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Joule heating and MHD free convection flow along a vertical wavy surface with viscosity and thermal conductivity dependent on temperature

机译:焦耳加热和MHD自由对流沿着垂直波浪面流动,其粘度和导热率取决于温度

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A numerical study is conducted to analyze the effect of Joule heating and MHD (magnetohydrodynamic) free convection flow and heat transfer along a uniformly heated vertical wavy surface with temperature dependent variable viscosity and thermal conductivity. The governing boundary layer equations with associated boundary conditions for phenomenon are converted to non-dimensional form using the appropriate transformations. The resulting nonlinear system of partial differential equations are mapped into the domain of a vertical flat plate and solved numerically by employing implicit finite difference method, known as the Keller-box scheme. The behavior of the fluid in the ranges of Joule heating parameter (0.0–2.0), viscosity parameter (0.0–20.0) and thermal conductivity parameter (0.0 –10.0) are explained in details. It is found that the flow and temperature fields are strongly dependent on the above stated parameters for the ranges considered. The skin friction coefficient and the rate of heat transfer are also presented. The skin friction coefficient and the heat transfer for different values of Prandtl number Pr are compared with previously published work and are found to be in excellent agreement.DOI: http://dx.doi.org/10.3329/jname.v10i2.11707
机译:进行了数值研究,以分析焦耳加热和MHD(磁流体动力学)自由对流流动以及沿均匀加热的垂直波浪表面(随温度变化的可变粘度和导热系数)的热传递的影响。使用适当的变换,将具有现象关联边界条件的控制边界层方程式转换为无量纲形式。所得的偏微分方程非线性系统被映射到垂直平板的域中,并通过采用称为Keller-box方案的隐式有限差分方法进行数值求解。详细说明了在焦耳加热参数(0.0–2.0),粘度参数(0.0–20.0)和导热系数(0.0–10.0)范围内的流体行为。已经发现,对于所考虑的范围,流场和温度场强烈取决于上述参数。还介绍了皮肤摩擦系数和热传递速率。将普朗特数Pr的不同值的皮肤摩擦系数和热传递与先前发表的工作进行了比较,发现它们之间具有极好的一致性.DOI:http://dx.doi.org/10.3329/jname.v10i2.11707

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