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首页> 外文期刊>Neural computing & applications >Magnetohydrodynamic three-dimensional flow of nanofluids with slip and thermal radiation over a nonlinear stretching sheet: a numerical study
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Magnetohydrodynamic three-dimensional flow of nanofluids with slip and thermal radiation over a nonlinear stretching sheet: a numerical study

机译:非线性拉伸板上滑动和热辐射的磁性信息动力学三维流动:数值研究

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摘要

A numerical simulation for mixed convective three-dimensional slip flow of water-based nanofluids with temperature jump boundary condition is presented. The flow is caused by nonlinear stretching surface. Conservation of energy equation involves the radiation heat flux term. Applied transverse magnetic effect of variable kind is also incorporated. Suitable nonlinear similarity transformations are used to reduce the governing equations into a set of self-similar equations. The subsequent equations are solved numerically by using shooting method. The solutions for the velocity and temperature distributions are computed for several values of flow pertinent parameters. Further, the numerical values for skin-friction coefficients and Nusselt number in respect of different nanoparticles are tabulated. A comparison between our numerical and already existing results has also been made. It is found that the velocity and thermal slip boundary condition showed a significant effect on momentum and thermal boundary layer thickness at the wall. The presence of nanoparticles stabilizes the thermal boundary layer growth.
机译:介绍了温度跳跃边界条件的水基纳米流体混合对流三维滑动流动的数值模拟。流动是由非线性拉伸表面引起的。能量方程的守恒涉及辐射热通量术语。还掺入了可变种类的横向磁效应。合适的非线性相似性变换用于将控制方程还原成一组自相似的方程。随后的等式通过使用拍摄方法来数量解决。用于速度和温度分布的解决方案对于多个流动相关参数的若干值计算。此外,制表不同纳米颗粒的皮肤摩擦系数和露珠数的数值。我们的数值和已经存在的结果之间也已经进行了比较。发现速度和热滑移边界条件对壁上的动量和热边界层厚度显示出显着影响。纳米颗粒的存在稳定了热边界层生长。

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