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Frictional and heat transfer characteristics of flow in square porous tubes of wall-flow monoliths

机译:壁流式单块方形多孔管中流动的摩擦和传热特性

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摘要

In the 1D modeling of flow in the channels of wall-flow monoliths used in diesel particulate filters for engine exhaust emissions control, it is common to use friction coefficients and Nusselt numbers from idealized 2D/3D channel flows with zero wall flow. This practice implicitly makes the additional approximation that the actual velocity and scalar (temperature or species concentrations) profiles within the channels are little affected by nonzero wall flow. There is extensive related research in the filtration literature for the simpler geometries of circular tubes and parallel planes that exposes much more complex and interesting effects as the wall Reynolds number, Re_w, increases. Here we extend these results to the 3D geometry of square channels appropriate for wall-flow monoliths. We solve for the fully developed laminar flow, and heat transfer, within long square channels with porous walls and uniform wall velocity. Results are generated for the appropriate parameter range applicable for the diesel particulate filter application which provide the corrected friction coefficients and Nusselt numbers for nonzero Re_w. Furthermore, we confirm the observation, from prior work on the simpler geometries that there exists a limiting Re_w beyond which there is no fully developed flow for the inlet channels (wall suction). Implications for modeling diesel particulate filters are discussed.
机译:在用于柴油机微粒过滤器的壁流整料通道中的流的一维建模中,用于控制发动机废气排放,通常使用壁厚为零的理想化2D / 3D通道流的摩擦系数和Nusselt数。这种做法暗含了一个额外的近似值,即通道内的实际速度和标量(温度或物质浓度)分布几乎不受非零壁流的影响。对于圆形管和平行平面的更简单几何形状,过滤文献中进行了广泛的相关研究,随着壁雷诺数Re_w的增加,暴露出更为复杂和有趣的效果。在这里,我们将这些结果扩展到适用于壁流式整料的方形通道的3D几何形状。我们解决了在多孔壁且壁速均匀的长方形通道内充分发展的层流和传热问题。针对适用于柴油机微粒过滤器应用的适当参数范围生成结果,该参数范围提供了非零Re_w的校正后的摩擦系数和Nusselt数。此外,我们从对较简单几何形状的先前工作中确认了观察结果,即存在限制Re_w,超过该限制Re_w则没有用于进气通道的充分发展的流量(壁吸力)。讨论了建模柴油机微粒过滤器的含义。

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