verify Foundation location and Elevation.
3. Location and size of Platforms around the vessel.
4. Locations of underground pipes.
5. Electrical and Instrument duct banks.
6. Locations and extent of adjacent foundations.
7. Verify the location and extent of new/existing foundations not shown in
3D model or plot plan.
Step 3: Description of Foundation Loads.
Vessel Erection weight (Df): Fabricated weight of the exchanger or vessel, generally taken
from vendor certified exchanger or vessel drawings.
Vessel Empty weight (De): Empty weight of the exchanger or vessel including all
attachments, trays, internals, bundle, insulation, fireproofing, agitators, piping, ladders,
platforms, etc.
Vessel Operating weight (Do): Empty dead load of the exchanger or vessel plus the
maximum weight of contents (including packing/catalyst) during normal operation.
Vessel Hydro test weight (Dt): Empty dead load of the vessel plus the weight of test
medium contained in the system.
Wind Shear and Moment (W): You will find this load data in vendor drawings. However,
you have to calculate this load based on project design basis.
Seismic Shear and Moment (E): During seismic load calculation, you need to consider the
pipes and platforms attached with the vessel.
Thermal Load (T): The thermal load is defined as the load which results from thermal
expansion or contraction of the vessel in the longitudinal direction.
Step 4: Load Combinations for Foundation Sizing / Loads & Foundation
Design.
 You need to create the load combination per your project design criteria. However,
I have created this load combination based on ACI 318:
I. Load combination for Foundation sizing and Pile load calculation (un-factored
load calculation):
1. LC1: Do + Dp + T.
2. LC2: (De1 or De2) + Wind.
3. LC3: De2+ Seismic.
4. LC4: Do + Dp + Wind + T.
5. LC5: Do + Dp + Seismic + T.
6. LC6: Dt + 025*Wind.
Step 4: Load Combinations for Foundation Sizing / Loads & Foundation
design.
II. Load combination for Pedestal and Foundation design (factored load
calculation):
1. LC7: 1.4*(Do + T + Dp ).
2. LC8: 0.75 [1.4 De2 (or 1.4 De1)] +1.6 Wind.
3. LC9: 1.2 De2 +1.0 E.
4. LC10: 0.75 (1.4 Do +1.4 T + 1.4 Dp) +/- 1.6 Wind.
5. LC11: 1.2 (Do +T + Dp) + 1.0 E.
6. LC12: 0.75 (1.4 Dt) + 1.6 (0.25 W).
 The weight of the foundation and of the soil on top of the foundation shall be
included as dead load in all of these load combinations.
Step 5: Anchor Bolt Check.
 Maximum shear and tension on anchor bolt shall be calculated based on above
load combinations and shall be compared with project acceptable value.
Step 6: Pedestal Sizing & Reinforcement.
 Unless controlled by other factors, the minimum pier dimensions in each direction should
equal to the dimensions of the base plate plus 100mm. Bars shall be sized in 50mm
increments. The minimum thickness of the bar should be approximately 10% of the bar
height, with a minimum of 250mm.
 Bars size should be adjusted to ensure the factored vertical force on the bar does not
exceed the value of {0.1Agfc¢} (Refer ACI 318 section 10.3.5).
 Bars should be designed as axially loaded cantilever flexural members.
 When the size of the bar cannot be adjusted and the value of the axial load exceeds
{0.1Agfc¢}, the bars should be designed as compression members subjected to combined
flexure and compressive axial load.
Step 6: Pedestal Sizing & Reinforcement.
 Shears on bars along both the longitudinal and transverse directions of the equipment
shall be checked per code requirements (refer ACI 318, Chapter 11).
 Reinforcement should normally be arranged symmetrically. Both the fixed end and
sliding end bars shall be sized and reinforced identically.
 A double tie shall be placed at the top of bars, spaced 50mm and 125mm below the
top of concrete (or below the bottom of grout), to protect the top of concrete bars against
cracking.
Step 7: Slide Plate.
 Slide plates are placed at the sliding end bars to allow longitudinal movement of
vessels due to the thermal growth. Slide plates should be galvanized or painted to
prevent corrosion.
 For large movements and/or heavy horizontal vessels, it may be necessary to use
slide plates with low coefficient of static friction, such as Lubrite, Teflon, etc.
 To complete the foundation design, should be create the following calculation
sheets:
 A calculation sheet for anchor bolt embedment length check (ex: ACI 318
appendix-D).
 A calculation sheet for foundation sizing (considering soil bearing pressure,
Sliding, and overturning), and check with soil consultant for acceptable values.
 A calculation sheet for foundation and pedestal reinforcement calculation per
your project design criteria.
Continue.
 Now from above steps, should be learnt the following:
 Different types of loads on foundation.
 Different criteria for the pedestal sizing.
 Maximum tension and shear force on each anchor bolt.
 A sample load combinations.
Horizontal Vessel Foundation Design Procedure

