First Numerical Evaluation of the Thermal Performance of a Tubular Receiver Equipped With Raschig Rings for CSP Applications

H. Ebadi, A. Allio, A. Cammi, L. Savoldi
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引用次数: 2

Abstract

Porous media are typically capable to enhance heat transfer, at the cost of an increase of the pressure drop, mainly in view of the huge increase in the surface wetted by the fluid. In this work, a tubular receiver for CSP applications, partly filled with a porous medium constituted by a packed bed of copper Raschig Rings is investigated for the first time. The analysis, carried out numerically, aims at studying in detail the mechanisms of the heat transfer from the wall to the gaseous heat transfer fluid (air) through the porous metal matrix in symmetric and asymmetric heating conditions. The computed results are compared to what occurs in a smooth tube subjected to the same heating, to check the increase in the heat transfer. The investigation carried out in this work represents the first step in the optimization of the porous medium structure inside the tubular receiver.
CSP应用中装有拉希环的管状接收器热性能的首次数值评估
多孔介质通常能够以增加压降为代价来增强传热,这主要是由于被流体润湿的表面大量增加。在这项工作中,首次研究了一种用于CSP应用的管状接收器,该接收器部分填充了由铜拉希环填充床构成的多孔介质。数值分析的目的是详细研究在对称和非对称加热条件下多孔金属基体从壁面向气体传热流体(空气)的传热机理。将计算结果与受到相同加热的光滑管中的情况进行比较,以检查传热的增加。本工作的研究是优化管状受热器内部多孔介质结构的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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