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首页> 外文期刊>International communications in heat and mass transfer >Thermal characteristics of electroosmotic flow in a wavy-wall microtube
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Thermal characteristics of electroosmotic flow in a wavy-wall microtube

机译:波浪形微管中电渗流的热特性

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This study numerically investigates the electroosmotic flow and heat transfer in a wavy surface of the micro-tubes. The solution takes the electrokinetic effect and the amplitude of the wavy surface into consideration. A simple coordinate transformation method is used to transform a complex wavy micro-tube into a regular, circular tube. The governing equations, including the Poisson-Boltzmann equation, the modified Navier-Stokes equations, and the energy equation with their corresponding boundary conditions are also transformed into the computational domain and then solved by the finite difference method. The main objective is to investigate the difference of fluid flow and temperature fields for various wavelength ratio a and the electrokinetic parameter β. Results show that the distributions of the skin-friction coefficient and the local Nusselt number are oscillatory along the stream-wise direction for the wavy micro-tube (a £ 0). The amplitude of the oscillated local Nusselt number increases with an increase in the electrokinetic parameter i and wavelength ratio a, but that of the skin-friction coefficient decreases with an increase in the electrokinetic parameter β. The heat transfer enhancement is significant for the larger electrokinetic parameter p and wavelength ratio a.
机译:这项研究数值研究了微管的波浪形表面中的电渗流和热传递。该解决方案考虑了电动效应和波浪形表面的振幅。一种简单的坐标转换方法用于将复杂的波浪形微管转换为规则的圆形管。包括泊松-玻尔兹曼(Poisson-Boltzmann)方程,修正的纳维尔-斯托克斯(Navier-Stokes)方程以及具有相应边界条件的能量方程在内的控制方程也被转换为计算域,然后通过有限差分法求解。主要目的是研究各种波长比a和电动参数β的流体流场和温度场的差异。结果表明,对于波浪形微管,皮肤摩擦系数和局部Nusselt数的分布沿流向是振荡的(0英镑)。振荡的局部努塞尔数的振幅随着电动参数i和波长比a的增加而增加,但是皮肤摩擦系数的振幅随着电动参数β的增加而降低。对于较大的电动参数p和波长比a,传热增强非常重要。

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