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首页> 外文期刊>International Journal of Heat and Mass Transfer >A study of entropy generation in tree-shaped flow structures
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A study of entropy generation in tree-shaped flow structures

机译:树形流动结构中熵产生的研究

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摘要

This paper examines the degree of irreversibility, or thermodynamic nonideality, in a tree-shaped flow network with a constant wall heat flux. The tree network is a dichotomic and homothetic structure, and a fully developed laminar flow of Newtonian and non-Newtonian power law fluids is assumed. We investigate (ⅰ) the characteristics of the tubes composing the network (i.e., variation in the homothetic ratios of length and diameters, as well as variation in wall permeability of tubes), (ⅱ) the existence of blocked (obstructed) tubes in the network, (ⅲ) fluid characteristics, and (ⅳ) frictional and thermal effects on entropy generation. The influence of parameters like the fluid behavior index, Reynolds number, Nusselt number, homothety ratios for length and diameters, and wall permeability is hence evaluated. Finally, the degree of thermodynamic irreversibility associated to tree networks designed for a maximum flow access is determined.
机译:本文研究了具有恒定壁热通量的树形流动网络中的不可逆度或热力学非理想度。树形网络是一个二分法和同构结构,并且假设牛顿和非牛顿幂律流体的层流完全发达。我们调查(ⅰ)组成网络的管道的特征(即,长度和直径的相似比率的变化以及管道壁渗透率的变化),(ⅱ)管道中存在阻塞(阻塞)的管道网络,(ⅲ)流体特性以及(ⅳ)摩擦和热对熵产生的影响。因此,评估了诸如流体行为指数,雷诺数,努塞尔数,长度和直径的均比以及壁渗透性等参数的影响。最后,确定与为最大流量通道设计的树形网络相关的热力学不可逆程度。

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