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A proposal on alternative sampling-based modeling method of spherical particles in stochastic media for Monte Carlo simulation

机译:基于替代采样的随机介质中球形粒子建模方法的建议

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Chord length sampling method in Monte Carlo simulations is a method used to model spherical particles with random sampling technique in a stochastic media. It has received attention due to the high calculation efficiency as well as user convenience; however, a technical issue regarding boundary effect has been noted. In this study, after analyzing the distribution characteristics of spherical particles using an explicit method, an alternative chord length sampling method is proposed. In addition, for modeling in finite media, a correction method of the boundary effect is proposed. Using the proposed method, sample probability distributions and relative errors were estimated and compared with those calculated by the explicit method. The results show that the reconstruction ability and modeling accuracy of the particle probability distribution with the proposed method were considerably high. Also, from the local packing fraction results, the proposed method can successfully solve the boundary effect problem. It is expected that the proposed method can contribute to the increasing of the modeling accuracy in stochastic media.
机译:蒙特卡洛模拟中的弦长采样方法是一种用于在随机介质中使用随机采样技术对球形粒子建模的方法。由于其高计算效率和用户便利性而受到关注。然而,已经注意到关于边界效应的技术问题。在这项研究中,在使用显式方法分析了球形颗粒的分布特征之后,提出了一种替代弦长采样方法。另外,为在有限介质中建模,提出了边界效应的校正方法。使用所提出的方法,估计样本概率分布和相对误差,并将其与通过显式方法计算的样本概率分布和相对误差进行比较。结果表明,所提方法对粒子概率分布的重构能力和建模精度都很高。此外,从局部填充分数结果来看,该方法可以成功解决边界效应问题。期望所提出的方法可以有助于随机介质中建模精度的提高。

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