Weitere ähnliche Inhalte

Was ist angesagt?

Steel Warehouse Project
Steel Warehouse ProjectSteel Warehouse Project
Steel Warehouse ProjectJawad Shaukat
 
Design of pile cap
Design of  pile capDesign of  pile cap
Design of pile capPuspendu Ray
 
Footing design
Footing designFooting design
Footing designYasin J
 
Column base plates_prof_thomas_murray
Column base plates_prof_thomas_murrayColumn base plates_prof_thomas_murray
Column base plates_prof_thomas_murrayAlberto Rosado
 
Wind load calculation
Wind load calculationWind load calculation
Wind load calculationGodfrey James
 
BIAXIAL COLUMN DESIGN
BIAXIAL COLUMN DESIGNBIAXIAL COLUMN DESIGN
BIAXIAL COLUMN DESIGNshawon_sb
 
Koppolu abishek prying action
Koppolu abishek   prying actionKoppolu abishek   prying action
Koppolu abishek prying actionKoppolu Abishek
 
Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...
Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...
Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...ClearCalcs
 
Surface Structures, including SAP2000
Surface Structures, including SAP2000Surface Structures, including SAP2000
Surface Structures, including SAP2000Wolfgang Schueller
 

Was ist angesagt? (20)

Steel Warehouse Project
Steel Warehouse ProjectSteel Warehouse Project
Steel Warehouse Project
 
Wind load on pv system
Wind load on pv systemWind load on pv system
Wind load on pv system
 
Steel warehouse design report
Steel warehouse design reportSteel warehouse design report
Steel warehouse design report
 
Design of footing as per IS 456-2000
Design of footing as per IS 456-2000Design of footing as per IS 456-2000
Design of footing as per IS 456-2000
 
CSI ETABS & SAFE MANUAL: Slab Analysis and Design to EC2
CSI ETABS & SAFE MANUAL: Slab Analysis and Design to EC2CSI ETABS & SAFE MANUAL: Slab Analysis and Design to EC2
CSI ETABS & SAFE MANUAL: Slab Analysis and Design to EC2
 
Tutorial #4 - SACS Basic
Tutorial #4 - SACS BasicTutorial #4 - SACS Basic
Tutorial #4 - SACS Basic
 
Design of pile cap
Design of  pile capDesign of  pile cap
Design of pile cap
 
Footing design
Footing designFooting design
Footing design
 
Column base plates_prof_thomas_murray
Column base plates_prof_thomas_murrayColumn base plates_prof_thomas_murray
Column base plates_prof_thomas_murray
 
Unit 6: Bending and shear Stresses in beams
Unit 6: Bending and shear Stresses in beamsUnit 6: Bending and shear Stresses in beams
Unit 6: Bending and shear Stresses in beams
 
Wind loading
Wind loadingWind loading
Wind loading
 
Wind load calculation
Wind load calculationWind load calculation
Wind load calculation
 
BIAXIAL COLUMN DESIGN
BIAXIAL COLUMN DESIGNBIAXIAL COLUMN DESIGN
BIAXIAL COLUMN DESIGN
 
Koppolu abishek prying action
Koppolu abishek   prying actionKoppolu abishek   prying action
Koppolu abishek prying action
 
Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...
Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...
Designing a Concrete Beam Using the New AS3600:2018 - Webinar Slides - ClearC...
 
