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Secondary and compound concentrators for parabolic dish solar thermal power systems

机译:抛物面太阳能热发电系统的二次和复合集中器

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摘要

A secondary optical element may be added to a parabolic dish solar concentrator to increase the geometric concentration ratio attainable at a given intercept factor. This secondary may be a Fresnel lens or a mirror, such as a compound elliptic concentrator or a hyperbolic trumpet. At a fixed intercept factor, higher overall geometric concentration may be obtainable with a long focal length primary and a suitable secondary matched to it. Use of a secondary to increase the geometric concentration ratio is more likely to e worthwhile if the receiver temperature is high and if errors in the primary are large. Folding the optical path with a secondary may reduce cost by locating the receiver and power conversion equipment closer to the ground and by eliminating the heavy structure needed to support this equipment at the primary focus. Promising folded-path configurations include the Ritchey-Chretien and perhaps some three element geometries. Folding the optical path may be most useful in systems that provide process heat.
机译:可以将第二光学元件添加到抛物面碟形太阳能集中器中,以增加在给定截距因子下可获得的几何集中率。该二次透镜可以是菲涅耳透镜或镜子,例如复合椭圆形聚光镜或双曲线小号。在固定的截距因数下,使用长焦距的一次焦距和与其匹配的合适的二次焦距可以获得更高的总体几何集中度。如果接收器温度高且原边误差较大,则使用副边增加几何浓度比更有价值。通过将接收器和功率转换设备放置在离地面更近的位置,并消除在主要位置支撑该设备所需的笨重结构,可以用次级折叠光路来降低成本。有希望的折叠路径配置包括Ritchey-Chretien以及可能的三个元素几何。在提供过程热量的系统中,折叠光路可能最有用。

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    Poon, P. T.; Jaffe, L. D.;

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  • 年度 1981
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