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首页> 外文期刊>Communications in Theoretical Physics >Three-dimensional mixed convection flow with variable thermal conductivity and frictional heating
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Three-dimensional mixed convection flow with variable thermal conductivity and frictional heating

机译:具有可变导热性和摩擦加热的三维混合对流流程

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摘要

In this article, three-dimensional mixed convection flow over an exponentially stretching sheet is investigated. Energy equation is modelled in the presence of viscous dissipation and variable thermal conductivity. Temperature of the sheet is varying exponentially and is chosen in a form that facilitates the similarity transformations to obtain self-similar equations. Resulting nonlinear ordinary differential equations are solved numerically employing the Runge-Kutta shooting method. In order to check the accuracy of the method, these equations are also solved using bvp4c built-in routine in Matlab. Both solutions are in excellent agreement. The effects of physical parameters on the dimensionless velocity field and temperature are demonstrated through various graphs. The novelty of this analysis is the self-similar solution of the three-dimensional boundary layer flow in the presence of mixed convection, viscous dissipation and variable thermal conductivity.
机译:在本文中,研究了通过指数拉伸纸张上的三维混合对流流。 能量方程在粘性耗散和可变导热率存在下进行建模。 片材的温度是指数增花的,并且以促进相似性变换以获得自相似方程的形式选择。 在数值上采用跳动-Kutta拍摄方法解决了非线性常微分方程。 为了检查该方法的准确性,还使用MATLAB中的BVP4C内置例程来解决这些方程。 这两种解决方案都非常一致。 通过各种图表证明了物理参数对无量纲速度场和温度的影响。 该分析的新颖性是在混合对流,粘性耗散和可变导热率存在下三维边界层流动的自相似解。

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