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Approximate numerical method for prediction of temperature distribution in flow through narrow gaps containing porous media

机译:预测包含多孔介质的狭窄间隙中流动温度分布的近似数值方法

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摘要

The paper examines an approximate solution to the problem of temperature distribution in the flow through a narrow gap filled with porous medium. This problem is relevant for composite material manufacturing processes, such as the resin transfer molding and its derivatives. In such processes, cold resin is sometimes injected into a closed heated cavity containing a network of stationary fibers. The cavity can be long and wide, but it is usually only a few millimeters thick. The approximate solution is based on an estimated through-the thickness temperature profile that allows one to reduce the complexity from fully three-dimensional to two-dimensional and significantly improve the computational efficiency. The implementation of this solution within an existing simulation code for non-isothermal filling of closed mold is briefly described. Finally, several examples are presented to illustrate the accuracy of the proposed method to predict the midplane temperature of the resin as it impregnates the preform to fill the mold cavity.
机译:本文研究了通过充满多孔介质的狭窄缝隙流中温度分布问题的近似解决方案。这个问题与复合材料的制造工艺有关,例如树脂传递模塑及其衍生物。在这种方法中,有时将冷树脂注入包含固定纤维网络的封闭加热腔中。空腔可以是长而宽的,但通常只有几毫米厚。近似解决方案基于估计的整个厚度温度曲线,从而可以将复杂度从完全三维降低到二维,并显着提高计算效率。简要描述了在现有仿真代码中用于封闭模具的非等温填充的该解决方案的实现。最后,通过几个例子来说明所提出的预测树脂中空板温度的方法的准确性,该方法是在树脂浸渍预成型坯以填充模具型腔时进行预测。

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