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首页> 外文期刊>Hydrological Processes >A coupled one-dimensional viscoelastic-plastic model for aquitard consolidation caused by hydraulic head variations in aquifers
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A coupled one-dimensional viscoelastic-plastic model for aquitard consolidation caused by hydraulic head variations in aquifers

机译:一种耦合的一维粘弹性模型,用于含水液液压头变异引起的水库固结

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摘要

Accurate and practical calculation of aquitard consolidation is required for a reliable analysis of land subsidence caused by groundwater overexploitation in a multilayered aquifer system because aquitards are generally more compressible than aquifers are. This study proposes a coupled one-dimensional viscoelastic-plastic consolidation model that considers the combined effect of changes in soil parameters and body force to simulate aquitard consolidation caused by hydraulic head variations in neighbouring aquifers. The proposed model uses variable total stress and simultaneously solves hydraulic head and vertical soil displacement. The constitutive relation based on the Voigt model with different elastic moduli of the spring in normally consolidated and overconsolidated soils is used to describe the viscoelastic-plastic deformation mechanism of aquitards. In addition, the proposed model considers the combined effect of variations in hydraulic conductivity, elastic moduli, and body force on the calculation of aquitard consolidation. Three hypothetical scenarios with various hydraulic head variations in aquifers are used to examine the coupled one-dimensional viscoelastic-plastic consolidation model. The results show that neglecting plasticity and viscosity of soil causes aquitard consolidation to be respectively underestimated and overestimated. In addition, ignoring body force variation underestimates aquitard consolidation, whereas neglecting soil parameters variation overestimates aquitard consolidation. Two real case scenarios are also studied to further demonstrate the applicability of the coupled one-dimensional viscoelastic-plastic consolidation model. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:准确实际的水平整合计算,可靠地分析由多层含水层系统中的地下水过度引起的土地沉降,因为水管通常比含水层更可压缩。本研究提出了一种耦合的一维粘弹性 - 塑料固结模型,其考虑了土壤参数和体力变化的综合影响,以模拟邻近含水层液压头变化引起的水槽固结。所提出的模型使用可变的总应力,同时解决液压头和垂直土壤位移。基于voIGT模型的voigt模型在正常固结和过覆土壤中具有不同弹性模型的voigt模型,用于描述水产粘弹性变形机制。此外,所提出的模型考虑了液压导电性,弹性模动力和体力变化的综合影响,对水产巩固计算的计算。使用含水层中各种液压头变化的三种假设情景用于检查耦合的一维粘弹性固结模型。结果表明,忽视土壤的可塑性和粘度导致水产巩固分别低估和高估。此外,忽略身体力变化低估了水上巩固,而忽略土壤参数变异高估水槽整合。还研究了两个实际情况的场景,进一步证明了耦合的一维粘弹性固结模型的适用性。版权所有(c)2015 John Wiley&Sons,Ltd。

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