Beam Deflection Formulae
Beam Deflection FormulaeBeam Deflection Formulae
Beam Deflection Formulae
 
Design of pile foundation
Design of pile foundationDesign of pile foundation
Design of pile foundation
 
Wind_Load
Wind_LoadWind_Load
Wind_Load
 
Engineering & Design of Pipe Supports
Engineering & Design of Pipe SupportsEngineering & Design of Pipe Supports
Engineering & Design of Pipe Supports
 
Surface Structures, including SAP2000
Surface Structures, including SAP2000Surface Structures, including SAP2000
Surface Structures, including SAP2000
 

Andere mochten auch

Lateral load resisting systems
Lateral load resisting systemsLateral load resisting systems
Lateral load resisting systemsAhmad T.
 
Stability of High-Rise Buildings
Stability of High-Rise BuildingsStability of High-Rise Buildings
Stability of High-Rise BuildingsAkash Waghani
 
Lateral stability of building structures
Lateral stability of building structuresLateral stability of building structures
Lateral stability of building structuresWolfgang Schueller
 
Civil Engineering (Beams,Columns)
Civil Engineering (Beams,Columns)Civil Engineering (Beams,Columns)
Civil Engineering (Beams,Columns)mbrsalman
 

Andere mochten auch (6)

Lateral load resisting systems
Lateral load resisting systemsLateral load resisting systems
Lateral load resisting systems
 
Stability of High-Rise Buildings
Stability of High-Rise BuildingsStability of High-Rise Buildings
Stability of High-Rise Buildings
 
Chapter 16
Chapter 16Chapter 16
Chapter 16
 
Lateral stability of building structures
Lateral stability of building structuresLateral stability of building structures
Lateral stability of building structures
 
Tall buildings
Tall buildingsTall buildings
Tall buildings
 
Civil Engineering (Beams,Columns)
Civil Engineering (Beams,Columns)Civil Engineering (Beams,Columns)
Civil Engineering (Beams,Columns)
 

Ähnlich wie Horizontal Vessel Foundation Design Procedure

Casing Design 1.ppt
Casing Design 1.pptCasing Design 1.ppt
Casing Design 1.pptYibingYu3
 
Design by Analysis - A general guideline for pressure vessel
Design by Analysis - A general guideline for pressure vesselDesign by Analysis - A general guideline for pressure vessel
Design by Analysis - A general guideline for pressure vesselAnalyzeForSafety
 
Designing of Offshore DNV Container
Designing of Offshore DNV ContainerDesigning of Offshore DNV Container
Designing of Offshore DNV ContainerIDES Editor
 
143137557 storage-tanks
143137557 storage-tanks143137557 storage-tanks
143137557 storage-tanksbernard347
 
ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING
ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING
ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING Abhilash Chandra Dey
 
Offshore Support Vessels Design
Offshore Support Vessels DesignOffshore Support Vessels Design
Offshore Support Vessels DesignAhmed Taha
 
Analysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic loadAnalysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic loadHtinKyawHloon1
 
office final ppt [7760835] final update
office final ppt [7760835] final updateoffice final ppt [7760835] final update
office final ppt [7760835] final updateAashish Soin
 
offshore structural design detailed engineering fixed plate form
offshore structural design detailed engineering fixed plate formoffshore structural design detailed engineering fixed plate form
offshore structural design detailed engineering fixed plate formkhalidsiddig8
 
Design-Analysis-jib-Crane
Design-Analysis-jib-CraneDesign-Analysis-jib-Crane
Design-Analysis-jib-CraneYOOSHIN3
 
Design of prestressed Concrete flat slabs.pdf
Design of prestressed Concrete flat slabs.pdfDesign of prestressed Concrete flat slabs.pdf
Design of prestressed Concrete flat slabs.pdfmistreselasiesentayr
 
