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PRESENTED BY
Vinaya Kumar Kharwar
Alok Kumar Singh
Subrahyam Kumar Gautam
Abhishek Awasthi
Project Guide:
Mr. Amit Rao
Head Of Department:
Mr. Sanjay Tiwari
Content
• Introduction
• Wind Energy
• Solar Energy
• Combination of Solar-Wind
• Advantage of Combination of Solar-Wind Power System
• Implementation of Hybrid Energy System
• Advantage
• Disadvantage
• System Analysis
a)Wind Condition b)Size of wind mill c)Solar insolation
• Future Work
• Cost Estimation
• Conclusion
• References
Introduction
 We all know that the world is facing a major threat of fast
depletion of the fossil fuel reserves.
 Most of the present energy demand is met by fossil and
nuclear power plants.
 A small part is met by renewable energy technologies such
as the wind, solar, biomass, geothermal etc. There will
soon be a time when we will face a severe fuel shortage.
 As per the law of conservation of energy, “Energy can
neither be created, nor be destroyed, but it can only be
converted from one form to another”.
Wind Energy
 Wind energy is the world’s fastest growing energy source,
it is renewable source of electric power.
 The earth surface has both land and water, when the sun
rises the air over the land head and up quicker than that
over water, heated air is lighted and rise, the cool air are
falls and replace the air over the land and in night this
process are reverse.
 The moving air as huge amount of Kinetic energy and it
can be transfer into electrical energy by the help of wind
mill.
Solar Energy
 Solar power is energy from the sun. "Solar" is the Latin word for
"sun" and it's a powerful source of energy. Without it, there will
be no life. Solar energy is considered as a serious source of
energy for many years because of the vast amounts of energy
that is made freely available, if harnessed by modern
technology.
 Solar energy is radiant light and heat from the Sun that is
harnessed using a range of ever-evolving technologies such as
solar heating, photovoltaics, solar thermal energy, solar
architecture and artificial photosynthesis.
 It is an important source of renewable energy and its
technologies are broadly characterized as either passive solar or
active solar depending on how they capture and distribute solar
energy or convert it into solar power.
Combination of Solar-Wind
 Combination of solar-wind is an alternative approach to
producing clean, non-polluting energy from two of the
most abundant renewable energy sources.
 This system uses a hybrid solar panel and wind turbine
generator to create electricity which is then stored in
batteries.
 Some locations have an abundance of sun while others
have an abundance of wind. Having a combination system
allows you to take the most advantage of the prevailing
weather conditions to maximize energy production.
Advantage of Combination of
Solar-Wind Power System
• When one source isn't
available (overcast skies or
calm air), the system will
still be able to provide
energy from the alternate
energy source. The clean,
emission-free power acts as
a reliable backup or
supplemental power source.
• When both sun and wind is
present, the batteries will
charge even faster.
Implementation of Hybrid
Energy System
The schematic view of hybrid energy generation system.
•Intermittent energy resources and energy resources unbalance
are the most important reason to install a hybrid energy supply
system. The Solar PV wind hybrid system suits to conditions
where sunlight and wind has seasonal shifts.
•As the wind does not blow throughout the day and the sun does
not shine for the entire day, using a single source will not be a
suitable choice. A hybrid arrangement of combining the power
harnessed from both the wind and the sun and stored in a
battery can be a much more reliable and realistic power source.
The load can still be powered using the stored energy in the
batteries even when there is no sun or wind.
•In the monsoon seasons, the effect of sun is less at the site and
thus it is to use a hybrid wind solar system.
•The system components are as above.
Advantages of Hybrid System
 Very high reliability (combines wind power, and solar power)
 Long term Sustainability and Long term warranty
 High energy output (since both are complimentary to each
other)
 Cost saving (only one time investment)
 Low maintenance cost (there is nothing to replace)
 No pollution, Clean and pure energy
 Provides un-interrupted power supply to the equipment
 The system gives quality power out-put DC to charge directly
the storage battery or provide AC.
