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On the role of axial wall conduction in mini/micro counterflow heat exchangers

机译:轴向壁传导在微型/微型逆流换热器中的作用

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Understanding the role of multi-dimensional conjugate heat transfer on the thermal efficiency of mini/ micro counterflow heat exchangers is critical for the design of high efficient equipment. This topic is addressed here by considering a simple model with exact solution: the laminar counterflow parallel-plate heat exchanger. Using as starting point the eigenfunction series solution recently obtained by the authors, a thorough parametric study is carried out to investigate the role of the two dimensionless parameters involved in multi-dimensional wall conduction: the dimensionless wall thickness, Δ_w, and the dimensionless wall thermal resistance, k_w~(-1) The analytical eigencondition is first presented and discussed, and the associated eigenvalue spectrum is analyzed using contour plots of the lowest-order eigenvalues in the (Δ_w, k_w~(-1)) plane. The complex task of determining the eigenvalues numerically is largely facilitated by approximate expressions obtained from the asymptotic analysis of the singularities that appear in the eigencondition. The fast evaluation of the eigenvalues makes it possible to obtain contour plots of the heat exchanger effectiveness in the (Δ_w, k_w~(-1)) plane, which exhibit distinguished regimes corresponding to limiting cases with and without axial and transverse wall conduction effects, with smooth transitions occurring for moderately small values of Δ_w and k_w~(-1) The analysis provides conditions for neglecting axial and transverse wall conduction, and shows that an optimum wall conductivity always exists in heat exchangers with sufficiently thin walls.
机译:了解多维共轭传热对微型/微型逆流热交换器热效率的作用对于设计高效设备至关重要。通过考虑一个具有精确解决方案的简单模型来解决此主题:层流逆流平行板热交换器。以作者最近获得的本征函数级数解为起点,进行了详尽的参数研究,以研究涉及多维壁传导的两个无量纲参数的作用:无量纲壁厚Δ_w和无量纲壁热电阻k_w〜(-1)首先提出并讨论了解析特征条件,并使用(Δ_w,k_w〜(-1))平面中最低阶特征值的等高线图分析了相关特征值谱。从特征值中出现的奇异性的渐近分析获得的近似表达式大大简化了用数字确定特征值的复杂任务。特征值的快速评估使得可以在(Δ_w,k_w〜(-1))平面上获得换热器效率的等高线图,这些等高线图表现出与个别情况相对应的杰出机制,包括和不包括轴向和横向壁传导效应,当Δ_w和k_w〜(-1)值较小时,会发生平滑过渡,该分析为忽略轴向和横向壁传导提供了条件,并表明在壁足够薄的热交换器中始终存在最佳壁传导性。

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