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1、Solar Energy: The Ultimate Renewable Resource Power from the Sun. Bhavik Shah What is Solar Energy? Originates with the thermonuclear fusion reactions occurring in the sun. Represents the entire electromagnetic radiation (visible light, infrared ultraviolet, rays, and radio waves) Advantages and D i
2、s ad van tage s Ad van tagcs All clieinical and radioactive polluting byproducts of the thermonuclear reactions remain behind on the sun, while only pure radiant energy readies the Earth. Energy reaching the earth is incredible. By one calculation, 30 days of sunshine striking the Earth have the ene
3、rgy equivalent of the total of all the planers fossil fuels, both used and unused! Disadvantages Sun docs not shine consistently. Solar energy is a diffuse source. To harness it, we must concentnite it into an amount and form that we can use, such as heat and electricity. Addressed by approaching th
4、e problem through: 1) collection, 2) conversion, 3) storage. How much solar energy? The surface receives about 47% of the total solar energy that reaches the Earth. Only this amount is usable. Putting Solar Energy to Use: Heating Water Two methods of heating water: passive (no moving parts) and acti
5、vre (pumps). In both, a flat-plate collector is used to absorb the suns energy to heat the water. The water circulates throughout the closed system due to OF convection currents. Tanks of hot water arc used as storage Heating Water: Active System Active System uses antifreeze so that the liquid does
6、 not freeze if outside temp, drops below freezing. Heating WaterLast Thoughts Efficiency of solar heating system is always less than 100% because: % transmitted depends on angle of incidence, Number of glass sheets (single glass sheet transmits 90-95%) and Composition of the glass Solar water heatin
7、g saves approx. 100() megawatts of energy a yr, equivalent to eliminating the emissions from two medium sized coal burning power plants. By usinjj solar water heating over gas water heater a family will save 1200 pounds of pollution each year. Market for flat plate collectors grew in 1980s because o
8、f increasing fossil fuels prices and federal tax credits. But by 1985, when these credits were removed and fossil fuel prices were low, the demand for flat plate collectors shrunk quickly. While solar water heating is relatively low in the US, in other parts of the world such as Cyprus (90%) and Isr
9、ael (65%),it proves to be the predominate form of water heating. Heating Living Spaces Best design of a building is for it to act as a solar collector aiid storage unit. This is acliieved through three elements: insulation collectionand storage. Efficient heating starts with proper insulation on ext
10、ernal walls, roof, and the floors. ITic doors, windows and vrcnts must be designed to minimize heat loss. (Collection: south -facing; windows and appropriate landscaping. Storage: Ill erm al massholds heat* Water= 62 BIT J per cubic foot per degree F. Iron=54, Wood (oak) =29, Brick=25, concrctc=22,
11、and loose stonc=20 Heating Living Spaces Passive Solar lionibe Wall Passively heated home in Colorado Heating Living Spaces A passively heated home uses about 60-75% of the solar energy that hits its walls and windows. The Center for Renewable Resources estimates that in almost any climate, a well-d
12、esigned passive solar home can reduce energy bills by 75% with an added construction cost of only 510% About 25% of energy is used for water and space heating. Major factor discouraging solar heating is low energy prices. Solar-Thermal Electricity: Power Towers General idea is to collect the light f
13、rom many reflectors spread over a large area at one central point to achieve high temperature. Example is the 10-MW solar power plant in Barstow, CA. 1900 heliostats, each 20 ft by 20 ft a central 295 ft tower An cncrgyr storage system allows it to generate 7 MW of electric power without sunlight. C
14、apital C)st is greater than coal fired power plant, despite the no cost for fuel, ash disposal, and stack emissions. Capital costs arc expected to decline as more and more power towers are built with greater technological advances. One way to reduce cost is to use the waste steam from the turbine fo
15、r space heating or other industrial processes. Power Towers Power tower in Barstow, California. Solar-Thermal Electricity: Parabolic Dishes and Troughs Focus sunlight on a smaller receiver for each device; the heated liquid drives a steam engine to generate electricity. The first of these Solar Hlec
16、tric (Generating Stations (SB(S) was installed in CA by an Israeli company, I人iz I nternational. Output was 13.8 MW; cost was $6,000/peak kW and overall efficiency was 25%. Through federal and state tax credits, Iaiz was able to build more SEGS, and improved reduced costs to $3,000/peak kW and the c
17、ost of electricity from 25 cents to 8 cents per kWh, barely more thin the cost of nuclear or coal-fired facilities. The more recent facilities converted a remarkable 22% of sunlight into electricity. Parabolic Dishes and Troughs Because they work best under direct sunlight, parabolic dishes and trou
18、ghs must be steered throughout the day in the direction of the sun. Direct Conversion into Electricity Photovoltaic cells are capable of directly converting sunlight into electricity. A simple wafer of silicon with wires attached to the layers. Current is produced based on types of silicon (n- and p
19、-types) used for the layers. Each ce!l=0.S volts. Battery needed as storage No moving partsno wear out, but because they are exposed to the weather, their lifespan is about 20 years. Solar Panels in Use Because of their cuirent costs, only rural and other customers far a wav from power lines 11 se s
20、olar panels because it is more cost effective than extending power lines. Note that utility companies are already purchasing, installings and maintaining IVhome systems (Idaho Power Co.). Largest solar plant in US, sponsored by the DOE, served the Sacramento arca9 producing 2195 MWh of electric ener
21、gy, making it cost competitive with fossil fiicl plants. Efficiency and D i s ad vantage s Efficiency is far lass than the 77% of solar spectrum with usable wavelengths. 43% of photon energyr is used to warm the crystal. Efficiency drops as temperature increases (from 24% at 0 C to 14% at 100 C.) I
22、Jght is reflected off the front face and internal electrical resistance arc other factors. Overall, the efficiency is about 10-14%. Cost of electricity from coal burning plants is anxwhere b/w 8-20 cents/kWh, while photovoltaic power generation is anywhere b/w $0.50-1/kWli. Does not reflect the true costs of burning coal and its emissions to the nonpolluting method o
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