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Turbulent Heat Transfer Analysis of Silicon Carbide Ceramic Foam as a Solar Volumetric Receiver

机译:碳化硅陶瓷泡沫的湍流传热分析为太阳能容积接收器

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A local non-thermal equilibrium heat transfer analysis was conducted for an investigation of the heat transfer performance of silicon carbide ceramic foam as a possible volumetric solar receiver. Turbulent heat transfer takes place from the receiver solid phase to the air as it passes through the porous receiver. Radiative heat transfer was coupled with conduction and turbulent convection using the P1 model which describes radiative heat transfer in optically thick media reasonably well. The two energy equations written in one-dimensional form for the air and foam were combined with the irradiation transport equation based on the P1 model. Analytic solutions are obtained for the developments of air and ceramic temperatures as well as the pressure along the flow direction derived under the low Mach approximation. The solutions serve as a useful tool for designing a novel volumetric solar receiver of silicon carbide ceramic foam.
机译:进行局部非热平衡传热分析,用于调查碳化硅陶瓷泡沫作为可能的体积太阳能接收器的传热性能。当它通过多孔接收器时,湍流传热从接收器固相到空气发生。辐射传热与使用P1模型的导通和湍流对流耦合,该模型描述了光学厚介质中的辐射热传递。基于P1模型将以一维形式写入空气和泡沫的两个能量方程与照射传输方程组合。获得分析溶液用于空气和陶瓷温度的发展以及沿着低马赫近似的流动方向的压力。该解决方案用作设计碳化硅陶瓷泡沫的新型体积太阳能接收器的有用工具。

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