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Two Dimension Numerical Modeling and LaboratoryExperiment of Slope Change in Granular Piles Due toWater Content

机译:薄板含量粒度桩坡度变化的两个维度数值模拟与实验性研究

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Two dimension numerical modeling by means of molecular dynamics method and laboratory experimental were carried out to investigate maximum stable slope in granular piles due to water content. This study is aimed to get a better understanding of landslide mechanisms. Newton or Coulomb's law as well as damped harmonic oscillation were adopted to represent grains interactions. Soft sphere grains and sands were used in numerical calculation and laboratory experiment respectively. It is shown that the relationship between water content and slope stability obtained from experimental and numerical modeling has similar trend. Stable slope increases as water content or grain interaction increases until some certain amount of water. Addition of water above saturation level will cause sand pile reach slurry condition as observed in laboratory experiment. The results apparently show that grain interaction constant can be related to water content.
机译:通过分子动力学方法和实验室实验进行两维数值模型,以研究含水含量的粒状桩中的最大稳定斜率。本研究旨在更好地了解滑坡机制。采用牛顿或库仑的法律以及阻尼谐波振荡来代表谷物相互作用。在数值计算和实验室实验中使用软球晶粒和砂。结果表明,从实验和数值模型获得的水含量与坡度稳定性之间的关系具有相似的趋势。随着水含量或谷物相互作用增加直至一定量的水,稳定的斜率增加。在饱和水平上方添加水的添加将导致在实验室实验中观察到的砂桩达到浆液状况。结果显然表明谷物相互作用常数可以与含水量有关。

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