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The gap angle as a design criterion to determine the position of linear Fresnel primary mirrors

机译:间隙角度作为设计标准,以确定线性菲涅耳主镜的位置

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A common choice for Linear Fresnel Reflector primary mirrors is the so-called uniform configuration, in which a constant value of mirror width - and their relative distances - is used. Often, it results in large relative mirror distances, leading to significant losses of etendue and concentration due to the light lost between the mirrors. In this paper a method to optimize the position of primary mirrors is presented with the goal of producing a more continuous primary optic, eventually closer to the theoretical limits of solar concentration. This calculation was done for two Linear Fresnel Reflector concentrators with uniform configurations, exploring how this method can improve the performance of such systems. This paper analyses the impact of such modifications on the overall optical performance of the collector, through the calculation of Concentration-Acceptance Product, Incidence Angle Modifier curves and an estimation of the total amount of collected energy for a specific location, Faro (Portugal). For the analyzed cases, the simulation results show that the proposed method produces denser primary fields, with an increase up to 21% in mirror area and collecting up to 14% more energy. (C) 2020 Elsevier Ltd. All rights reserved.
机译:线性菲涅耳反射器主镜的常见选择是所谓的均匀配置,其中使用镜子宽度的恒定值及其相对距离。通常,它导致大的相对镜距距离,导致由于镜子之间损失的光而导致的功率和浓度的显着损失。在本文中,提出了一种优化主镜子位置的方法,其目的是产生更加连续的初级光学器件,最终更接近太阳能浓度的理论限制。该计算是为两个具有均匀配置的线性菲涅耳反射器集中器进行的,探索该方法如何提高这种系统的性能。本文通过计算浓度验收产品,入射角改性剂曲线计算,分析了这种修改对收集器的整体光学性能的影响,以及特定位置的收集能量总量的估计,Faro(葡萄牙)。对于分析的病例,仿真结果表明,该方法产生了更密集的主要领域,镜子区域的增加高达21%,收集能量高达14%。 (c)2020 elestvier有限公司保留所有权利。

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