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Forced Convection in a Bidisperse Porous Medium Embedded in a Circular Pipe

机译:圆管中嵌入的双分散多孔介质中的强制对流

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Compared to the regular (monodisperse) porous medium (MDPM) with one porosity scale, the bidisperse porous medium (BDPM) has two porosity scales, which may enhance the heat transfer capability. This work investigates the forced convective heat transport through a circular pipe filled with a BDPM. The two-velocity two-temperature model is utilized to describe the flow and temperature fields for both the fracture phase (macropores) and the porous phase (the matrix with micropores). The bidispersion effect is taken into account by altering the permeability of the porous phase in the medium. Analytical solutions of the velocities and temperatures for both phases are derived under the constant wall heat flux boundary condition. The local Nusselt number and heat transfer performance (HTP) are also developed to investigate how the bidispersivity affects the thermal characteristics over a wide range of parameter space.
机译:与具有一个孔隙率标度的常规(单分散)多孔介质(MDPM)相比,双分散多孔介质(BDPM)具有两个孔隙率标度,可以提高传热能力。这项工作研究了通过充满BDPM的圆形管道的强制对流传热。两速双温模型用于描述断裂相(大孔)和多孔相(具有微孔的基质)的流场和温度场。通过改变多孔相在介质中的渗透性考虑了双分散效应。在恒定壁热通量边界条件下,得出了两个相的速度和温度的解析解。还开发了局部Nusselt数和传热性能(HTP),以研究双分散性如何在较宽的参数空间范围内影响热特性。

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