Wind barriers optimization for minimizing collector mirror soiling in a parabolic trough collector plant
نویسندگان
چکیده
منابع مشابه
2 00 7 A closed parabolic trough solar collector
Parabolic trough[1] is the most mature technology for large scale exploitation of solar energy. Several power plants based on this technology have been operational for years, and more are being built. However, the current technology suffers from a too high installation cost. This high cost makes it very hard to compete economically with fossil energy without government subsidies, compromising t...
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The aim of this research was manufacturing a parabolic trough solar collector in which reflecting surface is made of mirror steel rather than usual mirror and also predicting its theoretical performance.by adjusting planar ⩝ -shaped structures parallel to each other and welding them together, the main supporting structure was assembled and a parabolic-shape Teflon arc was installed in the apert...
متن کاملNumerical analysis of performance of solar parabolic trough collector with Cu-Water nanofluid
In the present work the effect of Cu-Water nanofluid, as heat transfer fluid, on the performance of a parabolic solar collector was studied numerically. The temperature field, thermal efficiency, mean-outlet temperatures have been evaluated and compared for the conventional parabolic collectors and nanofluid based collectors. Further, the effect of various parameters such as fluid velocity, vol...
متن کاملNumerical analysis of performance of solar parabolic trough collector with Cu-Water nanofluid
In the present work the effect of Cu-Water nanofluid, as heat transfer fluid, on the performance of a parabolic solar collector was studied numerically. The temperature field, thermal efficiency, mean-outlet temperatures have been evaluated and compared for the conventional parabolic collectors and nanofluid based collectors. Further, the effect of various parameters such as fluid velocity, vol...
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ژورنال
عنوان ژورنال: Applied Energy
سال: 2018
ISSN: 0306-2619
DOI: 10.1016/j.apenergy.2018.05.027