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The effect of wall conduction for the extended Graetz problem for laminar and turbulent channel flows

机译:壁传导对层流和湍流通道扩展Graetz问题的影响

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Axial heat conduction effects within the fluid can be important for duct flows if either the Prandtl number is relatively low (liquid metals) or if the dimensions of the duct are small (micro heat exchanger). In addition, axial heat conduction effects in the wall of the duct might be of importance. The present paper shows an entirely analytical solution to the extended Graetz problem including wall conduction (conjugate extended Graetz problem). The solution is based on a selfadjoint formalism resulting from a decomposition of the convective diffusion equation into a pair of first order partial differential equations. The obtained analytical solution is relatively simple to compute and valid for all Peclet numbers. The analytical results are compared to own numerical calculations with FLUENT and good agreement is found.
机译:如果Prandtl数相对较低(液态金属)或管道尺寸较小(微型热交换器),则流体内部的轴向导热效应对于管道流动可能很重要。另外,在管道壁中的轴向热传导效应可能是重要的。本文显示了包括壁传导(共轭扩展Graetz问题)的扩展Graetz问题的完全解析解。该解决方案基于对流扩散方程分解为一对一阶偏微分方程所产生的自伴形式。所获得的解析解相对容易计算,并且对所有Peclet数均有效。使用FLUENT将分析结果与自己的数值计算进行比较,发现吻合良好。

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