 The system can be designed for both off-grid and on grid
applications.
 Efficient and easy installation, longer life
Disadvantages of Hybrid
System
 Large number of harmonics is produced.
 Initial investment is more.
 Large space is required for larger generations
 Wind energy systems are noisy in operation; a large unit
can be heard many kilometers away.
 Efficiency is less than conventional power plants.
 The arrangement becomes complicated due to hybrid
structure.
 Large space is required for larger generations.
a)Wind Condition: The wind condition in
Lucknow are given below;
Jan. Feb. Mar. Apr. May Jun. Jul. Aug. Sept. Oct. Nov. Dec.
WIND SPEED
(KNOTS) 4 5 6 7 6 6 6 5 6 4 4 4
WIND SPEED (M/S) 2.06 2.57 3.09 3.6 3.09 3.09 3.09 2.57 3.09 2.06 2.06 2.06
WIND SPEED (MPh) 6.04 7.55 9.06 11 9.06 9.06 9.06 7.55 9.06 6.04 6.04 6.04
b)Size of wind mill:
 The average wind speed in Lucknow is 8mph (3m/s).
 The power in one square foot area of such wind is nearly 5
watt.
 The theoretical maximum efficiency occurs when wind is
slowed down to 2/3 its initial speed which would give around
an absolute maximum of 59.3% efficiency. Old-style farm
windmills have around 30% maximum efficiency. This means
that one should expect to capture around 1.5 watts of the wind's
power (30% of 5 Watts) for each square foot of a traditional
windmill-type design.
 Therefore, a 10-foot-diameter farm-style windmill (78
square feet of area) can realistically be expected to be
capable of creating about a consistent 60 Watts of usable
electricity.
c)Solar insolation:
 Solar insolation in Lucknow are given below; (in W/m2)
Time Jan. Feb. Mar. Apr. May Jun. Jul. Aug. Sept. Oct. Nov. Dec.
7:00-8:00 37 36 36 35 34 23 33 33 27 33 39 39
8:00-9:00 150 147 147 150 151 154 150 150 113 150 146 150
9:00-10:00 202 211 208 202 209 229 202 202 236 202 227 203
10:00-11:00 233 233 233 240 249 308 241 241 265 234 242 242
11:00-12:00 253 253 250 250 282 345 251 268 283 252 252 252
12:00-01:00 250 258 250 251 340 173 252 263 269 253 254 255
01:00-02:00 237 253 238 238 303 265 240 268 241 241 250 243
02:00-03:00 205 248 207 207 263 251 209 251 210 211 220 221
03:00-04:00 163 177 165 166 155 185 169 176 170 171 172 181
04:00-05:00 79 73 81 83 82 51 88 81 89 91 93 91
Avg. 181 189 182 182 207 198 184 193 190 184 190 188
d) Size of Solar Panel:
 The size of 100 watt solar
is about 1188.72mm*
543.56mm* 35.56mm
(46.8”*21.4”*1.4”).
Future Work Experimental
Setup
Calculation
• Size of wind tower
• Size of Generator
Fabrication
Cost Estimation
Equipments Prices ₹
Solar Panel (100W) 6000/-
Battery (12V) 8000/-
PVC Pipes for Blade 1500/-
Tower Making 8000/-
Dynamo 7000/-
Other Parts 3000/-
Total 33500/-
Conclusion
 By this project many villages can be lighted. For villages
which are much away from the construction site of large
power generating stations such as hydro and nuclear can
be provided power.
 Also to satisfied the increasing demand of electricity with
clean hybrid power station by solar –wind can be used.
 The project has been successfully designed & constructed,
which is able to collect sun radiation and wind velocity
all the day to operate the system. It can be commercially
applicable in village and remote areas where air velocity
and sun radiation is perfectly available.
References
1.http://en.wikipedia.org/wiki/solar
2. www.Hybrid Solar Wind Electricity.htm
3.Diagram taken out from www. google.com
4.https://en.wikipedia.org/wiki/Hybrid renewable energy
system
THANK
YOU...

