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1
Contribution of Solar energy in India
Presented by:
Sanjeev Kr. Bhagat
2
Content
Introduction
Method Of Utilized
Electricity Production
How To Use
Advantage& Disadvantage
Solar Power In India
State Wise Install Capacity
Future Investment
Conclusion
Reference
3
Introduction
 Solar energy is the most readily available and free source of
energy since prehistoric times. It is estimated that solar energy
equivalent to over 15,000 times the world's annual commercial
energy consumption reaches the earth every year.
 India receives solar energy in the region of 5 to 7 kWh/m2 for
300 to 330 days in a year. This energy is sufficient to set up 20
MW solar power plant per square kilometer land area.
4
Solar energy can be utilised through two different routes.
 solar thermal route :-
solar electric (solar photovoltaic) routes
 Solar thermal route uses the sun's
heat to produce hot water or air,
cook food, drying materials etc.
 Solar photovoltaic uses sun’s heat to produce
electricity for lighting home and building,
running motors, pumps, electric appliances,
and lighting.
5
Electricity production
Concentrated solar power:
 Photovoltaics
6
(CSP) systems use
A wide range of concentrating technologies exists;
In these systems a working fluid is heated by the
concentrated sunlight, and is then used for power
generation or energy storage
Concentrated solar power
 Lenses or mirrors
 Tracking systems
 Receiver
7
Photovoltaic
A solar cell, or photovoltaic cell (PV), is a device that converts
light into electric current using the photoelectric effect
8
How to use?
Advantage & Disadvantage of solar energy
9
10
April 2016 the installed grid connected solar power had increased to 7805.00 MW
India is ranked number one in terms of solar energy production per watt installed.
Gujarat has been a leader in solar power generation and contributes 2/3rd of the
900 MW of photovoltaics in the country.
National Solar Mission in India
Make India a global leader in solar energy and the mission envisages an
installed solar generation capacity of 20,000 MW by 2022, 1,00,000 MW by
2030 and of 2,00,000 MW by 2050.
The total expected investment required for the 30-year period will run is
from Rs. 85,000 crore to Rs. 105,000 crore.
Between 2017 and 2020, the target is to achieve tariff parity with
conventional grid power and achieve an installed capacity of 20 gigawatts
(Gw) by 2020.
4-5GW of installed solar manufacturing capacity by 2017.
Solar power in india
Sr. No. States Installed Capacity (MW)
1 Andhra Pradesh 23.15
2 Arunachal Pradesh 0.025
3 Chhattisgarh 4
4 Delhi 2.525
5 Goa & UT 1.685
6 Gujarat 824.09
7 Haryana 7.8
8 Jharkhand 16
9 Karnataka 14
10 Kerela 0.025
11 Madhya Pradesh 11.75
12 Maharashtra 34.5
13 Odisha 13
14 Punjab 9.325
15 Rajasthan 442.25
16 Tamil Nadu 17.055
17 Uttarakhand 5.05
18 Uttar Pradesh 12.375
19 West Bengal 2
Note : The data is compiled on the basis of information obtained from IREDA, NVVN, State
Agencies and Project Developers
State wise Installed capacity of solar power in india
11
12
Future Investments Related to Solar Projects
•Finance Minister Arun Jaitley has allocated Rs 500 crore in Budget
2014 to push ultra-modern solar power projects in Rajasthan, Tamil
Nadu and Ladakh.
•Solar power panels will become cheaper as solar power gear makers
will have to pay lower tax.
•Solar power equipment makers will have to pay lower excise duty on
solar cells, modules and batteries, among other products.
•The government wants to reduce the power utilities' subsidy burden
on electricity distribution to farm sector, which consumes 23 per cent
of power consumption in India but accounts for only 7 per cent of the
revenues.
•India has set a target of commissioning 20,000 mw of solar power
projects by 2022.
