具有强制对流和热生成的自由/多孔系统的传热分布:数值研究

A. Sousa
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引用次数: 1

摘要

本文报告了一项与液体复合成型有关的配置的稳定流动和传热分布的数值研究,其中多孔基材和模腔固体边界之间的间隙产生边缘流动。多孔区域内的流动由Brinkman-Forchheimer公式模拟,边缘流动本身由Navier-Stokes方程描述。流体(树脂)的固化模拟为体积热生成。这些预测是使用经过良好测试的控制体积有限元方法获得的,然而,必须设计一种新的方法来定义自由和多孔系统之间的界面。最相关的发现是间隙对零件质量的关键作用。间隙的存在可以大大减少通过多孔基板的平均流量,因此在该区域产生高温水平。这些温度可能足够高,导致正在成型的零件严重缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat transfer distribution for a free/porous system with forced convection and heat generation : a numerical study
This paper reports on a numerical study for steady flow and heat transfer distribution for a configuration relevant to Liquid Composite Molding, where a gap between a porous substrate and the solid boundary of a mold cavity yields an edge flow. The flow within the porous domain is modeled by the Brinkman-Forchheimer formulation, and the edge flow itself is described by the Navier-Stokes equations. The cure of the fluid (resin) is simulated as a volumetric heat generation. The predictions are obtained using a well-tested control-volume finite element method, however, a novel methodology had to be devised to define the interface between the free and porous system. The most relevant finding is the critical role of the gap upon the quality of the part. The presence of the gap can reduce substantially the average flow through the porous substrate, therefore yielding high temperature levels in this region. These temperatures may be sufficiently high to cause serious defects to the part being molded.
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