Critical review on thermal performance enhancement techniques for flat plate solar collectors

Kumar Gaurav, Suresh Kant Verma
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Abstract

Supply of energy against continuous increase in energy demand is a great challenge for the present time. This has compelled the researchers to develop energy-efficient and performance-enhanced devices. Solar energy, being the capable source to supply the clean energy can be harvested with the help of flat plate solar collectors (FPSCs). In order to enhance the thermal performance of FPSC researchers have considered various aspects, for example, design modification, heat transfer fluid having enhanced thermophysical properties, use of nanofluids, reduction in heat loss, use of enhancement devices, use of phase change materials and porous materials. The present article describes in detail these methods and compares the results obtained by the respective researches. Experimental as well as numerical works have also been presented. A comprehensive review for the thermal performance enhancement techniques used in FPSC has been presented. The objective of this review is to provide a valuable framework for evaluating and comparing different techniques for enhancing FPSC performance. The review aims to help identify the most appropriate approach and gaps in current research and proposes potential areas for future enhancements, which is expected to assist researchers.
平板太阳能集热器热性能提升技术评述
在能源需求持续增长的情况下供应能源是当前面临的一个巨大挑战。这迫使研究人员开发高能效、高性能的设备。太阳能是提供清洁能源的最佳来源,可借助平板太阳能集热器(FPSC)来获取。为了提高平板太阳能集热器的热性能,研究人员从多方面进行了考虑,例如,修改设计、使用热物理性能更强的导热流体、使用纳米流体、减少热损失、使用增强装置、使用相变材料和多孔材料。本文详细介绍了这些方法,并对各自的研究结果进行了比较。文章还介绍了实验和数值工作。文章对用于 FPSC 的热性能增强技术进行了全面综述。本综述旨在为评估和比较不同的 FPSC 性能增强技术提供一个有价值的框架。该综述旨在帮助确定最合适的方法和当前研究中存在的差距,并提出未来改进的潜在领域,希望对研究人员有所帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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