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Simultaneous Multiple Surface method for Linear Fresnel concentrators with tubular receiver

机译:带管式接收器的线性菲涅耳聚光镜的同时多表面法

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Linear Fresnel concentrators (LFR) are known for their potential cost-effectiveness, reliability and wide range of possible solar applications. However, this technology is still facing the challenge of increasing its overall performance, especially in the Concentrated Solar Power (CSP) field where Parabolic Trough and Central Tower Receiver concentrators are the predominant solutions. In order to increase the performance of conventional LFR concentrators it is necessary to increase their optical performance as these concentrators are still far from the theoretical limits of concentration. This paper presents a new Fresnel concentrator designed with the Simultaneous Multiple Surface (SMS) method for two reflective (X) surfaces (Fresnel XX SMS) and with a tubular receiver. This design also promotes a good light uniformity on the receiver. A comparison is made between this new Fresnel XX SMS and two present day available concentrators (a Fresnel with CPC (Compound Parabolic Concentrator) and a PT (Parabolic Trough) concentrator), as well as a calculation of the total amount of collected energy (kW h), before thermal losses, for a particular location, Faro (Portugal). Furthermore, a new definition of CAP (Concentration Acceptance Product) is proposed, as the standard definition does not fully take into account the optical nature of LFR concentrators. The paper ends with a discussion of the results obtained, their impact and possible applications in the future. (C) 2014 Elsevier Ltd. All rights reserved.
机译:线性菲涅尔聚光器(LFR)以其潜在的成本效益,可靠性和广泛的太阳能应用而著称。但是,这项技术仍面临着提高其整体性能的挑战,特别是在集中式太阳能(CSP)领域,其中抛物线槽和中央塔式接收器集中器是主要解决方案。为了提高常规LFR聚光器的性能,有必要提高其光学性能,因为这些聚光器仍远未达到理论上的浓度极限。本文介绍了一种新的菲涅耳聚光器,该聚光器采用同时多重表面(SMS)方法设计,用于两个反射(X)表面(Fresnel XX SMS)和管状接收器。这种设计还可以提高接收器的光均匀度。对此新的菲涅尔XX SMS和两个当前可用的集中器(带有CPC(复合抛物线集中器)和PT(抛物槽)集中器的菲涅尔)进行了比较,并计算了收集的总能量(千瓦) h)在热损失之前,对于特定位置,法鲁(葡萄牙)。此外,由于标准定义未完全考虑LFR浓缩器的光学特性,因此提出了CAP(浓度接受产品)的新定义。本文最后讨论了所获得的结果,其影响以及将来的可能应用。 (C)2014 Elsevier Ltd.保留所有权利。

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