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Preloading clayey deposit by vacuum pressure with cap-drain: Analyses versus performance

机译:通过带盖排水管的真空压力预加载粘土沉积物:分析与性能

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摘要

A method of improving soft clayey deposit by combining cap-drain (CPVD) with vacuum pressure is described. The method uses a surface or subsurface soil layer as a sealing layer with no need to place an air-tightening sheet on the ground surface. It is explained that the method has advantages for the following situations: (a) a higher air/water permeability layer at ground surface and (b) combining vacuum pressure with embankment load. A case history of consolidating a reclaimed clayey deposit by combining CPVD with vacuum pressure is analyzed and discussed. The site was in an under-consolidated state before starting the project. It is shown that the method is effective, and the method proposed by Chai et al. [Ground deformation induced by vacuum consolidation. Journal of Geotechnical and Geoenvironmental Engineering, ASCE 131(12), 1552-1561] for calculating the vacuum-pressure-induced ground deformation is useful for the design of the vacuum consolidation project. The back-calculation shows that for this under-consolidated deposit, vacuum pressure caused plane strain type isotropic deformation near the ground surface.
机译:描述了一种通过结合帽排水(CPVD)和真空压力来改善软质粘土沉积的方法。该方法使用表面或地下土壤层作为密封层,而无需在地面上放置气密片。据解释,该方法在以下情况下具有优势:(a)地面上较高的空气/水渗透层,以及(b)结合真空压力和路堤荷载。分析并讨论了通过结合CPVD和真空压力来固结再生黏土沉积物的案例。在开始项目之前,该站点处于未整合状态。结果表明,该方法是有效的,由Chai等人提出。 [真空固结引起的地面变形。 [岩土工程与环境工程学报,ASCE 131(12),1552-1561]用于计算真空压力引起的地面变形对于真空固结项目的设计很有用。反算表明,对于这种欠固结的沉积物,真空压力在地面附近引起平面应变型各向同性变形。

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