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Buy Power During the Night Final PDF

May 30, 2018

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    Customers with

    large generators

    being paid Rs. 21.15per unit for

    generating their

    own power. Two days before news

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    NANOSOLAR POWERSHEET

    THE NEW DAWN OF SOLAR

    Copper indium gallium (di)selenide (CIGS) verified by NREL to be as efficient as 14.6% in 2006,

    http://www.popsci.com/popsci/flat/bown/2007/index.html

    http://en.wikipedia.org/wiki/NRELhttp://en.wikipedia.org/wiki/NREL
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    Solar cell Price and

    production 2008=3700 MW

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    Incoming solar energyON AVERAGE AROUND THE WORLD, SUNLIGHT DELIVERS A BARREL OF OIL OF ENERGY ON EVERY SQUARE METER OF LAND EVERY YEAR

    Sri Lanka gets at

    6 (kWh/m2/day)

    7000kWh/year

    Colombo

    http://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpghttp://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpghttp://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpghttp://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpghttp://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpghttp://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpghttp://upload.wikimedia.org/wikipedia/en/c/c7/Breakdown_of_the_incoming_solar_energy.jpg
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    Efficiency

    (Lumens/Watt)Rated Life

    (Hours)Cost per 50,000

    hours

    Kerosene .03 Supply ofKerosene

    $1251

    Incandescent Bulb 5-18 1000 $175Light Emitting Diode

    (LED)

    25-50 50,000 $20

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    Buy power during the night

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    CEB TARIFFDomestic effective from Nov 2008

    Fuel Adjustment Charge 30% on all unit charges except DP & RP consumersconsumin less than 90 units er month

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    Residential tiered tariff

    30.00X1.3=Rs39

    25.00X1.3=Rs32.50

    16.00X1.3=Rs20.80

    Rs7.50

    Rs4.70

    Rs3.00

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    Rs 39Rs 39Rs 39Rs 39Rs 39

    Rs39/kWh

    http://clickthumbnail%2814%29/
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    Technology

    transfer to

    rural SriLanka

    http://clickthumbnail%2814%29/http://clickthumbnail%2813%29/http://clickthumbnail%289%29/
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    Annual Savings Before and After

    3

    1 2 3 4 5

    .

    .

    .

    10000

    .8000

    6000

    4000

    200020. 0

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    Accumulated Net Savings

    1 2 3 4 5 6 7 8 9 10 11 12 13

    .

    8000

    6000

    4000

    200020

    . 0

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    How Storage will Help Smoothing of Out Put

    1 2 3 4 5 6 7 8 9 101

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    Conversion factor(multiply top row by factor to obtain side column)

    W/m kWh/(mday) sun hours/day kWh/my kWh/kWpyW/m 1 41.66666 41.66666 0.1140796 0.1521061

    kWh/(mday 0.024 1 1 0.0027379 0.0036505

    sun hours/day 0.024 1 1 0.0027379 0.0036505kWh/my 8.765813 365.2422 365.2422 1 1.333333

    kWh/kWpy 6.574360 273.9316 273.9316 0.75 1

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    Solar Radiation in W/m sq

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    Efficiency of Solar cells

    1 2 3 4 5 6 71314

    2009

    1 2 3 4 5

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    Cost of Generation by Solar

    CEB DOM tariff for>600kWh/m

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    SUN POWER PRODUCTION vs LOAD

    PROFILE

    A Typical CEB

    Load curve

    1 2 3 4 5 6 7

    The annual results for Sri Lanka, which range from 4.5 to 6.0 kWh/m2/day, are consistent with, and

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    e a ua esu ts o S a a, c a ge o .5 to 6.0 / /day, a e co s ste t t , a dslightly higher than earlier studies using sunshine recorders, which gave results of 4.2 to 5.6 kWh/m2/day.

