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Deformation effects of porosity variation on soil consolidation caused by groundwater table decline

机译:地下水位下降引起的孔隙度变化对土壤固结的变形影响

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摘要

Soil consolidation has been widely analyzed using the poroelastic theory. As soil consolidation proceeds, porosity variation leads to the changes in hydraulic conductivity, Young's modulus, and body force. However, the combined deformation effect of porosity variation on soil consolidation is rarely examined. In this study, a poroelastic consolidation model used to simultaneously consider the changes in hydraulic conductivity, Young's modulus, and body force was developed to investigate the combined deformation effect of porosity variation on soil consolidation caused by groundwater table decline. The results indicate that the deformation effect of porosity variation on soil consolidation is negligible when the body force number is <0.01. For body force numbers >0.01, soil displacement could be overestimated or underestimated if the combined deformation effect of porosity variation is not completely considered. The misestimation of soil displacement increases as the body force number increases. In addition, the combined deformation effect of porosity variation also affects the transmission of pore water pressure. Therefore, it could be concluded that a reliable analysis of soil consolidation must simultaneously account for the variations in hydraulic conductivity, Young's modulus, and body force.
机译:使用孔隙弹性理论对土壤固结进行了广泛的分析。随着土壤固结的进行,孔隙度的变化会导致水力传导率,杨氏模量和体力的变化。但是,很少研究孔隙度变化对土壤固结的综合变形作用。在这项研究中,建立了一个多孔弹性固结模型,用于同时考虑水力传导率,杨氏模量和体力的变化,以研究孔隙度变化对地下水位下降引起的土壤固结的综合变形效应。结果表明,当体力值<0.01时,孔隙度变化对土壤固结的变形影响可忽略不计。对于大于0.01的力,如果不完全考虑孔隙度变化的组合变形效应,则土壤位移可能被高估或低估。土壤位移的错误估计随着体力数的增加而增加。另外,孔隙度变化的综合变形效应也影响孔隙水压力的传递。因此,可以得出结论,对土壤固结的可靠分析必须同时考虑水力传导率,杨氏模量和体力的变化。

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