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STUDENT NAME
BRANCH
NAME OF THE PROJECT
OBJECTIVE
Hybrid power system can be used to reduce energy storage
requirements.
The technical feasibility of Hydro Power system in given
range of load demand was evaluated.
For all load demands the levelised energy cost for Hydro
energy system is always lower than that of standalone
solar PV or wind system w.r.t the generation. Our hydro
energy generation system is techno-economically viable for
rural electrification.
HYDRP POWER
 Renewable energy source
 Non-polluting
 Reliable
 Can work anywhere sun is shining
 No major mechanical parts
 Relatively no maintenance
 Noise Free
 Last decades
PROJECT OVERVIEW
Hydro
Energy
Storage System Load
BASICS F ENERGY GENERATION
TECHNIQUE
ENERGY GENERATIONS
TURBINE
ARRANGEMENT
GEAR
DRIVES
GENERATO
R
LOAD
COMPONENTS REQUIRED
•TURBINE
•PULLEY
•GENERATOR
•MULTIMETER
•LED
•WIRES
ADVANTAGES
Below is the list of advantages due to the usage of the technique mentioned in this
paper.
Pollution free power generation.
Simple construction, mature technology and easy maintenance.
No consumption of any fossil fuel which is non-renewable source of energy.
No fuel transportation required.
No external source is needed for power generation.
Energy available all year round.
.
COMPLETE MODEL PHOTO
CONCLUSION
This project describes a novel system for generating dispatchable electric
power using Hydro Energy generation technique.The project has been
successfully tested under laboratory conditions giving satisfactory results.
FUTURE SCOPE
Analyze power variation under various combinations of air temperature and
flow rate entering the expander, in order to quantify the seasonal variation in
power output capability
REFERENCES
1. Nema, P., Nema, R. K., & Rangnekar, S. (2009). A current and future state of art
development of hybrid energy system using wind and PV-solar: A review.Renewable and
Sustainable Energy Reviews, 13(8), 2096-2103.
2. Chedid, R., & Rahman, S. (1997). Unit sizing and control of hybrid wind-solar power
systems. Energy Conversion, IEEE Transactions on, 12(1), 79-85.
3. Zhou, W., Lou, C., Li, Z., Lu, L., & Yang, H. (2010). Current status of research on optimum
sizing of stand-alone hybrid solar–wind power generation systems.Applied Energy, 87(2),
380-389.
4. Bekele, G., & Palm, B. (2010). Feasibility study for a standalone solar–wind-based hybrid
energy system for application in Ethiopia. Applied Energy, 87(2), 487-495.
5. Khan, M. J., & Iqbal, M. T. (2005). Pre-feasibility study of stand-alone hybrid energy systems
for applications in Newfoundland. Renewable energy, 30(6), 835-8
6. Liu, L. Q., & Wang, Z. X. (2009). The development and application practice of wind–solar
energy hybrid generation systems in China. Renewable and Sustainable Energy
Reviews, 13(6), 1504-1512.
7. Celik, A. N. (2002). Optimisation and techno-economic analysis of autonomous photovoltaic–
wind hybrid energy systems in comparison to single photovoltaic and wind systems. Energy
Conversion and Management, 43(18), 2453-2468.

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Hydro

  • 2. OBJECTIVE Hybrid power system can be used to reduce energy storage requirements. The technical feasibility of Hydro Power system in given range of load demand was evaluated. For all load demands the levelised energy cost for Hydro energy system is always lower than that of standalone solar PV or wind system w.r.t the generation. Our hydro energy generation system is techno-economically viable for rural electrification.
  • 3. HYDRP POWER  Renewable energy source  Non-polluting  Reliable  Can work anywhere sun is shining  No major mechanical parts  Relatively no maintenance  Noise Free  Last decades
  • 5. BASICS F ENERGY GENERATION TECHNIQUE
  • 8. ADVANTAGES Below is the list of advantages due to the usage of the technique mentioned in this paper. Pollution free power generation. Simple construction, mature technology and easy maintenance. No consumption of any fossil fuel which is non-renewable source of energy. No fuel transportation required. No external source is needed for power generation. Energy available all year round. .
  • 10. CONCLUSION This project describes a novel system for generating dispatchable electric power using Hydro Energy generation technique.The project has been successfully tested under laboratory conditions giving satisfactory results.
  • 11. FUTURE SCOPE Analyze power variation under various combinations of air temperature and flow rate entering the expander, in order to quantify the seasonal variation in power output capability
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