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Transient numerical analysis of a multi-layered porous heat exchanger including gas radiation effects

机译:含气体辐射效应的多层多孔换热器的瞬态数值分析

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摘要

Thermal characteristics of a new type of multi-layered porous heat exchanger (PHE) are identified in the present study. This system works based on the energy conversion between gas enthalpy and thermal radiation. It has a five-layered structure consisting of two high temperature, two heat recovery and one low temperature sections. These sections are separated from each other by four quartz glass windows. In the two high temperature sections, the enthalpy of high temperature gas flow is converted to thermal radiation that is emitted toward the three adjacent layers where the low temperature air flows are effectively heated by the reverse conversion from thermal radiation into gas enthalpy. The gaseous radiation is also considered, such that in each section, a transient theoretical analysis is conducted for a one-dimensional system where convection, conduction and radiation take place simultaneously in both gas and solid phases. The coupled energy equations for the gas flows and porous layers based on the two-flux radiation model are solved numerically to identify the transient heat transfer characteristics of the system. It is shown that this type of porous heat exchanger has a very high efficiency especially when the porous layers have high optical thicknesses.
机译:本研究确定了新型多层多孔换热器(PHE)的热特性。该系统基于气体焓和热辐射之间的能量转换而工作。它具有五层结构,由两个高温,两个热回收和一个低温部分组成。这些部分由四个石英玻璃窗彼此隔开。在两个高温段中,高温气流的焓被转换成热辐射,该热辐射被发射到三个相邻的层,在这里,低温气流通过从热辐射到气体焓的反向转换而被有效地加热。还考虑了气体辐射,因此在每个部分中,对一维系统进行瞬态理论分析,在该系统中,对流,传导和辐射同时在气相和固相中发生。基于双通量辐射模型,对气体和多孔层的耦合能量方程进行了数值求解,以识别系统的瞬态传热特性。结果表明,这种类型的多孔热交换器具有很高的效率,特别是当多孔层具有较高的光学厚度时。

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