合并(业务)
压力计
岩土工程
淤泥
排水
水分
孔隙水压力
地下水
压缩性
分离器(采油)
环境科学
工程类
含水层
石油工程
地质学
材料科学
物理
会计
业务
航空航天工程
古生物学
复合材料
热力学
生物
生态学
作者
Gang Zheng,Jingjin Liu,Huayang Lei,M. S. Rahman,Zaikun Tan
标识
DOI:10.1080/1064119x.2016.1215363
摘要
This paper describes a full-scale test on a very soft clay ground around 70,000 m2, which is conducted in Huizhou of Guangdong Province, China, to present a new method of vacuum preloading method. A novel moisture separator was developed, which can automatically regulate the vacuum pressure variation by changing the volume of the gas inside it. A large quantity of water drained by the proposed moisture separators can be directly used as a surcharge loading, which would shorten the ground improvement time and save costs as well. Three levels of silt-prevention prefabricated vertical drains were used in the treating process to accelerate the consolidation. In addition, the vacuum preloading method also included an effective radial drainage device which would strengthen the dredged soft clay fill in a deep layer. In the in situ test, tens of piezometers and settlement plates were installed to measure the variations of excess pore water pressures and settlement of two stages of observation points at different positions in the ground. The results show that the largest average consolidation settlement was 314.1 cm and made a saving of more than 66% in power consumption compared with traditional method. It demonstrates that this adopted method is an efficient, cost-effective, and environmentally friendly method for improving sites with low bearing capacity and high compressibility soils.
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