2. Importance of Alternative Energy
• Rising Global temperature leading
to climate change
Greenergy Technologies 2
3. Importance of Alternative Energy
• Rising Global temperature leading
to climate change
• Rising pollution level, Mercury
poisoning due to coal plants effect
1 out of five women
Greenergy Technologies 3
4. Importance of Alternative Energy
• Rising Global temperature leading
to climate change
• Rising pollution level, Mercury
poisoning due to coal plants effect
1 out of five women
• Effect of Pollution have lead to
extinction of mass species.
Estimate is we loose 10 species a
minute
Greenergy Technologies 4
5. Importance of Alternative Energy
• Rising Global temperature leading
to climate change
• Rising pollution level, Mercury
poisoning due to coal plants effect
1 out of five women
• Effect of Pollution have lead to
extinction of mass species.
Estimate is we loose 10 species a
minute
• Fossil fuels are going to last next
fifty year, and nuclear is
hazardous. Alternative Energy is
the answer
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6. How Solar Power Works
• The sun light consist of electromagnetic
radiation having an energy of 10
kW/cm2
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7. How Solar Power Works
• The sun light consist of electromagnetic
radiation having an energy of 10
kW/cm2
• The sunlight falls on the solar modules.
The solar modules are made up of
silicon.
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8. How Solar Power Works
• The sun light consist of electromagnetic
radiation having an energy of 10
kW/cm2
• The sunlight falls on the solar modules.
The solar modules are made up of
silicon.
• The silicon is doped , light energy causes
the movement of electrons and hence
the electricity.
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9. How Solar Power Works
• The sun light consist of electromagnetic
radiation having an energy of 10
kW/cm2
• The sunlight falls on the solar modules.
The solar modules are made up of
silicon.
• The silicon is doped , light energy causes
the movement of electrons and hence
the electricity.
• The electricity generated is direct
current which is then converted into
alternating current.
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10. 500 Kilowatt system
• The 500 kilo watt system will produce 0.8
million of units in a year.
Irradiance 3.52 kWh/kWp/day (minimum in Dec)
PV system 500 Kwp
Power output 1850 units in one day
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11. 500 Kilowatt system
• The 500 kilo watt system will produce .8
million of units in a year.
• It is enough to run 226 Ac OR 4000 fans
OR 3000 tube lights for complete night Fan Tube light AC Computer
time.
70 watt 70 watt 1300 watt 300 watt
4190 0 0 0
0 4190 0 0
0 0 226 0
0 0 0 978
* this is for 6 hour, day usage system
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12. 500 Kilowatt system
• The 500 kilo watt system will produce .8
million of units in a year.
• It is enough to run 226 Ac OR 4000 fans
OR 3000 tube lights for complete night
time.
• The area required for the system is 2.5
hectares of land.
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13. 500 Kilowatt system
• The 500 kilo watt system will produce .8
million of units in a year.
• It is enough to run 226 Ac OR 4000 fans
OR 3000 tube lights for complete night
time.
• The area required for the system is 2.5
hectares of land.
• The system would be able to provide
electricity for 8 hours, which include 2
hours of back up.
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14. 500 Kilowatt Economic Analysis
• The system will cost around INR 25
million, depending on the layout and
the backup required.
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15. 500 Kilowatt Economic Analysis
• The system will cost around 0.4
million, depending on the layout.
• The payback period vis-à-vis a diesel
Genset is 3 years.
180.0
160.0
140.0
120.0
Solar
100.0
Diesel
80.0
Grid
60.0
hybrid
40.0
20.0
0.0
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
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16. 500 Kilowatt Economic Analysis
• The system will cost around 0.4
million, depending on the layout.
• The payback period vis-à-vis a diesel 180.0
160.0
Genset is 3 years. 140.0
• The payback period vis-à-vis the grid 120.0
Solar
electricity is 6 years. 100.0
Diesel
80.0
Grid
60.0
hybrid
40.0
20.0
0.0
1 3 5 7 9 11 13 15 17 19 21 23 25
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17. 500 Kilowatt Economic Analysis
• The system will cost around 0.4
million, depending on the layout.
• The payback period vis-à-vis a diesel
Genset is 3 years.
• The payback period vis-à-vis the grid
electricity is 6 years.
• The solar panels are going to last for
next 25 years, that means you will get
free electricity after the payback
period.
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18. 500 Kilowatt Economic Analysis
• The system will cost around 0.4
million, depending on the layout.
• The payback period vis-à-vis a diesel
Genset is 3 years.
• The payback period vis-à-vis the grid
electricity is 6 years.
• The solar panels are going to last for
next 25 years, that means you will get
free electricity after the payback
period.
• The system will insulate your
electricity requirement against the
future price rise.
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19. 500 Kilowatt system Environmental
Benefits
• A 500 kilo-watt solar system is
equivalent of planting around 10,000
tress and removing 80 cars from
Indian road per annum.
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20. 500 Kilowatt system Environmental
Benefits
• A 500 kilo-watt solar system is
equivalent of planting around 10,000
tress and removing 80 cars from
Indian road per annum.
• It will prevent 500 metric tons of
carbon dioxide. And hence protects
clean air. ( SO2, No2 …)
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21. 500 Kilowatt system Environmental
Benefits
• A 500 kilo-watt solar system is
equivalent of planting around 10,000
tress and removing 80 cars from
Indian road per annum
• It will prevent 500 metric tons of
carbon dioxide. And hence protects
clean air. ( SO2, No2 etc)
• It needs no water, and is
quiet, benign with no moving parts.
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22. About our Company
• We are In the field of Solar
since 2008. Vertically
integrated company, with
knowledge ranging from
raw material for solar
manufacturing to its
installation with financial
modeling incorporating best
use of Ongoing government
Subsidies.
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23. About our Company
• In the field of Solar since 2008.
Vertically integrated company, with
knowledge ranging from raw material
for solar manufacturing to its
installation.
• Design tie up with IBHS Germany.
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24. Steps to go for Solar Power Plant
Survey Form
24
25. Steps to go for Solar Power Plant
Survey Form
Site Visit
25
26. Steps to go for Solar Power Plant
Survey Form
Site Visit
Pre Feasibility report
26
27. Steps to go for Solar Power Plant
Survey Form
Site Visit
Pre Feasibility report
Joint Discussion
27
28. Steps to go for Solar Power Plant
Survey Form
Site Visit
Pre Feasibility report
Joint Discussion
Consultant
System Integration
Tendering
Selection
Execution Management
Handover
28
29. Steps to go for Solar Power Plant
Survey Form
Site Visit
Pre Feasibility report
Joint Discussion
Consultant Turn key
System Integration Cost
Tendering Guaranteed Production
Selection
Execution Management
Handover
29
30. Thank You
Contact us:-
410, Alankar Plaza
Jaipur, Rajasthan
Ph no :- +91 141 2231469
Fax :- +91 141 3916464
Mob no :- +91 – 9829031658
Email :- agm@greenergytechnologies.in
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