    The slightly higher results are due most likely to the fact that, for Sri Lanka, we chose to

    calculate the resource for a flat plate collector tilted to latitude, rather than the more

    traditional method of calculating the resource on a horizontal surface that the earlier studies

    used. With two axis tracking one axis done manually for seasons we can get 7.32 kWh/m2/day.

    http://www.nrel.gov/docs/fy03osti/34645.pdf http://rredc.nrel.gov/solar/codes_algs/PVWATTS/version1/#map

    With a 4kW system we can get this amount of Energy Radiation Energy Energy

    (kWh/m2/day) (kWh) Axis tracking per Watt/day

    Colombo Ratmalana

    6.58 7411 2 1.85 22.5% Extra

    6.35 7172 1 1.79

    5.38 6028 0 1.51

    Colombo/Katunayake

    6.71 7632 2 23.56% Extra

    6.47 7377 1

    5.46 6177 0

    Hambantota 7.32 8494 2 2.12 29% Extra

    7.00 8140 1

    5.71 6583 0

    Trincomalee (AFB)

    7.11 8033 2 26.1% Extra

    6.83 7731 1

    5.64 6343 0

    http://www.nrel.gov/docs/fy03osti/34645.pdfhttp://rredc.nrel.gov/solar/codes_algs/PVWATTS/version1/http://rredc.nrel.gov/solar/codes_algs/PVWATTS/version1/http://www.nrel.gov/docs/fy03osti/34645.pdfhttp://www.nrel.gov/docs/fy03osti/34645.pdfhttp://www.nrel.gov/docs/fy03osti/34645.pdfhttp://www.nrel.gov/docs/fy03osti/34645.pdf
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    Solar Power Costs for Sri LankaPower needed 1577 kWh/yr OR 131 kWh/Month AC output needed 0.75 kW

    Module area 1.33 sq.ft Area needed 11 sq.ft No of Modules 8 Power per module

    100 watts DC power 789 watts Inverter efficiency 95 % AC power 750 wattsModule cost rate $2.00 watt Module Cost $1,500 Rs/house 178,406(assuming todays exchange rate) Inverter cost rate $0.50 watts Inverter cost $395 Installation

    cost rate $0.50 per watt Installation cost $395 Capacity factor 24 % Sri Lanka 2102.4

    kWh/Year/kW Output per year 1577 kWh Degradation rate -0.30 %/Output after

    year: 25 Total power delivered kWh 37,991

    Cost per kWh amortized with out batteries = $0.11(With net metering no Batteries are required). Simple Payback period < 4 Years

    Cost per kWh amortized with batteries = $0.25Money saving for consumers >331kWh/M = Rs1,252,693/Y (At todays tariff of Rs32.50 for>18

    units Net metering but surely the CEB tariff will increase ) Typical CO2 emission from oil 583 kg/MWh

    Emissions saved (kg) 22,148 Typical fuel consumption per MWh 125 gal. Fuel saved (gal)4,749. Cost of fuel saved for the country Rs 1,258,336. Assuming all marginal units are from Diesel

    Fuel Saving in Import Rs719,049/house(At today's import price but which will soon go up )

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    NANO ORGANIC PV CELL

    (HIGH EFFICIENCY)

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    Flexible Plastic PV Cell

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    Ultra Triple Junction Solar Cells

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    Solar Concentrators

    1 2 3 4 5 6

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    The SolarWall PV/thermal

    solar system

    is housed on the roof of a

    service

    centre and health clinic for the

    Olympic athletes in Beijing

    PV module efficiency is typically between 8-20%.

    What happens to the rest of the suns energy that

    shines on the panels? Most of it is converted into

    heat energy, which normally is lost and provides

    no value to the system owner. As well, the heatbuild-up behind PV modules reduces the electrical

    output by 0.4-0.5% for every 1C above its rated

    output temperature (which is 25C). Given that

    roofs can reach temperatures as high as 90C,

    the actual operating efficiency of PV systems is

    often significantly less than the rated output.

    Benefits of Solar Cell Energ a Zero

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    Benefits of Solar Cell Energy a Zero

    Emission Technology More manual labor jobs will be created

    The value of the property will go up By distributed generation day peak will come down. Transmission and Distribution losses will be reduced.