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Hybrid power generation system

  • 1. PRESENTED BY Vinaya Kumar Kharwar Alok Kumar Singh Subrahyam Kumar Gautam Abhishek Awasthi Project Guide: Mr. Amit Rao Head Of Department: Mr. Sanjay Tiwari
  • 2. Content • Introduction • Wind Energy • Solar Energy • Combination of Solar-Wind • Advantage of Combination of Solar-Wind Power System • Implementation of Hybrid Energy System • Advantage • Disadvantage • System Analysis a)Wind Condition b)Size of wind mill c)Solar insolation • Future Work • Cost Estimation • Conclusion • References
  • 3. Introduction  We all know that the world is facing a major threat of fast depletion of the fossil fuel reserves.  Most of the present energy demand is met by fossil and nuclear power plants.  A small part is met by renewable energy technologies such as the wind, solar, biomass, geothermal etc. There will soon be a time when we will face a severe fuel shortage.  As per the law of conservation of energy, “Energy can neither be created, nor be destroyed, but it can only be converted from one form to another”.
  • 4. Wind Energy  Wind energy is the world’s fastest growing energy source, it is renewable source of electric power.  The earth surface has both land and water, when the sun rises the air over the land head and up quicker than that over water, heated air is lighted and rise, the cool air are falls and replace the air over the land and in night this process are reverse.  The moving air as huge amount of Kinetic energy and it can be transfer into electrical energy by the help of wind mill.
  • 5. Solar Energy  Solar power is energy from the sun. "Solar" is the Latin word for "sun" and it's a powerful source of energy. Without it, there will be no life. Solar energy is considered as a serious source of energy for many years because of the vast amounts of energy that is made freely available, if harnessed by modern technology.  Solar energy is radiant light and heat from the Sun that is harnessed using a range of ever-evolving technologies such as solar heating, photovoltaics, solar thermal energy, solar architecture and artificial photosynthesis.  It is an important source of renewable energy and its technologies are broadly characterized as either passive solar or active solar depending on how they capture and distribute solar energy or convert it into solar power.
  • 6. Combination of Solar-Wind  Combination of solar-wind is an alternative approach to producing clean, non-polluting energy from two of the most abundant renewable energy sources.  This system uses a hybrid solar panel and wind turbine generator to create electricity which is then stored in batteries.  Some locations have an abundance of sun while others have an abundance of wind. Having a combination system allows you to take the most advantage of the prevailing weather conditions to maximize energy production.
  • 7. Advantage of Combination of Solar-Wind Power System • When one source isn't available (overcast skies or calm air), the system will still be able to provide energy from the alternate energy source. The clean, emission-free power acts as a reliable backup or supplemental power source. • When both sun and wind is present, the batteries will charge even faster.
  • 8. Implementation of Hybrid Energy System The schematic view of hybrid energy generation system.
  • 9. •Intermittent energy resources and energy resources unbalance are the most important reason to install a hybrid energy supply system. The Solar PV wind hybrid system suits to conditions where sunlight and wind has seasonal shifts. •As the wind does not blow throughout the day and the sun does not shine for the entire day, using a single source will not be a suitable choice. A hybrid arrangement of combining the power harnessed from both the wind and the sun and stored in a battery can be a much more reliable and realistic power source. The load can still be powered using the stored energy in the batteries even when there is no sun or wind. •In the monsoon seasons, the effect of sun is less at the site and thus it is to use a hybrid wind solar system. •The system components are as above.
  • 10. Advantages of Hybrid System  Very high reliability (combines wind power, and solar power)  Long term Sustainability and Long term warranty  High energy output (since both are complimentary to each other)  Cost saving (only one time investment)  Low maintenance cost (there is nothing to replace)  No pollution, Clean and pure energy  Provides un-interrupted power supply to the equipment  The system gives quality power out-put DC to charge directly the storage battery or provide AC.  The system can be designed for both off-grid and on grid applications.  Efficient and easy installation, longer life
  • 11. Disadvantages of Hybrid System  Large number of harmonics is produced.  Initial investment is more.  Large space is required for larger generations  Wind energy systems are noisy in operation; a large unit can be heard many kilometers away.  Efficiency is less than conventional power plants.  The arrangement becomes complicated due to hybrid structure.  Large space is required for larger generations.
