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HEAT TRANSFER IN INTERNAL FLOWS OF NON-LINEAR FLUIDS: A REVIEW

机译:非线性流体内部流动的传热研究

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摘要

A survey of the developments in heat transfer studies of non-linear inelastic as well as elastic fluids in tubes is given. Experimental findings concerning heat transfer enhancement characteristics of viscoelastic aqueous polymer solutions are very significant. Specifically, it is reported that heat transfer results for viscoelastic aqueous polymer solutions are drastically higher than those found for water in laminar flow in rectangular ducts. A number of investigators suggested that the high experimental heat transfer values were due to secondary flows resulting from the elasticity of the fluids. In this context recent results concerning the fully developed thermal field in constant pressure gradient driven laminar flow of a class of viscoelastic fluids characterized by single mode, non-affine constitutive equations in straight pipes of arbitrary contour D is reviewed. Heat transfer enhancement due to shear-thinning is identified together with the enhancement due to the inherent elasticity of the fluid. The latter is the result of secondary flows in the cross-section. Increasingly large enhancements are computed with increasing elasticity of the fluid as compared to its Newtonian counterpart. Large enhancements are possible even with dilute fluids. Isotherms for the temperature field are presented and discussed for several non-circular contours such as the ellipse and the equilateral triangle together with heat transfer behavior in terms of the Nusselt number Nu.
机译:给出了对非线性非弹性以及管中弹性流体传热研究进展的综述。关于粘弹性聚合物水溶液的传热增强特性的实验发现非常重要。具体而言,据报道,粘弹性聚合物水溶液的传热结果大大高于矩形管道中层流中水的传热结果。许多研究人员认为,较高的实验传热值是由于流体的弹性导致的二次流动。在这种情况下,回顾了有关在恒定压力梯度驱动的层流中完全发展的热场的最新结果,该层流以任意轮廓D的直管中的单模非仿射本构方程为特征。可以确定由于剪切稀化导致的传热增强以及由于流体固有的弹性引起的增强。后者是横截面上二次流动的结果。与牛顿流体相比,随着流体弹性的增加,计算出的增强值也越来越大。即使使用稀液体,也可以进行大的增强。给出并讨论了几种非圆形轮廓(例如椭圆和等边三角形)的温度场等温线以及根据努塞尔特数Nu进行的传热行为。

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