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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Modeling of conjugate heat transfer between parallel plates separated by a hydrodynamically developed laminar flow by the quadrupole method
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Modeling of conjugate heat transfer between parallel plates separated by a hydrodynamically developed laminar flow by the quadrupole method

机译:用四极杆法模拟由水动力发展的层流分离的平行板之间的共轭传热

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摘要

The thermal quadrupole method allows the quasi-analytical modeling of heat transfer through a hydrodynamically developed laminar flow between two parallel plates. It is a meshless method based on an integral transform technique. The principle consists of calculating the transfer matrix linking temperature and flux density between the two walls of the channel. The convection-diffusion equation which governs heat transfer in the flow is solved analytically. The interest of this "fluid quadrupole" is to allow the modeling of the conjugate heat transfer between the channel and thick walls through the analytical formalism of the quadrupole method. It is cheked, in the case of mini-microchannels, that the local convective heat transfer coefficient h is rather strongly dependent on the wall nature.
机译:热四极杆方法允许通过两个平行板之间的流体动力学层流进行传热的准分析建模。它是一种基于积分变换技术的无网格方法。原理包括计算将通道的两个壁之间的温度和通量密度联系起来的传递矩阵。解析控制流中传热的对流扩散方程。这种“流体四极杆”的兴趣在于,可以通过四极杆方法的解析形式对通道和厚壁之间的共轭传热进行建模。在微型微通道的情况下,人们会发现局部对流传热系数h很大程度上取决于壁的性质。

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