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Influence of pore water pressure change on consolidation behavior of saturated poroelastic medium

机译:孔隙水压力变化对饱和豆弹性介质固结行为的影响

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There are many factors causing land subsidence, and groundwater extraction is one of the most important causes of subsidence. A set of coupled partial differential equations are derived in this study by using the poro-elasticity theory and linear stress-strain constitutive relation to describe the one-dimensional consolidation in a saturated porous medium subjected to pore water pressure change due to groundwater table depression. Simultaneously, the closed-form analytical solutions for excess pore water pressure and total settlement are obtained. To illustrate the consolidation behavior of the poroelastic medium, the saturated layer of clay sandwiched between two sand layers is simulated, and the dimensionless pore water pressure changes with depths and the dimensionless total settlement as function of time in the clay layer are examined. The results show that the greater the water level change in the upper and lower sand layers, the greater the pore water pressure change and the total settlement of the clay layer, and the more time it takes to reach the steady state. If the amount of groundwater replenishment is increased, the soil layer will rebound.
机译:导致土地沉降有许多因素,地下水提取是最重要的沉降原因之一。在该研究中,通过使用孔弹性理论和线性应力 - 应变组成型关系来衍生一组耦合的部分微分方程,以描述由于地下水表凹陷而对孔隙水压力变化进行饱和多孔介质中的一维固结。同时,获得过量孔隙水压和总沉降的闭合形式分析溶液。为了说明孔隙介质的固结行为,模拟夹杂着两种砂层之间的饱和粘土层,并根据粘土层中的时间的时间,与深度的无量纲孔隙水压力变化,并且在粘土层中的时间的函数进行了无量纲的总沉降。结果表明,上层和下砂层的水位变化越大,孔隙水压变化越大,粘土层的总沉降,达到稳态所需的时间越多。如果地下水补水量增加,土壤层将反弹。

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