首页> 外文期刊>Journal of Composite Materials >Predicting permeability based on flow simulations and textile modelling techniques: Comparison with experimental values and verification of FlowTex solver using Ansys CFX
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Predicting permeability based on flow simulations and textile modelling techniques: Comparison with experimental values and verification of FlowTex solver using Ansys CFX

机译:基于流动模拟和织物建模技术的渗透率预测:与实验值的比较以及使用Ansys CFX验证FlowTex求解器

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This paper compares the predicted permeability values obtained from conducting simulations with experimental results from the second permeability benchmark exercise. An automated tool, which has been developed for this purpose and is presented here, carries out flow simulations on WiseTex generated meshes using Ansys CFX. Different meshing methods are explored, and the effects of different boundary conditions, number of layers used to model the preform and the incorporation of nesting are examined. The predicted permeability values of the textile model closest to the real preform structure were higher by a factor of approximately two compared to the experimental values. In the second part of this work, the permeability values obtained using Ansys CFX and FlowTex solvers are compared and the ability of both solvers to capture variations in unit cell geometric parameters is demonstrated. A close agreement between the two solvers was found.
机译:本文将进行模拟获得的预测渗透率值与第二次渗透率基准测试的实验结果进行了比较。为此目的而开发的自动化工具已在此处介绍,它使用Ansys CFX对WiseTex生成的网格进行了流动模拟。探索了不同的网格划分方法,并研究了不同边界条件,用于模拟预成型件的层数以及嵌套的合并的影响。与实验值相比,最接近真实预成型件结构的纺织品模型的预测渗透率值高大约两倍。在这项工作的第二部分中,比较了使用Ansys CFX和FlowTex求解器获得的渗透率值,并演示了这两种求解器捕获晶胞几何参数变化的能力。发现了两个求解器之间的紧密协议。

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