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首页> 外文期刊>European Physical Journal Plus >Analytical flow study of a conducting Maxwell fluid through a porous saturated channel at various wall boundary conditions
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Analytical flow study of a conducting Maxwell fluid through a porous saturated channel at various wall boundary conditions

机译:麦克斯韦流体在各种壁边界条件下通过多孔饱和通道的分析流动研究

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Hydrodynamics of a conducting visco-elastic fluid in a porous medium sandwiched between two parallel plates, under the effect of the Lorentz force, for both moving and stationary wall boundary conditions, is considered in this paper. The non-linear momentum equation is solved analytically using the optimal homotopy analysis method (OHAM) and the effect of existing parameters in the physics of the problem is demonstrated on the dimensionless velocity profile and skin friction coefficient. The robustness of the analytical solution is checked by comparison with numerical results and plotting the residual errors. Results show that there is excellent agreement between numerical and analytical solutions. Furthermore, the error diagrams show that OHAM yields accurate results in all values of the different effective parameters, such as porous medium shape factor, Forchheimer number, visco-elastic parameter, Reynolds number and the parameters related to the Lorentz force.
机译:本文考虑了在移动和固定壁边界条件下,在洛伦兹力的作用下,夹在两个平行板之间的多孔介质中的导电粘弹性流体的流体动力学。使用最佳同伦分析方法(OHAM)解析求解非线性动量方程,并证明了问题的物理参数对无量纲速度分布和皮肤摩擦系数的影响。通过与数值结果进行比较并绘制残差图来检查分析解决方案的鲁棒性。结果表明,数值解和解析解之间有很好的一致性。此外,误差图表明,OHAM在不同有效参数的所有值(例如,多孔介质形状因子,Forchheimer数,粘弹性参数,雷诺数和与洛伦兹力有关的参数)的所有值上都能得出准确的结果。

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