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Design and development of compound parabolic concentrating for photovoltaic solar collector: Review

机译:光伏太阳能集热器复合抛物线聚光设计与开发:综述

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Despite about five decades of development, commercial solar energy has not yet unable to penetrate the electric and gas options. For this particular reason, designing compound parabolic concentrators-photovoltaic thermal solar collectors (CPC-PVT) continues until achieving similar or greater performance with a comparative cost. This paper outlines the various types of CPC-PV systems concerning design advantages and limitations. The article includes comparisons on used materials, optical tolerance and efficiency, and the range of the acceptance angle. The review focuses on the historical developments regarding the use of Fresnel lens for optimizing captured sunlight, 2- and 3-D CPC, parabolic trough, and materials used for coating. It is hoped that this review helps researchers to highlight the successful trends of designing CPC by sorting out the many layers and factors that are decisive in designing CPC5. It can be seen clearly the vast opportunities for developing better designs and utilizing the qualities of the material used for reflectance and absorbance. Flat plate collectors have shown an increasing drawback to deal with temperatures of more than 100 degrees C. The fixed orientation of CPC has a ydisadvantage due to the limitations of capturing sunlight; however, tracking mechanism could be employed to enhance the amount of the captured sunlight. The non-imaging system is also highlighted to show its efficiency over the imaging systems concerning larger accept angles, higher concentration ratios with less volume and shorter focal length, higher optical efficiency. However, for applications such as solar-to-electric conversion, imaging, and non-imaging Fresnel lens have shown almost same conversion factor. Throughout CPC designing, particular issues have to be considered such as the ratio of reflector-to-aperture size, the formation of hot spots, and the minimising of losing of multiple reflections concentrating photovoltaic (CPV) systems are still developing where new methods, designs, and materials are still being created in order to reach a low levelled cost of energy comparable to standard silicon-based PV systems. It is very important to note that non-imaging Fresnel lenses could bring a breakthrough in commercial solar energy concentration application technology very soon.
机译:尽管发展了大约五十年,但商用太阳能尚未无法渗透到电力和天然气的选择中。由于这个特殊的原因,继续设计复合抛物面聚光器-光伏热太阳能收集器(CPC-PVT),直到以可比较的成本获得相似或更高的性能。本文概述了涉及设计优势和局限性的各种CPC-PV系统。该文章包括对用过的材料,光学公差和效率以及接受角范围的比较。这篇综述着重介绍了使用菲涅尔透镜优化捕获的阳光,2-D和3-D CPC,抛物线槽以及用于涂层的材料的历史发展。希望这篇评论可以帮助研究人员通过梳理设计CPC5的决定性因素的多个层次和因素来突出设计CPC的成功趋势。可以清楚地看到开发更好的设计和利用反射和吸收材料的质量的巨大机会。平板集热器在处理超过100摄氏度的温度时显示出越来越大的缺点。CPC的固定方向由于捕获阳光的限制而具有缺点。但是,可以采用跟踪机制来增强捕获的阳光量。还强调了非成像系统,以显示其在成像系统上的效率,涉及更大的接收角,更高的集中度,更小的体积和更短的焦距,更高的光学效率。然而,对于诸如太阳能到电的转换的应用,成像和非成像菲涅耳透镜显示出几乎相同的转换系数。在整个CPC设计过程中,必须考虑一些特殊问题,例如反射器与孔径的比例,热点的形成以及将多次反射的损失最小化的问题,仍在不断发展聚光光伏(CPV)系统,其中新方法,新设计,并且仍在创造材料,以达到与标准基于硅的PV系统相当的低水平能源成本。非常重要的一点是,非成像菲涅耳透镜可以很快在商业太阳能集中应用技术方面取得突破。

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