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首页> 外文期刊>Geotextiles and Geomembranes >Radial consolidation of PVD-Installed normally consolidated soil with discharge capacity reduction using large-strain theory
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Radial consolidation of PVD-Installed normally consolidated soil with discharge capacity reduction using large-strain theory

机译:使用大应变理论,PVD安装的正常固结土的径向固结,降低排量

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摘要

The radial consolidation rate of prefabricated vertical drain (PVD)-installed soft deposits is known to be closely related to the PVD discharge capacity, which usually decreases during consolidation. Conventional solutions for radial consolidation of PVD-installed deposits have been developed to consider discharge capacity reduction using small-strain theory, in which the volume compressibility coefficient and soil permeability were assumed to be constant. This paper formulates a general expression for discharge capacity reduction with time in numerical analysis based on large-strain theory. Soil disturbance effects caused by PVD installation, such as a nonlinear distribution for radial hydraulic conductivity, are captured in the proposed solution. The proposed solution was applied to field data from a test embankment at Saga Airport. The proposed solution provides a good result which is close to the measured data.
机译:已知预制垂直排水(PVD)安装的软沉积物的径向固结速率与PVD排放能力密切相关,PVD排放能力通常在固结期间降低。已经开发出了用于PVD安装的沉积物径向固结的常规解决方案,以考虑使用小应变理论来考虑排放容量降低的情况,其中假定体积压缩系数和土壤渗透率是恒定的。本文基于大应变理论,建立了数值分析中随时间减少放电容量的通用表达式。在建议的解决方案中捕获了由PVD安装引起的土壤扰动效应,例如径向水力传导率的非线性分布。所提出的解决方案已应用于佐贺机场的测试路堤的现场数据。所提出的解决方案提供了接近测量数据的良好结果。

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