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Influence of optical errors on the thermal and thermodynamic performance of a solar parabolic trough receiver

机译:光学误差对太阳能抛物线槽接收器热和热力学性能的影响

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This paper presents results of an investigation covering the influence of optical errors on the thermal and thermodynamic performance of a solar parabolic trough system. The optical performance was evaluated by using Monte Carlo ray tracing for slope errors and specularity errors in the range 0-5 mrad. A parabolic trough collector (PTC) with a rim angle of 80 and a concentration ratio of 86 was considered in this study. The heat flux profiles obtained from the optical analysis were coupled with a computational fluid dynamics tool (ANSYS FLUENT) to numerically investigate the thermal and thermodynamic performance of the receiver. In the numerical analysis, inlet temperatures and Reynolds numbers ranging from 350 K-650 K and 6800-1,140,000 were considered, respectively. Results show that, slope and specularity errors influence the heat flux distribution on the receiver's absorber tube. Results further show that the optical performance and thermal performance reduce significantly as the slope errors increase. For the range of parameters considered, the intercept factor reduces by up to 21% while the overall thermal efficiency reduces by up to 17% as optical errors increase. Receiver thermodynamic performance is shown to deteriorate as slope errors increase. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一项调查结果,该调查结果涵盖了光学误差对太阳能抛物线槽系统热和热力学性能的影响。通过使用Monte Carlo射线追踪评估0-5 mrad范围内的斜率误差和镜面反射误差,从而评估光学性能。在这项研究中考虑了抛物槽收集器(PTC),其边角为80,浓度比为86。通过光学分析获得的热通量曲线与计算流体动力学工具(ANSYS FLUENT)耦合,以数值方式研究接收器的热力学和热力学性能。在数值分析中,分别考虑了入口温度和雷诺数,分别为350 K-650 K和6800-1,140,​​000。结果表明,坡度和镜面反射误差会影响接收器吸收管上的热通量分布。结果进一步表明,光学性能和热性能随着斜率误差的增加而显着降低。对于所考虑的参数范围,随着光学误差的增加,拦截因子最多可降低21%,而总热效率最多可降低17%。随着斜度误差的增加,接收器的热力学性能会变差。 (C)2016 Elsevier Ltd.保留所有权利。

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