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Analysis of a Non-Reacting Laminar Fluid Flow with Viscous Dissipation through a Porous Channel Formed by Two Parallel Horizontal Permeable Walls

机译:非反应性层流的粘性耗散通过两个平行的水平可渗透壁形成的多孔通道的耗散

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The analytical solutions for the steady momentum and heat transfer of a non-reacting Newtonian viscous incompressible laminar fluid flow in a channel filled with saturated porous media with isothermal and isoflux heating walls were reported. The problem was studied under the viscous dissipation and suction/injection. The effects of various emerging parameters involved in the steady solution of the problem are discussed using contour graphs. It was revealed that with the imposition of suction/injection (Re ? 0) on the walls, the velocity close to the wall suction of the channel increases faster as compared to the opposite wall injection as Da increases as well as the ratio of viscosities M decreases. It was further shown that the fluid temperature is more influenced in isothermal process if either the Darcy number Da, or Brinkman number Br, or wall suction Reynolds number, Re or the three parameters are increased and either the ratio of viscosity M, or Peclet number Pe, or the wall injection Reynolds number, Re or the three parameters are decreased. With the same imposition in isoflux heating process, the fluid temperature distribution is more enhanced with increase in values of Pe or Br and decrease in values of M or wall suction/injection Reynolds numbers Re or the two emerging parameters respectively, while the effect of Darcy number Da on the flow results in an anomalous phenomenon in temperature distribution in the presence of suction Reynolds number Re. Keywords: laminar flow, non-reacting fluid, suction/injection, isothermal, isoflux
机译:报道了在充满等温和等通量加热壁的饱和多孔介质填充的通道中非反应性牛顿粘性不可压缩层流的稳态动量和传热的解析解。在粘性耗散和抽吸/注入下研究了该问题。使用轮廓图讨论了稳定解决问题所涉及的各种新出现的参数的影响。揭示了通过在壁上施加抽吸/注入(Re≤0),与相反的壁注入相比,随着Da增加以及粘度比M,接近通道的壁吸的速度增加得更快。减少。进一步表明,如果达西值Da或布林克曼数Br或壁吸力雷诺数,Re或三个参数增加,并且粘度比M或Peclet数增加,则流体温度在等温过程中受到的影响更大。 Pe或壁注雷诺数,Re或三个参数均减小。在等通量加热过程中,如果施加相同的压力,则随着Pe或Br值的增加和M值或壁吸/注入雷诺数Re或两个新兴参数的降低,流体温度分布会进一步增强,而达西效应在存在吸力雷诺数Re的情况下,流动上的数Da会导致温度分布出现异常现象。关键字:层流,非反应流体,吸入/注入,等温,等流量

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