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Thermal performance and effectiveness of a dual-porous domestic heat exchanger for building heating application

机译:用于建筑加热应用的双多孔家用换热器的热性能和有效性

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With the development of problems caused by burning fossil fuels as well as limited and exhaustible energy resources, there is a growing interest in clean and renewable energies as a reliable alternative to fossil fuels. The thermal performance of a dual-porous heat exchanger (SDPHE) in building heating is investigated in this article. The characteristic equations for both porous media and the solid wall are discretized and solved numerically by finite element method (FEM) based on finite volume. The efficacy of various parameters including the Reynolds number, Darcy number and porosity of both porous media, middle wall thickness, middle wall material and volume fraction on the thermal performance of dual-porous heat exchanger is demonstrated and interpreted. According to the results, as the Darcy number and the congestion of nanoparticles on each side increased, the effectiveness of dual-porous heat exchanger is increased. In contrast, an increase in porosity on each side caused a decline in the effectiveness of dual-porous heat exchanger. Moreover, the thermal performance first increased and then reduced with an increase in hot side Reynolds number. (C) 2020 Elsevier Ltd. All rights reserved.
机译:随着由燃烧化石燃料造成的问题以及有限和有限的能源的问题,对清洁和可再生能源的兴趣日益增长,作为化石燃料的可靠替代品。在本文中研究了双多孔热交换器(Sdphe)在建筑加热中的热性能。基于有限体积的有限元方法(FEM),多孔介质和固体壁的特性方程被离散化并根据有限体积分散地解决。分别参数包括雷诺数,达锡数和多孔介质,中间壁厚,中壁材料和体积分数对双多孔热交换器的热性能的雷诺数,达西数和孔隙率的功效进行说明和解释。根据结果​​,随着达西数和每侧纳米颗粒的拥塞增加,双多孔热交换器的有效性增加。相反,每侧的孔隙率的增加导致双多孔热交换器的有效性下降。此外,热性能首先增加,然后随着热侧雷诺数的增加而减小。 (c)2020 elestvier有限公司保留所有权利。

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