Design of a 20,000 t double acting ice class general cargo ship of service ...
Design of a 20,000 t double acting ice class general cargo ship   of service ...Design of a 20,000 t double acting ice class general cargo ship   of service ...
Design of a 20,000 t double acting ice class general cargo ship of service ...Md. Ashifur Rahaman
 
4. Mechanical design of pressure vessels_slides.pdf
4. Mechanical design of pressure vessels_slides.pdf4. Mechanical design of pressure vessels_slides.pdf
4. Mechanical design of pressure vessels_slides.pdfYafetTilahun
 
Elevated water tank
Elevated water tankElevated water tank
Elevated water tankAamir Patni
 
Static load test method statement cm - ms- bw - 003
Static load test method statement  cm - ms- bw - 003Static load test method statement  cm - ms- bw - 003
Static load test method statement cm - ms- bw - 003Minh Bui Si
 

Ähnlich wie Horizontal Vessel Foundation Design Procedure (20)

Casing Design 1.ppt
Casing Design 1.pptCasing Design 1.ppt
Casing Design 1.ppt
 
Design by Analysis - A general guideline for pressure vessel
Design by Analysis - A general guideline for pressure vesselDesign by Analysis - A general guideline for pressure vessel
Design by Analysis - A general guideline for pressure vessel
 
Designing of Offshore DNV Container
Designing of Offshore DNV ContainerDesigning of Offshore DNV Container
Designing of Offshore DNV Container
 
143137557 storage-tanks
143137557 storage-tanks143137557 storage-tanks
143137557 storage-tanks
 
ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING
ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING
ANALYSIS & DESIGN OF G+3 STORIED REINFORCED CONCRETE BUILDING
 
Offshore Support Vessels Design
Offshore Support Vessels DesignOffshore Support Vessels Design
Offshore Support Vessels Design
 
Analysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic loadAnalysis and design of high rise rc building under seismic load
Analysis and design of high rise rc building under seismic load
 
office final ppt [7760835] final update
office final ppt [7760835] final updateoffice final ppt [7760835] final update
office final ppt [7760835] final update
 
pv_rules.pdf
pv_rules.pdfpv_rules.pdf
pv_rules.pdf
 
pv_rules.pdf
pv_rules.pdfpv_rules.pdf
pv_rules.pdf
 
offshore structural design detailed engineering fixed plate form
offshore structural design detailed engineering fixed plate formoffshore structural design detailed engineering fixed plate form
offshore structural design detailed engineering fixed plate form
 
Design-Analysis-jib-Crane
Design-Analysis-jib-CraneDesign-Analysis-jib-Crane
Design-Analysis-jib-Crane
 
23320 1632955207
23320  163295520723320  1632955207
23320 1632955207
 
Design of prestressed Concrete flat slabs.pdf
Design of prestressed Concrete flat slabs.pdfDesign of prestressed Concrete flat slabs.pdf
Design of prestressed Concrete flat slabs.pdf
 
Design of a 20,000 t double acting ice class general cargo ship of service ...
Design of a 20,000 t double acting ice class general cargo ship   of service ...Design of a 20,000 t double acting ice class general cargo ship   of service ...
Design of a 20,000 t double acting ice class general cargo ship of service ...
 
Pilework
PileworkPilework
Pilework
 
4. Mechanical design of pressure vessels_slides.pdf
4. Mechanical design of pressure vessels_slides.pdf4. Mechanical design of pressure vessels_slides.pdf
4. Mechanical design of pressure vessels_slides.pdf
 
Elevated water tank
Elevated water tankElevated water tank
Elevated water tank
 
PIPERACK
PIPERACKPIPERACK
PIPERACK
 
Static load test method statement cm - ms- bw - 003
Static load test method statement  cm - ms- bw - 003Static load test method statement  cm - ms- bw - 003
Static load test method statement cm - ms- bw - 003
 

