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Percentage porosity computation of three-dimensional non-convex porous geometries using the direct Monte Carlo simulation

机译:使用直接蒙特卡罗模拟的三维非凸多孔几何百分比计算

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摘要

The pursuit of more representative numerical models for open-cell metallic foams requires the computation of volume and percentage porosity of geometries containing randomly distributed interconnected pores, which is one of the main characteristics that determines its mechanical properties. From a mathematical standpoint, the analytical definition of foam geometries forms a three-dimensional non-convex set. It is known that the volume computation of n-dimensional polytopes and sets is a P-hard problem. A common way to approach this problem is using the Monte Carlo techniques; however, efforts are oriented toward the treatment of convex polytopes and polyhedrons. In this article, the Direct Monte Carlo Simulation (DMCS) is used to compute the percentage porosity of three-dimensional non-convex sets. A single-thread Python code was implemented, and tests were run to estimate the percentage porosity of three-dimensional open-cell porous geometries. Measurements of percentage porosity and runtime requirements over cubical and cylindrical geometries containing from 100 to 4000 overlapping spherical pores showed high accuracy and consistency in non-convex three-dimensional sets, while the proposed algorithm achieved a significant reduction in computing time with respect to the currently available method. In the same manner, results from the proposed algorithm were compared with a similar software available, showing a gain in both performance time and accuracy.
机译:对开放式电池金属泡沫的更多代表性数值模型需要计算含有随机分布的互连孔的几何形状的体积和百分比,这是确定其机械性能的主要特征之一。从数学的角度来看,泡沫几何形状的分析定义形成三维非凸起集。众所周知,n维多核和集合的体积计算是p难题。接近这个问题的常见方法是使用蒙特卡罗技术;然而,努力朝向治疗凸多粒子和多面体的治疗。在本文中,直接蒙特卡罗模拟(DMC)用于计算三维非凸集的百分比孔隙率。实现了单线Python代码,并运行测试以估计三维开放式多孔几何形状的百分比孔隙度。在含有100到4000个重叠球形孔的立方和圆柱形几何形状上的百分比和运行时要求的测量显示了非凸三维集合的高精度和一致性,而所提出的算法在当前的计算时间达到了显着降低可用方法。以相同的方式,将所提出的算法的结果与可用的类似软​​件进行比较,显示性能时间和精度的增益。

著录项

  • 来源
    《Engineering with Computers》 |2021年第2期|951-973|共23页
  • 作者单位

    Department of Mechanical Engineering Universidad Tecnica Federico Santa Maria Av. Espana 1680 Casilla 110-V Valparaiso Chile;

    Department of Mechanical Engineering Universidad Tecnica Federico Santa Maria Av. Espana 1680 Casilla 110-V Valparaiso Chile;

    Department of Mechanical Engineering Universidad Tecnica Federico Santa Maria Av. Espana 1680 Casilla 110-V Valparaiso Chile;

    Department of Mechanical Engineering Universidad Tecnica Federico Santa Maria Av. Espana 1680 Casilla 110-V Valparaiso Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Direct Monte Carlo simulation; Percentage porosity; Non-convex sets; Metallic foams; Python;

    机译:直接蒙特卡罗模拟;孔隙度;非凸套;金属泡沫;Python;
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