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Macro and micro analysis on deformation characteristics of fine sand under different groundwater table change

机译:不同地下水台变化下细砂变形特性的宏观分析

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By using the samples of fine sand in Shanghai’s seventh layer, creep tests were performed to investigate the deformation characteristics of fine sand under different groundwater table change. It was revealed that the creep of fine sand is closely related to groundwater table change: when the effective force caused by groundwater table change is smaller than pre-consolidation force, the deformation is mainly elastic. When effective force caused by groundwater table change is bigger than pre-consolidation force, the compression deformation is large and the rebound is small; and the deformation is mainly viscoelastic plastic when equal to pre-consolidation stress. Through the scanning electron microscope (SEM) analysis it was found that creep of fine sand is dominated by the slip of particles, not by the breaking of particles. And the fine sand particles are squeezed under the load induced by the groundwater table change, and the particles slide along the indirect contact surface of the particles, resulting in the continuous adjustment of position and relative displacement. Mercury injection test shows that the pore size distribution of fine sand has little change before and after the test.
机译:通过使用上海的第七层的细砂样品,进行蠕变试验以研究不同地下水表变化下细砂的变形特性。据透露,细砂的蠕变与地下水位的变化密切相关:当由地下水台变化引起的有效力量小于预整合力时,变形主要是弹性的。当地下水位变化引起的有效力量大于预整合力时,压缩变形大,反弹小;并且变形主要是粘弹性塑料,当等于预整合应力。通过扫描电子显微镜(SEM)分析,发现细砂的蠕变是由颗粒的滑移主导,而不是通过颗粒的破碎。并且在地下水台变化引起的负荷下挤压细砂颗粒,并且颗粒沿着颗粒的间接接触表面滑动,导致位置和相对位移的连续调节。汞注射试验表明,在试验之前和之后,细砂的孔径分布几乎没有变化。

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