Kürzlich hochgeladen

Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)Mark Reed
 
Virtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdf
Virtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdfVirtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdf
Virtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdfErwinPantujan2
 
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptxMusic 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptxleah joy valeriano
 
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONTHEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONHumphrey A Beña
 
Concurrency Control in Database Management system
Concurrency Control in Database Management systemConcurrency Control in Database Management system
Concurrency Control in Database Management systemChristalin Nelson
 
Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17Celine George
 
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptxAUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptxiammrhaywood
 
Barangay Council for the Protection of Children (BCPC) Orientation.pptx
Barangay Council for the Protection of Children (BCPC) Orientation.pptxBarangay Council for the Protection of Children (BCPC) Orientation.pptx
Barangay Council for the Protection of Children (BCPC) Orientation.pptxCarlos105
 
4.18.24 Movement Legacies, Reflection, and Review.pptx
4.18.24 Movement Legacies, Reflection, and Review.pptx4.18.24 Movement Legacies, Reflection, and Review.pptx
4.18.24 Movement Legacies, Reflection, and Review.pptxmary850239
 
Student Profile Sample - We help schools to connect the data they have, with ...
Student Profile Sample - We help schools to connect the data they have, with ...Student Profile Sample - We help schools to connect the data they have, with ...
Student Profile Sample - We help schools to connect the data they have, with ...Seán Kennedy
 
Karra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptxKarra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptxAshokKarra1
 
Full Stack Web Development Course for Beginners
Full Stack Web Development Course  for BeginnersFull Stack Web Development Course  for Beginners
Full Stack Web Development Course for BeginnersSabitha Banu
 
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...Postal Advocate Inc.
 
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptxMULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptxAnupkumar Sharma
 
Earth Day Presentation wow hello nice great
Earth Day Presentation wow hello nice greatEarth Day Presentation wow hello nice great
Earth Day Presentation wow hello nice greatYousafMalik24
 
Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4JOYLYNSAMANIEGO
 
Q4-PPT-Music9_Lesson-1-Romantic-Opera.pptx
Q4-PPT-Music9_Lesson-1-Romantic-Opera.pptxQ4-PPT-Music9_Lesson-1-Romantic-Opera.pptx
Q4-PPT-Music9_Lesson-1-Romantic-Opera.pptxlancelewisportillo
 
ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...
ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...
ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...JojoEDelaCruz
 
Global Lehigh Strategic Initiatives (without descriptions)
Global Lehigh Strategic Initiatives (without descriptions)Global Lehigh Strategic Initiatives (without descriptions)
Global Lehigh Strategic Initiatives (without descriptions)cama23
 

Kürzlich hochgeladen (20)

Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)Influencing policy (training slides from Fast Track Impact)
Influencing policy (training slides from Fast Track Impact)
 
Virtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdf
Virtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdfVirtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdf
Virtual-Orientation-on-the-Administration-of-NATG12-NATG6-and-ELLNA.pdf
 
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptxMusic 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
Music 9 - 4th quarter - Vocal Music of the Romantic Period.pptx
 
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONTHEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
 
Concurrency Control in Database Management system
Concurrency Control in Database Management systemConcurrency Control in Database Management system
Concurrency Control in Database Management system
 
Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17Field Attribute Index Feature in Odoo 17
Field Attribute Index Feature in Odoo 17
 
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptxAUDIENCE THEORY -CULTIVATION THEORY -  GERBNER.pptx
AUDIENCE THEORY -CULTIVATION THEORY - GERBNER.pptx
 
Barangay Council for the Protection of Children (BCPC) Orientation.pptx
Barangay Council for the Protection of Children (BCPC) Orientation.pptxBarangay Council for the Protection of Children (BCPC) Orientation.pptx
Barangay Council for the Protection of Children (BCPC) Orientation.pptx
 
4.18.24 Movement Legacies, Reflection, and Review.pptx
4.18.24 Movement Legacies, Reflection, and Review.pptx4.18.24 Movement Legacies, Reflection, and Review.pptx
4.18.24 Movement Legacies, Reflection, and Review.pptx
 
Student Profile Sample - We help schools to connect the data they have, with ...
Student Profile Sample - We help schools to connect the data they have, with ...Student Profile Sample - We help schools to connect the data they have, with ...
Student Profile Sample - We help schools to connect the data they have, with ...
 
