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首页> 外文期刊>SIAM journal on applied dynamical systems >Model for Coupled Large Strain Consolidation and Solute Transport in Layered Soils
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Model for Coupled Large Strain Consolidation and Solute Transport in Layered Soils

机译:耦合大应变固结和层状土壤溶质运输的模型

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摘要

A numerical model, called CST3 (Consolidation and Solute Transport 3), is presented for coupled one-dimensional large strain consolidation and solute transport in layered soils. The consolidation algorithm accounts for vertical strain, soil self-weight, general constitutive relationships, relative velocity of fluid and solid phases, changing compressibility and hydraulic conductivity during consolidation, unload/reload, time-dependent loading and boundary conditions, external hydraulic gradient, variable preconsolidation stress profiles, and multiple soil layers with different material properties. The solute transport algorithm accounts for advection, diffusion, mechanical dispersion, linear and nonlinear sorption, equilibrium and nonequilibrium sorption, porosity-dependent effective diffusion coefficient, and first-order decay reactions. CST3 is based on a dual-Lagrangian framework that separately tracks the motions of fluid and solid phases. The development of CST3 is first described, followed by verification checks. Numerical simulations indicate that layered soil heterogeneity and preconsolidation stress can have important effects on consolidation-induced solute transport behavior. Failure to correctly account for soil heterogeneity or preconsolidation stress profile can lead to significant errors in the analysis of consolidation and solute transport in layered soils.
机译:提出了一种称为CST3(固结和溶质转运3)的数值模型,用于偶联一维大应变固结和层状土壤溶质转运。整合算法占垂直应变,土壤自重,一般本构关系,流体和固相的相对速度,在固结,卸载/重载,时间依赖性加载和边界条件下改变压缩性和液压导电性,外部液压梯度,变量预溶解应力分布和具有不同材料性质的多种土壤层。溶质运输算法考虑了平流,扩散,机械分散,线性和非线性吸附,平衡和非预测吸附,孔隙依赖性有效扩散系数和一阶腐烂反应。 CST3基于双拉格朗日框架,分别跟踪流体和固相的运动。首先描述CST3的开发,然后进行验证检查。数值模拟表明层状土壤异质性和前透焊应力对固结诱导的溶质转运行为具有重要作用。未能正确考虑土壤异质性或前透焊应力曲线可导致在分层土壤中分析和溶质转运分析中的显着误差。

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