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The applicability of SPH and MPS methods to numerical flow simulation of fresh cementitious materials

机译:SPH和MPS方法对新鲜水泥材料的数控模拟

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摘要

This paper aims to clarify applicability of two variants of SPH and MPS methods, namely, a weakly compressible SPH (WCSPH) and a completely implicit MPS (I-MPS) to the flow simulation of freshly mixed cementitious materials (FCM). By comparing the numerical and experimental results of L-flow of fresh mortars, it is found that the I-MPS method has higher calculation efficiency and accuracy. The applicability of the WCSPH method to the gravity-induced flow simulation of FCM is dependent on its fluidity and initial height, whereas the I-MPS method has wide application range if the boundary slippage resistance is appropriately considered. In case of fresh mortar, the I-MPS simulations, using Bingham model and VGM (Viscous Granular Material) model, has almost the same accuracy when the mortar is subjected to a high pressure, whereas the VGM model has high accuracy in case of low pressure. When a large gravity-induced pressure or a large external force acts on FCM, the WCSPH calculates greatly fluctuating inter-particle pressures, while the I-MPS method yields very stable and precise inter-particle pressures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文旨在阐明SPH和MPS方法的两个变体,即弱可压缩的SPH(WCSPH)和完全隐含的MPS(I-MPS)的适用性,以及新混合水泥材料(FCM)的流动模拟。通过比较新鲜砂浆的L流动的数值和实验结果,发现I-MPS方法具有更高的计算效率和准确性。 WCSPH方法对FCM的重力诱导的流动模拟的适用性取决于其流动性和初始高度,而I-MPS方法在适当考虑边界滑动电阻的情况下具有宽的应用范围。在新鲜砂浆的情况下,使用Bingham模型和VGM(粘性粒状材料)模型的I-MPS模拟,当砂浆经受高压时具有几乎相同的准确性,而VGM模型在低的情况下具有高精度压力。当大的重力诱导的压力或大外力作用于FCM时,WCSPH计算颗粒间压力大大波动,而I-MPS方法产生非常稳定和精确的颗粒压力。 (c)2020 elestvier有限公司保留所有权利。

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