Karra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptxKarra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptx
 
Full Stack Web Development Course for Beginners
Full Stack Web Development Course  for BeginnersFull Stack Web Development Course  for Beginners
Full Stack Web Development Course for Beginners
 
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptxLEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
 
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
 
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptxMULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
 
Earth Day Presentation wow hello nice great
Earth Day Presentation wow hello nice greatEarth Day Presentation wow hello nice great
Earth Day Presentation wow hello nice great
 
Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4
 
Q4-PPT-Music9_Lesson-1-Romantic-Opera.pptx
Q4-PPT-Music9_Lesson-1-Romantic-Opera.pptxQ4-PPT-Music9_Lesson-1-Romantic-Opera.pptx
Q4-PPT-Music9_Lesson-1-Romantic-Opera.pptx
 
ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...
ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...
ENG 5 Q4 WEEk 1 DAY 1 Restate sentences heard in one’s own words. Use appropr...
 
Global Lehigh Strategic Initiatives (without descriptions)
Global Lehigh Strategic Initiatives (without descriptions)Global Lehigh Strategic Initiatives (without descriptions)
Global Lehigh Strategic Initiatives (without descriptions)
 

Horizontal Vessel Foundation Design Procedure

  • 1.
  • 2.
  • 3.
  • 4. Outline. Horizontal Vessel Loading Calculation Procedure. Conclusion. Questions.
  • 5.
  • 6. Step 1: Review of vessel drawing (Vendor Equipment Drawing). Step 2: Verification of foundation location, elevation & external fittings loads. Step 3: Description of Foundation Loads. Step 4: Load combinations for foundation sizing / loads & Foundation design. Step 5: Anchor Bolt Check. Step 6: Pedestal Sizing and reinforcement. Step 7: Slide plate.
  • 7. Horizontal Vessel Loading Calculation Procedure
  • 8. Step 1: Review of Vessel Drawing (Vendor Equipment Drawing).  Engineer needs to review the drawings came from the vender, and check whether you have all the following information: 1. Vessel Erection weight (Df). 2. Vessel Empty weight (De). 3. Vessel Operating weight (Do). 4. Vessel Hydro test weight (Dt). 5. Wind Shear and Moment in transverse direction. 6. Seismic Shear and Moment in transverse direction. 7. Vessel operating temperature and confirm with Mechanical discipline. 8. Total length of vessel and spacing of saddle supports. 9. Vessel Center of Gravity location with respect to saddle. 10. Anchor bolt location on fixed and sliding saddle. 11. Detail of equipment saddle (fixed and sliding).
  • 9. Step 2: Verification of Foundation Location, Elevation & External Fittings Loads.  Engineer need to review Plot plan, Equipment location drawings and 3-D Models and check whether you have all the following information: 1. Verify the area available for foundation. 2. Verify Foundation location and Elevation. 3. Location and size of Platforms around the vessel. 4. Locations of underground pipes. 5. Electrical and Instrument duct banks. 6. Locations and extent of adjacent foundations. 7. Verify the location and extent of new/existing foundations not shown in 3D model or plot plan.
  • 10. Step 3: Description of Foundation Loads. Vessel Erection weight (Df): Fabricated weight of the exchanger or vessel, generally taken from vendor certified exchanger or vessel drawings. Vessel Empty weight (De): Empty weight of the exchanger or vessel including all attachments, trays, internals, bundle, insulation, fireproofing, agitators, piping, ladders, platforms, etc. Vessel Operating weight (Do): Empty dead load of the exchanger or vessel plus the maximum weight of contents (including packing/catalyst) during normal operation. Vessel Hydro test weight (Dt): Empty dead load of the vessel plus the weight of test medium contained in the system. Wind Shear and Moment (W): You will find this load data in vendor drawings. However, you have to calculate this load based on project design basis. Seismic Shear and Moment (E): During seismic load calculation, you need to consider the pipes and platforms attached with the vessel. Thermal Load (T): The thermal load is defined as the load which results from thermal expansion or contraction of the vessel in the longitudinal direction.
