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Study on the radiative heat transfer characteristics of one solar simulator

机译:一台太阳模拟器的辐射传热特性研究

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One high-flux solar simulator facility has been developed for all-weather indoor testing of dish/Stirling solar power generation system.This solar simulator composed of multiple xenon arc lamps combined with a faceted paraboloidal dish concentrator.The Monte-Carlo ray-tracing method is utilized to predict the radiation flux distributions of the concentrator- receiver system,and the numerical result is validated by experiment,the deviation of total radiation flux in the focal receiver between the experimental data and the ray-tracing results is about 0.32%.Then the radiation flux profiles on the receiver surface for faceted real concentrator and ideal paraboloidal concentrator are analyzed respectively.The results indicated that a faceted concentrator combined with 12 Xe-arc lamps can provided uniform irradiance on the receiver surface,it is beneficial for the long-term reliable and efficient operation of the stirling engine.The designed solar simulator can provide enough radiation power at the receiver aperture.It can be used as an experiment platform for stirling engine.
机译:已开发出一种高通量太阳模拟器设备,用于对碟/斯特林太阳能发电系统进行全天候室内测试,该太阳模拟器由多个氙弧灯与多面抛物面抛物面聚光器组成,采用蒙特卡洛射线追踪法用该方法预测了聚光器-接收器系统的辐射通量分布,并通过实验验证了数值结果,聚焦接收器中的总辐射通量与实验数据和射线追踪结果之间的偏差约为0.32%。分别分析了多面实心聚光器和理想抛物面聚光器在接收器表面的辐射通量分布图。结果表明,多面聚光器与12个Xe-arc灯组合可以在接收器表面上提供均匀的辐照度,有利于长期保持斯特林发动机的可靠和高效运行。设计的太阳能模拟器可以提供足够的辐射功率r在接收器孔口处,可用作斯特林引擎的实验平台。

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