首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >SIMULATION OF HEAT TRANSFER IN A COUNTERFLOW POROUS BED REACTOR WITH A THERMAL NON-EQUILIBRIUM MODEL
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SIMULATION OF HEAT TRANSFER IN A COUNTERFLOW POROUS BED REACTOR WITH A THERMAL NON-EQUILIBRIUM MODEL

机译:热非平衡模型模拟逆流多孔床反应器中的传热

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The objective of this work is to study the influence of physical and geometrical properties on heat transfer between solid and fluid phases in a counter-flow porous bed, for cases where the fluid moves in opposite direction with respect to the permeable matrix. For simulating the flow and heat transfer, a two-energy equation model is applied in addition to a mechanical model. Transport equations are discretized using the control-volume method. The effects of solid-to-fluid velocity ratio, permeability, porosity, ratio of solid-to-fluid thermal capacity and ratio of solid-to-fluid thermal conductivity on flow and heat transport are analyzed. Results for a counterflow, that is similar to the heat exchangers in a countercurrent, indicate that there is more heat exchange for the smaller values of the parameters analyzed resulting in more uniform heat transfer between phases along the channel.
机译:这项工作的目的是研究在流体相对于可渗透基质反向流动的情况下,逆流多孔床中物理和几何特性对固相和液相之间传热的影响。为了模拟流动和传热,除了机械模型外,还应用了两个能量方程模型。输运方程式采用控制量法离散化。分析了固液流速比,渗透率,孔隙率,固液比热容和固液比热导率对流动和传热的影响。逆流的结果类似于逆流中的换热器,表明对于较小的分析参数值,存在更多的热交换,从而导致沿通道的相之间的传热更加均匀。

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