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A parabolic trough collector (PTC) is a type of solar thermal collector that is straight in one dimension and curved as a parabola in the other two, lined with a polished metal mirror. The sunlight which enters the mirror parallel to its plane of symmetry is focused along the focal line , where objects are positioned that are intended to be heated.
A solar heat collector, or solar thermal collector, is used today to capture solar radiation through electromagnetic radiation with the use of solar hot water panels, solar parabolic troughs, or solar towers. Today many people create their own DIY solar heat collectors, but the inventor William Goettl was the first to design and patent this ...
The term "solar collector" commonly refers to a device for solar hot water heating, but may refer to large power generating installations such as solar parabolic troughs and solar towers or non-water heating devices such as solar cookers or solar air heaters. [1] Solar thermal collectors are either non-concentrating or concentrating.
A cost/performance comparison between power tower and parabolic trough concentrators was made by the NREL which estimated that by 2020 electricity could be produced from power towers for 5.47 ¢/kWh and for 6.21 ¢/kWh from parabolic troughs. The capacity factor for power towers was estimated to be 72.9% and 56.2% for parabolic troughs. [46]
Thailand's Solar Programme required that the plants be completed by 2015. However, due to complications, including Solarlite filing for bankruptcy in 2012, no other plants were built. [1] The TSE 1 solar thermal power plant in Kanchanaburi, Thailand, was the first commercial parabolic trough plant based on direct steam generation.
The Solar Energy Generating Systems (SEGS) plants in California, some of the longest-running in the world until their 2021 closure; [45] Acciona's Nevada Solar One near Boulder City, Nevada; [45] and Andasol, Europe's first commercial parabolic trough plant are representative, [46] along with Plataforma Solar de Almería's SSPS-DCS test ...
The Hassi R'Mel integrated solar combined cycle power station is an integrated solar combined cycle (ISCC) power station near Hassi R'Mel in Algeria. The plant combines a 25 MW parabolic trough concentrating solar power array, covering an area of over 180,000 m 2 , in conjunction with a 130 MW combined cycle gas turbine plant, so cutting carbon ...
The solar energy collected at the parabolic troughs can increase the flow of steam produced in the recovery boilers. The steam produced in the two recovery boilers is expanded in the three body steam turbine (High, Medium and Low Pressure). The solar radiation can contribute to up to 20 Mwe of the power plant output.
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