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Numerical simulations for mixed convective hydromagnetic peristaltic flow in a curved channel with joule heating features

机译:焦耳加热特征弯曲通道混合对流氢细蠕动流动的数值模拟

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This article investigates the flow and mass transportation characteristics in the peristaltic motion configured by a heated curved channel. The coupling between momentum and energy equation is achieved using the Boussinesq approximation. The equations describing the flow and heat/mass transfer are developed using curvilinear coordinates. A reduction of these equations is made based on the lubrication approximation. The reduced linear ordinary differential equations are integrated numerically using an implicit finite difference scheme. The effects of thermal and concentration Grashof numbers, Hartmann number, Brinkmann number, and curvature parameter on longitudinal velocity, pressure rise, temperature, and mass concentration are analyzed in detail. It is found that the temperature field is enhanced with an increase in the thermal Grashof number and Hartmann number, while the mass concentration decreases with an increase in the thermal Grashof number and Hartmann number. The flow patterns in the channel illustrating the effects of Grashof numbers, Brinkmann number, and Hartmann number are also displayed. It is observed that flow movements become intense for greater values of Brinkman number, thermal Grashof number, and Hartmann number.
机译:本文研究了由加热的弯曲通道构成的蠕动运动中的流动和质量运输特性。使用BousineQ近似实现动量和能量方程之间的耦合。描述流动和热/传质的等式使用曲线坐标开发。基于润滑近似进行这些等式的减小。减小的线性常微分方程使用隐含的有限差分方案数值上集成。详细地分析了热和浓度Grashof数,Hartmann号,Brinkmann号和曲率参数对纵向速度,压力,温度和质量浓度的影响。发现温度场随着热量的Grashof数量和Hartmann数而增加,而质量浓度随着热法格雷什数和Hartmann号的增加而降低。还显示了频道中的流模式,示出了格雷什编号,Brinkmann号和Hartmann号的影响。观察到,对于更高的Brinkman号,热量格雷什数和Hartmann号的更大值,流动运动变得强烈。

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