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Recent developments in nonimaging secondary concentrators for linear receiver solar collectors

机译:用于线性接收器太阳能集热器的非成像二次聚光器的最新发展

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Abstract: The energetic and economic attractiveness of linear solar concentrators can be significantly improved by the use of properly secondary non-imaging (CPC-type) concentrators. Two specific illustrative cases are analyzed. One is the optical re-design of a commercial two-stage solar concentrator which generates process steam at 150$DGR@C. The primary is a linear Fresnel reflector with one-axis horizontal tracking. The receiver is a stationary, non- evacuated, glazed tubular receiver with secondary CPC. We have re-designed the initial, manufacturer-designed secondary so as to noticeably improve collector thermal output. Details of secondary design and system performance are presented. The other is a new concept in secondary CPC-type concentrators for parabolic trough collectors with tubular receivers and large rim angles (typically 80$DGR@-120$DGR@). It had been though that such large-rim- angle concentrators could not benefit from secondary concentrators, since the second-stage concentration boost goes as 1/sin(rim angle). However, by introducing multiple asymmetric CPC-type devices, we can increase the geometric concentration of a 90$DGR rim angle parabolic trough by roughly a factor of 3. Furthermore, certain secondary designs can be accommodated within the annulus of currently-manufactured evacuated receiver tubes, and still offer a flux concentration improvement of about a factor of 2.5. Examples of the new secondary designs, and achievable concentration gains, are presented.!19
机译:摘要:通过使用适当的二次非成像(CPC型)聚光器,可以大大提高线性太阳能聚光器的能源和经济吸引力。分析了两个具体的说明性案例。一种是对商用两级太阳能聚光器的光学重新设计,该聚光器以150 $ DGR @ C的温度产生工艺蒸汽。主要是具有一轴水平跟踪的线性菲涅尔反射镜。接收器是固定的,无真空的玻璃管状接收器,带有辅助CPC。我们已经重新设计了最初的,制造商设计的次级,以便显着提高集热器的热输出。介绍了次级设计和系统性能的详细信息。另一个是二次CPC型选矿厂的新概念,用于抛物槽式集水器,带有管状接收器和大边缘角(通常为80 $ DGR @ -120 $ DGR @)。曾经有过这样的大边缘角度集中器无法从次级集中器中受益的情况,因为第二阶段的浓度提升为1 / sin(边缘角度)。但是,通过引入多个非对称CPC型设备,我们可以将90 $ DGR边缘角抛物线形槽的几何集中度增加大约3倍。此外,某些二级设计可以容纳在当前制造的抽空接收器的环内管,并且仍可将通量浓度提高约2.5倍。介绍了新的二级设计的示例以及可实现的集中增益。!19

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