Effect of Radiative Filling Gas in Compound Parabolic Solar Energy Collectors

S. G. Nassab, M. Moein Addini
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引用次数: 2

Abstract

In the present paper, the use of radiating gas instead of air inside the cavity of compound parabolic collectors (CPSs) is suggested and verified by numerical analysis. The collector under study has a simple cone shape with flat absorber which is filled with a participating gas such as carbon dioxide instead of air for the purpose of increasing the thermal performance. In numerical simulation, the continuity, momentum and energy equations for the steady natural convection laminar gas flow in the CPC’s cavity and the conduction equation for glass cover and absorber plate were solved by the finite element method (FEM) using the COMSOL multi-physics. Because of the radiative term in the gas energy equation, the intensity of radiation in participating gas flow should be computed. Toward this end, the radiative transfer equation (RTE) was solved by the discrete ordinate method (DOM), considering both diffuse and collimated radiations. The  approximation was employed in calculation of the diffuse part of radiation. It was observed that the gas radiation causes high temperature with more uniform distribution inside the cavity of collector. Also, numerical results reveal more than 3% increase in the rate of heat transfer from absorber surface into working fluid and hence a desired performance for the collector because of the gas radiation effect.  Comparison between the present numerical results with theoretical and experimental data reported in the literature showed good consistency.
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辐射填充气体对复合抛物面太阳能集热器的影响
本文提出了用辐射气体代替空气进入复合抛物面集热器腔内的方法,并通过数值分析加以验证。所研究的集热器具有简单的锥形和扁平的吸收体,该吸收体充满二氧化碳等参与气体而不是空气,以提高热性能。在数值模拟中,利用COMSOL多物理场软件,采用有限元法求解了CPC腔内稳定自然对流层流的连续性方程、动量方程和能量方程以及玻璃罩和吸收板的传导方程。由于气体能量方程中存在辐射项,因此需要计算参与气流的辐射强度。为此,采用离散坐标法(DOM)求解辐射传递方程(RTE),同时考虑漫射辐射和准直辐射。该近似法用于计算辐射的漫射部分。结果表明,气体辐射导致集热器腔内温度升高,且温度分布更均匀。此外,数值结果表明,由于气体辐射效应,从吸收体表面到工作流体的传热速率增加了3%以上,因此集热器的性能达到了预期的水平。本文的数值计算结果与文献报道的理论和实验数据的比较表明了较好的一致性。
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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