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Analytical Solution of a Steady Non-Reacting Laminar Fluid Flow in a Channel Filled With Saturated Porous Media with Two Distinct Horizontal Impermeable Wall Conditions

机译:具有两个不同水平不透水壁条件的饱和多孔介质填充的通道中稳定非反应层流的解析解

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An analysis of the study of momentum and heat transfer characteristics of a non-reacting Newtonian viscous incompressible laminar fluid flow in a channel filled with saturated porous media with both isothermal and isoflux boundary conditions has been carried out. The dimensionless non-linear coupled ordinary differential equations governing the flow and the heat transfer characteristics are solved analytically using the method of undetermined coefficients. Details of velocities and temperature fields for various values of the emerging parameters of the steady solutions of the problems are presented using contour graphs. It was shown that the porous medium may be used to control the flow in a saturated porous media using less permeable materials which offer greater resistance to the boundary-layer momentum development. It was further revealed that increase in porous media permeability and decrease in ratio of viscosities, help to enhance the fluid flow; however the input of the viscous term on the flow behaviour is insignificant for extremely lower values of Darcy number. It was also shown that the fluid temperature is more influenced in isothermal and isoflux processes if the Darcy number, Da, or Brinkman number, Br, or both are increased and if the ratio of viscosities M, is decreased.
机译:进行了对非反应性牛顿粘性不可压缩层流在充满等温和等通量边界条件的充满饱和多孔介质的通道中的动量和传热特性的研究分析。使用不确定系数的方法解析地求解控制流动和传热特性的无量纲非线性耦合常微分方程。使用等高线图显示了问题的稳定解的新兴参数的各种值的速度和温度场的详细信息。结果表明,多孔介质可以使用渗透性较小的材料来控制饱和多孔介质中的流动,所述渗透性较小的材料对边界层动量发展具有更大的抵抗力。进一步揭示出,多孔介质渗透率的增加和粘度比的降低,有助于增加流体流动。然而,对于达西数的极低值,关于流动特性的粘性项的输入微不足道。还表明,如果增加达西数Da或布林克曼数Br或同时增加两者和减小粘度比M,则在等温和等通量过程中,流体温度会受到更大的影响。

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