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抛物面碟式太阳能集热器翅片式太阳能接收器的实验性能与经济分析

Experimental performance and economic analysis of finned solar receiver for parabolic dish solar collector.

作者信息

Vishnu Senthil Kumar, Senthil Ramalingam

机构信息

Department of Mechanical Engineering, SRM Institute of Science and Technology, Kattankulathur, Chennai 603203, India.

出版信息

Heliyon. 2023 Nov 1;9(11):e21236. doi: 10.1016/j.heliyon.2023.e21236. eCollection 2023 Nov.

Abstract

The solar receiver is a vital component of concentrated solar collectors that absorbs solar radiation and converts it into heat. One of the challenges the research community faces is minimizing heat loss from the receiver at higher temperatures to maximize the thermal performance of parabolic dish collectors and achieve the system's cost-effectiveness. Cavity receivers have a complex design that makes them more challenging to manufacture and entails higher costs for improved thermal performance. Implementing innovative receiver designs is essential to maximize the absorption of solar radiation and minimize heat losses. In this experimental study, a cost-effective solar receiver was fabricated with fins to study heat transfer. The solar receiver is examined using water as heat transfer fluid with three flow rates of 0.097 kg/s, 0.125 kg/s, and 0.152 kg/s. The residence time of water is increased by adopting integrated fin receiver designs. The provision of fins in the solar receiver enhances heat transfer by increasing the turbulence in the fluid flow and results in higher thermal efficiency. The average energy and exergy efficiencies are 67.81 % and 8.93 %, respectively, with a 0.152 kg/s flow rate. At the highest water flow rate (0.152 kg/s) considered in this study, a lesser heat loss of about 3776.2 W occurred due to the effective heat transfer. The cost metrics, like levelized cost of electricity, net present value, and the payback period, are about 0.21 $/kWh, 923 $, and 3.38 years, respectively, at 0.152 kg/s flow rate. The proposed solar receiver produces optimal thermo-economic performance and lower initial investment for steam generation than other receiver designs. The current experimental study's findings could benefit the entire solar industry by presenting an effective solar receiver design for solar collectors.

摘要

太阳能接收器是聚光太阳能集热器的关键部件,它吸收太阳辐射并将其转化为热能。研究界面临的挑战之一是在较高温度下将接收器的热损失降至最低,以最大限度地提高抛物面碟式集热器的热性能,并实现系统的成本效益。腔式接收器设计复杂,制造难度大,为提高热性能所需成本更高。采用创新的接收器设计对于最大限度地吸收太阳辐射和减少热损失至关重要。在本实验研究中,制造了一种带有翅片的经济高效的太阳能接收器,用于研究热传递。使用水作为热传递流体,以0.097 kg/s、0.125 kg/s和0.152 kg/s三种流速对太阳能接收器进行测试。采用集成翅片接收器设计可增加水的停留时间。太阳能接收器中的翅片通过增加流体流动中的湍动来增强热传递,从而提高热效率。在流速为0.152 kg/s时,平均能量效率和㶲效率分别为67.81%和8.93%。在本研究考虑的最高水流速(0.152 kg/s)下,由于有效的热传递,热损失约为3776.2 W,相对较小。在流速为0.152 kg/s时,成本指标如平准化度电成本、净现值和投资回收期分别约为0.21美元/kWh、923美元和3.38年。与其他接收器设计相比,所提出的太阳能接收器在蒸汽产生方面具有最佳的热经济性能和较低的初始投资。当前实验研究的结果通过为太阳能集热器提供一种有效的太阳能接收器设计,可为整个太阳能行业带来益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30db/10660001/1d9cdd61f63c/gr1.jpg

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