  • 11. Step 4: Load Combinations for Foundation Sizing / Loads & Foundation Design.  You need to create the load combination per your project design criteria. However, I have created this load combination based on ACI 318: I. Load combination for Foundation sizing and Pile load calculation (un-factored load calculation): 1. LC1: Do + Dp + T. 2. LC2: (De1 or De2) + Wind. 3. LC3: De2+ Seismic. 4. LC4: Do + Dp + Wind + T. 5. LC5: Do + Dp + Seismic + T. 6. LC6: Dt + 025*Wind.
  • 12. Step 4: Load Combinations for Foundation Sizing / Loads & Foundation design. II. Load combination for Pedestal and Foundation design (factored load calculation): 1. LC7: 1.4*(Do + T + Dp ). 2. LC8: 0.75 [1.4 De2 (or 1.4 De1)] +1.6 Wind. 3. LC9: 1.2 De2 +1.0 E. 4. LC10: 0.75 (1.4 Do +1.4 T + 1.4 Dp) +/- 1.6 Wind. 5. LC11: 1.2 (Do +T + Dp) + 1.0 E. 6. LC12: 0.75 (1.4 Dt) + 1.6 (0.25 W).  The weight of the foundation and of the soil on top of the foundation shall be included as dead load in all of these load combinations.
  • 13. Step 5: Anchor Bolt Check.  Maximum shear and tension on anchor bolt shall be calculated based on above load combinations and shall be compared with project acceptable value.
  • 14. Step 6: Pedestal Sizing & Reinforcement.  Unless controlled by other factors, the minimum pier dimensions in each direction should equal to the dimensions of the base plate plus 100mm. Bars shall be sized in 50mm increments. The minimum thickness of the bar should be approximately 10% of the bar height, with a minimum of 250mm.  Bars size should be adjusted to ensure the factored vertical force on the bar does not exceed the value of {0.1Agfc¢} (Refer ACI 318 section 10.3.5).  Bars should be designed as axially loaded cantilever flexural members.  When the size of the bar cannot be adjusted and the value of the axial load exceeds {0.1Agfc¢}, the bars should be designed as compression members subjected to combined flexure and compressive axial load.
  • 15. Step 6: Pedestal Sizing & Reinforcement.  Shears on bars along both the longitudinal and transverse directions of the equipment shall be checked per code requirements (refer ACI 318, Chapter 11).  Reinforcement should normally be arranged symmetrically. Both the fixed end and sliding end bars shall be sized and reinforced identically.  A double tie shall be placed at the top of bars, spaced 50mm and 125mm below the top of concrete (or below the bottom of grout), to protect the top of concrete bars against cracking.
  • 16. Step 7: Slide Plate.  Slide plates are placed at the sliding end bars to allow longitudinal movement of vessels due to the thermal growth. Slide plates should be galvanized or painted to prevent corrosion.  For large movements and/or heavy horizontal vessels, it may be necessary to use slide plates with low coefficient of static friction, such as Lubrite, Teflon, etc.
  • 17.  To complete the foundation design, should be create the following calculation sheets:  A calculation sheet for anchor bolt embedment length check (ex: ACI 318 appendix-D).  A calculation sheet for foundation sizing (considering soil bearing pressure, Sliding, and overturning), and check with soil consultant for acceptable values.  A calculation sheet for foundation and pedestal reinforcement calculation per your project design criteria. Continue.
  • 18.
  • 19.  Now from above steps, should be learnt the following:  Different types of loads on foundation.  Different criteria for the pedestal sizing.  Maximum tension and shear force on each anchor bolt.  A sample load combinations.