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Experimental and numerical performance analyses of a Dish-Stirling cavity receiver: Geometry and operating temperature studies

机译:碟式斯特林接收器的实验和数值性能分析:几何和工作温度研究

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摘要

Higher performance cavity receivers are needed to increase the competitiveness of solar power plants. However, the design process needs to be improved with more relevant experimental and numerical analyses. Thereby, the performance of four different Dish-Stirling cavities is investigated experimentally analyzing the influence of the cavity aperture diameter and shape at various operating temperatures. Temperatures inside the cavity receiver were collected together with the electrical power produced by the engine-generator. Then, a thermal system simulation was modelled and a comprehensive multi-parameter and multi-operation validation was performed. To improve this validation, the temperature distribution across the receiver tubes was analyzed in order to relate temperatures on the irradiated region with the non-irradiated one, where thermocouples can measure. The simulations were later used to obtain cavity receiver efficiencies, temperatures and loss breakdowns. The results show that the cavity receiver must be studied in optimization processes in conjunction with the other system components. Moreover, the reverse-conical cavity was found to be more efficient than a nearly cylindrical shape. Regarding the cavity receiver thermal losses, radiation and natural convection present similar contributions in the system under study. Finally, it was found that thermocouples installed on a non-irradiated region can be used to obtain peak receiver temperatures if the measurements are rectified by a correction value proportional to the DNI.
机译:需要更高性能的腔体接收器以提高太阳能发电厂的竞争力。但是,需要通过更多相关的实验和数值分析来改进设计过程。因此,通过实验研究了四个不同的碟形斯特林型腔的性能,以分析在各种工作温度下型腔孔径和形状的影响。空腔接收器内部的温度与发动机发电机产生的电能一起收集。然后,对热系统仿真进行建模,并进行了全面的多参数和多操作验证。为了改善这一有效性,分析了接收管上的温度分布,以便将辐照区域上的温度与热电偶可以测量的非辐照区域上的温度联系起来。后来,这些仿真用于获得腔体接收器的效率,温度和损耗故障。结果表明,必须在优化过程中与其他系统组件一起研究腔体接收器。此外,发现倒圆锥形腔比接近圆柱形的腔更有效。关于腔体接收器的热损失,辐射和自然对流在所研究的系统中表现出相似的贡献。最后,发现如果通过与DNI成正比的校正值对测量进行校正,则可以使用安装在非辐照区域上的热电偶来获得峰值接收器温度。

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