Difference between revisions of "Concentrating Solar Power (CSP) - Basics and Introduction"
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| style="width: 587px" | <div style="font-size:150%">Basics and Technology of CSP<br/></div> | | style="width: 587px" | <div style="font-size:150%">Basics and Technology of CSP<br/></div> | ||
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<br/>Concentrating Solar Power (CSP) is a type of Renewable Energy that uses the sun's energy to generate electricity and process heat. Most applications are large-scale. Solar Thermal Power Plants are large scale renewable energy infrastructures using heat produced by contracted solar beams ('''Concentrated Solar Power (CSP)'''). Mirrors concentrate solar beam on a receiver. The produced heat with temperatures of 400ºC to 1000ºC can be used directly, be transformed into electricity or stored. | <br/>Concentrating Solar Power (CSP) is a type of Renewable Energy that uses the sun's energy to generate electricity and process heat. Most applications are large-scale. Solar Thermal Power Plants are large scale renewable energy infrastructures using heat produced by contracted solar beams ('''Concentrated Solar Power (CSP)'''). Mirrors concentrate solar beam on a receiver. The produced heat with temperatures of 400ºC to 1000ºC can be used directly, be transformed into electricity or stored. | ||
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[[File:CSP Hybrid Plant in Israel.jpg|none|300px|alt=CSP Hybrid Plant in Israel.jpg]] | [[File:CSP Hybrid Plant in Israel.jpg|none|300px|alt=CSP Hybrid Plant in Israel.jpg]] | ||
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= CSP Today = | = CSP Today = | ||
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== List of CSP projects == | == List of CSP projects == | ||
− | {{#ask: [[Category:Project_Database_CSP]] | format=google | controls=pan, zoom, type, scale, streetview | height=360| zoom=2| centre=Germany | showtitle=off | + | {{#ask: [[Category:Project_Database_CSP]] | format=google | controls=pan, zoom, type, scale, streetview | height=360| zoom=2| centre=Germany | showtitle=off| ?Coordinates_CSP }} |
Click here to view, browse and add project information about CSP projects on Energypedia: '''[[Project Database CSP|CSP Projects]]'''. | Click here to view, browse and add project information about CSP projects on Energypedia: '''[[Project Database CSP|CSP Projects]]'''. | ||
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See [http://en.wikipedia.org/wiki/List_of_solar_thermal_power_stations List of solar thermal power stations] and [http://en.wikipedia.org/wiki/List_of_concentrating_solar_thermal_power_companies List of concentrating solar thermal power companies] (Wikipedia) | See [http://en.wikipedia.org/wiki/List_of_solar_thermal_power_stations List of solar thermal power stations] and [http://en.wikipedia.org/wiki/List_of_concentrating_solar_thermal_power_companies List of concentrating solar thermal power companies] (Wikipedia) | ||
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= References = | = References = | ||
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+ | [[Category:Solar]] | ||
[[Category:Concentrating_Solar_Power_(CSP)]] | [[Category:Concentrating_Solar_Power_(CSP)]] | ||
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Revision as of 12:43, 12 February 2014
Basics and Technology of CSP
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Technologies
CSP technology, being quite different from the more popular photovoltaic equpiment, concentrates sunlight to effectively create heat to raise steam. However, there are different types of technology working under title of CSP. In the following chapters, the idea of the “parabolic trough”, the “power tower”, the “Fresnel mirror system” (or simply “linear Fresnel”) and the “dish” will be presented.
Parabolic Trough
Power Tower
The power tower really lives up to its promise. Compared to other CSP technologies, it can create the highest degree of temperature. Surrounded by mirrors reflecting light onto an elevated and centered tower, the power tower generates heat of about 1,000 C°.[1] By transferring the reflected concentrated solar radiation to a fluid, steam is being produced that expands on a turbine in order generate the intended electricity.[2]
Linear Fresnel
Dish / Engine
Storage Techologies
CSP Today
List of CSP projects
Click here to view, browse and add project information about CSP projects on Energypedia: CSP Projects.
See List of solar thermal power stations and List of concentrating solar thermal power companies (Wikipedia)