  • 12. a)Wind Condition: The wind condition in Lucknow are given below; Jan. Feb. Mar. Apr. May Jun. Jul. Aug. Sept. Oct. Nov. Dec. WIND SPEED (KNOTS) 4 5 6 7 6 6 6 5 6 4 4 4 WIND SPEED (M/S) 2.06 2.57 3.09 3.6 3.09 3.09 3.09 2.57 3.09 2.06 2.06 2.06 WIND SPEED (MPh) 6.04 7.55 9.06 11 9.06 9.06 9.06 7.55 9.06 6.04 6.04 6.04
  • 13. b)Size of wind mill:  The average wind speed in Lucknow is 8mph (3m/s).  The power in one square foot area of such wind is nearly 5 watt.  The theoretical maximum efficiency occurs when wind is slowed down to 2/3 its initial speed which would give around an absolute maximum of 59.3% efficiency. Old-style farm windmills have around 30% maximum efficiency. This means that one should expect to capture around 1.5 watts of the wind's power (30% of 5 Watts) for each square foot of a traditional windmill-type design.  Therefore, a 10-foot-diameter farm-style windmill (78 square feet of area) can realistically be expected to be capable of creating about a consistent 60 Watts of usable electricity.
  • 14. c)Solar insolation:  Solar insolation in Lucknow are given below; (in W/m2) Time Jan. Feb. Mar. Apr. May Jun. Jul. Aug. Sept. Oct. Nov. Dec. 7:00-8:00 37 36 36 35 34 23 33 33 27 33 39 39 8:00-9:00 150 147 147 150 151 154 150 150 113 150 146 150 9:00-10:00 202 211 208 202 209 229 202 202 236 202 227 203 10:00-11:00 233 233 233 240 249 308 241 241 265 234 242 242 11:00-12:00 253 253 250 250 282 345 251 268 283 252 252 252 12:00-01:00 250 258 250 251 340 173 252 263 269 253 254 255 01:00-02:00 237 253 238 238 303 265 240 268 241 241 250 243 02:00-03:00 205 248 207 207 263 251 209 251 210 211 220 221 03:00-04:00 163 177 165 166 155 185 169 176 170 171 172 181 04:00-05:00 79 73 81 83 82 51 88 81 89 91 93 91 Avg. 181 189 182 182 207 198 184 193 190 184 190 188
  • 15. d) Size of Solar Panel:  The size of 100 watt solar is about 1188.72mm* 543.56mm* 35.56mm (46.8”*21.4”*1.4”).
  • 16. Future Work Experimental Setup Calculation • Size of wind tower • Size of Generator Fabrication
  • 17. Cost Estimation Equipments Prices ₹ Solar Panel (100W) 6000/- Battery (12V) 8000/- PVC Pipes for Blade 1500/- Tower Making 8000/- Dynamo 7000/- Other Parts 3000/- Total 33500/-
  • 18. Conclusion  By this project many villages can be lighted. For villages which are much away from the construction site of large power generating stations such as hydro and nuclear can be provided power.  Also to satisfied the increasing demand of electricity with clean hybrid power station by solar –wind can be used.  The project has been successfully designed & constructed, which is able to collect sun radiation and wind velocity all the day to operate the system. It can be commercially applicable in village and remote areas where air velocity and sun radiation is perfectly available.
  • 19. References 1.http://en.wikipedia.org/wiki/solar 2. www.Hybrid Solar Wind Electricity.htm 3.Diagram taken out from www. google.com 4.https://en.wikipedia.org/wiki/Hybrid renewable energy system