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Land subsidence and pore structure of soils caused by the high-rise building group through centrifuge model test

机译:通过离心模型试验高层建筑群引起的地面沉降和土壤孔隙结构

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摘要

In the urban area of Shanghai, the dewatering of groundwater was controlled strictly and the engineering-environment effect of the high-rise building group became to be the main cause of land subsidence in Shanghai. Based on the high-rise building group in the soft soil area in Shanghai, the mechanism of land subsidence was studied in this paper by the centrifuge model test. The central area of the building group has larger subsidence and the subsidence superimposition effect is obvious. It can exceed the allowance and cause land subsidence hazard. The land subsidence affected by the different building distances was also studied. For smaller building distances, the subsidence superimposition effect is more obvious. The engineering characteristics of soils are controlled by the state of pore structure of soils to a great extent. The parameter of specific subsidence was put forward as a tie to analyze the relationship between land subsidence and pore structure of soils. The pore structure of each soil layer was studied by the mercury intrusion porosimetry test (MIP) and the pore distribution of each soil layer was studied by the fractal theory. There are mainly macropores in silty clay of layer no. 4, clayey soil of layer no. 8, silty sand of layer no. 7 and layer no. 9 in Shanghai. The ink-bottle effect exists in the intrusion stage in the MIP test. There are four different fractal dimensions in silty clay of layer no. 4 and clayey soil of layer no. 8 and three different fractal dimensions in silty sand of layer no. 7 and layer no. 9.
机译:在上海市区,严格控制地下水的脱水,高层建筑群的工程环境效应成为上海地面沉降的主要原因。本文以上海市软土地区高层建筑群为研究对象,通过离心模型试验研究了地面沉降的机理。该建筑群的中心区域沉降较大,沉降叠加效果明显。它可能超过津贴,并导致地面塌陷危险。还研究了不同建筑距离对地面沉降的影响。对于较小的建筑物距离,下沉叠加效果更加明显。土壤的工程特性在很大程度上受到土壤孔隙结构状态的控制。提出了比沉降参数作为分析土壤沉降与土壤孔隙结构关系的纽带。通过压汞法(MIP)研究了每个土壤层的孔隙结构,并通过分形理论研究了每个土壤层的孔隙分布。第1层粉质粘土中主要有大孔。 4,层的黏土。 8,层号为粉砂。 7和层号。 9在上海。在MIP测试的侵入阶段中存在墨水瓶效应。 No.层的粉质粘土有四种不同的分形维数。 4号层和黏土。 8号层的粉砂中有3种不同的分形维数。 7和层号。 9。

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