Thermal Performance Analysis of a Linear Fresnel Concentrating Solar Collector Absorber Tube

Izuchukwu F. Okafor, Ikechukwu A. Obi
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Abstract

Linear Fresnel solar collectors are suitable for a wide range of applications, which include steam generation for power generation, industrial process heat, solar cooling, institutional and domestic hot water production etc. The thermal performance of a linear Fresnel solar collector absorber tube was investigated in this study for different fluid mass flow rates, heat flux intensities, heat transfer fluid inlet temperatures, ambient air temperatures and external loss heat transfer rate. Turbulent flow liquid water heat transfer fluid and uniform circumferential heat flux distribution boundary were considered under steady-state conditions. The fluid flow was considered incompressible. This study was limited to a first order model approximation for thermal performance of a linear Fresnel solar collector absorber tube. The heat transfer fluid and absorber tube material properties were considered constant and independent of temperature. The results indicated that the absorber tube outlet heat transfer fluid temperature decreased with an increase in the Reynolds number and increased with the heat flux intensities. Thermal efficiency increased with an increase in the heat transfer fluid mass flow rate and however, decreased with increase in pressure drop and the consequent pumping power requirement. It was also found that the thermal efficiency of the collector decreased with an increase in the fluid bulk inlet temperature and decreased with an increase in the external loss heat transfer rate.
线性菲涅耳聚光太阳能集热器吸收管的热性能分析
线性菲涅耳太阳能集热器适用于广泛的应用,包括蒸汽发电,工业过程热,太阳能冷却,机构和生活热水生产等。本文研究了不同流体质量流量、热流密度、换热流体入口温度、环境空气温度和外部损失换热速率下线性菲涅耳太阳能集热器吸收管的热性能。考虑稳态条件下的紊流、液态水换热流体和均匀周向热流密度分布边界。流体流动被认为是不可压缩的。本研究仅限于线性菲涅耳太阳能集热器吸收管热性能的一阶模型近似。传热流体和吸收管材料的性能被认为是恒定的,与温度无关。结果表明:吸收管出口换热流体温度随雷诺数的增加而降低,随热流强度的增大而升高;热效率随换热流体质量流量的增大而增大,但随压降的增大和泵送功率的增大而减小。集热器的热效率随流体体积入口温度的升高而降低,随外损失换热率的升高而降低。
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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