13
Conclusion
The most abundant renewable energy resource available
 could help address energy access to rural and remote
communities
The technologies to harness solar energy has seen dramatic
expansion over the past decade
 Centralized utility scale PV applications have grown strongly in the
recent years
14
Reference
1.www.mnre.gov.in
2.cleantechnica.com
3.articles.economictimes.indiatimes.com
4.indianpowersector.com
5.www.astrumsolar.com
6.suryaurza.com
7.www.authorstream.com
8.“solar energy:fundamentals,design,modelling and
applications”G.N .Tiwari
9.www.greenworldinvestor.com
15

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Sanjunit

  • 1. 1 Contribution of Solar energy in India Presented by: Sanjeev Kr. Bhagat
  • 2. 2 Content Introduction Method Of Utilized Electricity Production How To Use Advantage& Disadvantage Solar Power In India State Wise Install Capacity Future Investment Conclusion Reference
  • 3. 3 Introduction  Solar energy is the most readily available and free source of energy since prehistoric times. It is estimated that solar energy equivalent to over 15,000 times the world's annual commercial energy consumption reaches the earth every year.  India receives solar energy in the region of 5 to 7 kWh/m2 for 300 to 330 days in a year. This energy is sufficient to set up 20 MW solar power plant per square kilometer land area.
  • 4. 4 Solar energy can be utilised through two different routes.  solar thermal route :- solar electric (solar photovoltaic) routes  Solar thermal route uses the sun's heat to produce hot water or air, cook food, drying materials etc.  Solar photovoltaic uses sun’s heat to produce electricity for lighting home and building, running motors, pumps, electric appliances, and lighting.
  • 6. 6 (CSP) systems use A wide range of concentrating technologies exists; In these systems a working fluid is heated by the concentrated sunlight, and is then used for power generation or energy storage Concentrated solar power  Lenses or mirrors  Tracking systems  Receiver
  • 7. 7 Photovoltaic A solar cell, or photovoltaic cell (PV), is a device that converts light into electric current using the photoelectric effect
  • 9. Advantage & Disadvantage of solar energy 9
  • 10. 10 April 2016 the installed grid connected solar power had increased to 7805.00 MW India is ranked number one in terms of solar energy production per watt installed. Gujarat has been a leader in solar power generation and contributes 2/3rd of the 900 MW of photovoltaics in the country. National Solar Mission in India Make India a global leader in solar energy and the mission envisages an installed solar generation capacity of 20,000 MW by 2022, 1,00,000 MW by 2030 and of 2,00,000 MW by 2050. The total expected investment required for the 30-year period will run is from Rs. 85,000 crore to Rs. 105,000 crore. Between 2017 and 2020, the target is to achieve tariff parity with conventional grid power and achieve an installed capacity of 20 gigawatts (Gw) by 2020. 4-5GW of installed solar manufacturing capacity by 2017. Solar power in india
  • 11. Sr. No. States Installed Capacity (MW) 1 Andhra Pradesh 23.15 2 Arunachal Pradesh 0.025 3 Chhattisgarh 4 4 Delhi 2.525 5 Goa & UT 1.685 6 Gujarat 824.09 7 Haryana 7.8 8 Jharkhand 16 9 Karnataka 14 10 Kerela 0.025 11 Madhya Pradesh 11.75 12 Maharashtra 34.5 13 Odisha 13 14 Punjab 9.325 15 Rajasthan 442.25 16 Tamil Nadu 17.055 17 Uttarakhand 5.05 18 Uttar Pradesh 12.375 19 West Bengal 2 Note : The data is compiled on the basis of information obtained from IREDA, NVVN, State Agencies and Project Developers State wise Installed capacity of solar power in india 11
  • 12. 12 Future Investments Related to Solar Projects •Finance Minister Arun Jaitley has allocated Rs 500 crore in Budget 2014 to push ultra-modern solar power projects in Rajasthan, Tamil Nadu and Ladakh. •Solar power panels will become cheaper as solar power gear makers will have to pay lower tax. •Solar power equipment makers will have to pay lower excise duty on solar cells, modules and batteries, among other products. •The government wants to reduce the power utilities' subsidy burden on electricity distribution to farm sector, which consumes 23 per cent of power consumption in India but accounts for only 7 per cent of the revenues. •India has set a target of commissioning 20,000 mw of solar power projects by 2022.
  • 13. 13 Conclusion The most abundant renewable energy resource available  could help address energy access to rural and remote communities The technologies to harness solar energy has seen dramatic expansion over the past decade  Centralized utility scale PV applications have grown strongly in the recent years
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