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An investigation of MHD Flows of Nanofluid over an oscillating surface with Joule Heating

机译:用焦耳热研究纳米流体在振动表面上的MHD流动

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The present study aims at investigating unsteady hydromagnetic flow of viscous incompressible, conducting nanofluid over an infinite oscillating surface with Joule heating. The governing equations involved are transformed into dimensionless form using appropriate non-dimensional variables. The resulting dimensionless momentum equation is solved analytically by using the method of separation of variables. The Joule heating terms in the energy equation are expressed explicitly using this solution. With the help of the superposition principle, a complementary function is creatively synthesized and a particular integral is obtained by the method of undetermined coefficients. The complete solution is obtained by summing the two. The effects of magnetic field strength, oscillation frequency, nanoparticle concentration, Prandtl number and the Eckert number are illustrated graphically.<
机译:本研究旨在研究粘性不可压缩的不稳定磁流体流,利用焦耳热在无限振荡的表面上传导纳米流体。使用适当的无量纲变量将涉及的控制方程式转换为无量纲形式。通过使用变量分离的方法来解析所得的无量纲动量方程。能量方程中的焦耳热项使用此解决方案明确表示。借助叠加原理,创造性地合成了一个互补函数,并通过不确定的系数方法获得了一个特定的积分。完整的解决方案是通过将两者相加得出的。图解说明了磁场强度,振荡频率,纳米颗粒浓度,普朗特数和埃克特数的影响。

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