    Reduction of costly oil imports to the country

    Reduction of costly Gas turbine generation and costly Private power. Reduction of Global warming

    Reduction of polluting CO2 and other CHS Gasses

    Reduction of wasteful use of water in thermal Power stations

    With net metering the large homes will benefit more on reducing there costly electricity bills.

    Combined with energy efficiency and energy saving and use of LED lamps the night peak can also be reduced tobenefit the utility.

    Should be able to get Renewable Energy Certificates and Carbon trading

    Low interest soft loans will become available from the local banks like for Rural solar home systems

    A mental satisfaction that we have not contributed to Pollution and Global warming. It is expected that bilateral and multilateral finance and market stimulation programs based on best service at least

    cost will be soon available

    Distributed Generation: the Next Step in Smart Power Distribution

    Solar Power is commercially viable.

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    1 2 34 5 6

    7

    20% efficiency =

    200W/m2 or

    20W/ft2.

    LED lamp LIFESPANof up to 50,000

    hours!

    Up to 90% more

    efficient than

    traditional lighting

    Solar Powered LED Lantern

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    Solar Powered LED Lantern

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    Solar street lamps in China

    D Li h I di

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    D Light India

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    Solar power has several advantages

    Economical Benefits: The energy from the sun is practically free, after the initial investment has been recovered

    Solar energy reduces our dependence on foreign or centralized conventional source of energy

    Solar energy supports local jobs and creates wealth, which elevates local economies

    Environmentally Friendly: Solar energy is clean, quiet, renewable and sustainable unlike other conventional energy sources such as gas,

    oil, and coal Solar energy does not contribute to global warming, acid rain, or smog, on the contrary, it helps to lower

    harmful green house gas emissions

    Independent/Semi-Independent: Solar energy reduces our dependence on foreign or centralized sources of energy

    Solar energy can reduce your electric bill, and also supply your property with electricity in the event of a power

    outage Solar energy systems can operate entirely independent from a power or gas grid; therefore systems can be

    installed in remote location

    Low or no Maintenance: Solar energy systems are virtually maintenance free and will last at least 25 years

    System sizes can be increased in the future as your electricity needs grow

    Systems operate silently, and have no moving parts

    T t 2010 S l R f P i

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    Toyota 2010 Solar Roof PriusThese panels will power the air conditioning system, allowing its operation without turning on the car's main engine.

    Toyota has announced that the next redesign

    of their highly successful hybrid Priusautomobile will include solar panels on itsroof

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    A photo of the new world record solar cell.

    ( Fraunhofer ISE)

    The sunlight was concentrated 454-times onto a 5 mm multi-junction solar cell

    composed of GaInP/GaInAs/ Ge (gallium indium phosphide, gallium indiumarsenide on a germanium substrate) a record 41.1 percent efficiency.

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    A new phone

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    A new phone

    of Samsung

    "Blue Earth"

    powered bysolar energy is

    seen at the

    Mobile World

    Congress inBarcelona,

    Spain,

    Monday, Feb.

    16, 2009.

    Priced at

    $40 Researchers at the Fraunhofer Institute for Solar Energy Systems (ISE)

    http://www.fraunhofer.de/EN/http://www.fraunhofer.de/EN/http://www.fraunhofer.de/EN/http://www.fraunhofer.de/EN/
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    Researchers at the Fraunhofer Institute for Solar Energy Systems (ISE)

    in Freiburg have reached a record 41.1 percent efficiency

    http://www.news.com.au/heraldsun/story/0,21985,25105900-2862,00.html

    http://www.fraunhofer.de/EN/http://www.fraunhofer.de/EN/http://www.fraunhofer.de/EN/http://www.fraunhofer.de/EN/
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    Fi t S l fi t t US$1 tt

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    First Solar first to US$1 per watt

    manufacturing costhttp://www.pv-tech.org/news/_a/first_solar_first_to_us1_per_watt_manufacturing_cost /

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    ou

    mailto:[email protected]:[email protected]:[email protected]
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    Bicycle Powered Generatorhttp://www.mattshaver.com/bikegen/index.htm Ind Rs.4000