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Study on the thermal performance of a novel cavity receiver for parabolic trough solar collectors

机译:新型抛物槽式太阳能集热腔接收器的热性能研究

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摘要

In this research, a novel cavity receiver for the parabolic trough solar collector (PTC) is presented. A center tube and two inclined fins act as the absorber to absorb the solar energy concentrated by the parabolic trough reflector. Its manufacture is simple. Compared to the tube bundle absorber, it is more convenient to connect in series and avoids the possible non-uniform distribution of the flow in practical applications. An experimental setup was constructed to test the thermal performance of this kind of cavity receiver. The experimental collector efficiency was in the range of 34.18-48.57%. The used physical parameters and installation error in the experiment resulted in the relatively low collector efficiency. A three-dimensional heat transfer model was established and validated by the test results. Effects of thermal conductivity of the insulation materials, emittance of the glass cover and absorber, and optical parameters on the thermal performance of the cavity receiver were estimated in detail. The results quantitatively indicated the importance of improving the physical property parameters of the collector, e.g. if the optimal parameters were selected, the collector efficiency could reach 64.25%, which was comparable to the metal-glass evacuated tube receiver. It indicates that the performance improvement potential of this kind of cavity receiver is huge and the results can theoretically guide the improvement in manufacture and installation. The present study is beneficial for promoting the large-scale application of the PTC in a simple and convenient way and the development of solar thermal technologies. The experimental test of the collector with the optimized parameters of this research and detailed cost analysis will be performed in the future work.
机译:在这项研究中,提出了一种用于抛物槽式太阳能集热器(PTC)的新型腔体接收器。中心管和两个倾斜的鳍片用作吸收器,吸收由抛物槽反射器集中的太阳能。它的制造很简单。与管束吸收器相比,串联连接更方便,并且避免了实际应用中可能出现的流量不均匀分布。构建了一个实验装置来测试这种空腔接收器的热性能。实验性收集器效率在34.18-48.57%的范围内。实验中使用的物理参数和安装错误导致收集器效率相对较低。建立了三维传热模型,并通过测试结果进行了验证。详细评估了绝缘材料的导热系数,玻璃盖和吸收体的发射率以及光学参数对空腔接收器热性能的影响。该结果定量地表明了改善收集器的物理性能参数的重要性,例如改进了收集器的物理性能。如果选择最佳参数,集热效率可达到64.25%,与金属玻璃真空管接收器相当。这表明这种空腔接收器的性能改进潜力巨大,其结果在理论上可指导制造和安装方面的改进。本研究有利于以简单方便的方式促进PTC的大规模应用以及太阳能技术的发展。具有这项研究的最佳参数和详细成本分析的收集器的实验测试将在以后的工作中进行。

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