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Factors Influencing Ground Settlements on Different Geomorphology Units Based on Principal Component Analysis

机译:基于主成分分析的不同地貌单元地面沉降影响因素

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Based on the case Nanjing Metro Line 4, the method Principal Component Analysis (PCA) was used to study the influence of ground settlement by shield tunnel construction on different geomorphology units. Correlation analysis and weighted least square method (WLS) were applied for variables selection and to obtain their relationship with settlement. 5-7 principal components could be used to present the initial 19- 21 variables after decreasing the dimensions of data. For the floodplain of Yangtze River, variable parameters that highly linearly dependent on settlement were depth of tunnel, distance between the roof of tunnel and the bottom of soft soil layer, thickness of soft soil, compression modulus of soil that tunnel passed through and speed of the cutter head. For the Qinhuai ancient channel, variable parameters were Poisson's ratio, porosities, moisture content, unit weight, cohesion, internal friction angle, compression modulus of soil that tunnel passed through, advancing speed, earth chamber pressure. For the terrace of Yangtze River, variable parameters were cohesion, porosities, moisture content, Poisson's ratio, compression modulus and unit weight of soil. In addition, for the geomorphology unit with col landform, variable parameters were different. Residuals of regression formula are small, which will have certain reference value in practical engineering.
机译:以南京地铁4号线为例,采用主成分分析法(PCA)研究盾构施工地面沉降对不同地貌单元的影响。应用相关分析和加权最小二乘法(WLS)进行变量选择,并获得它们与沉降的关系。在减少数据量之后,可以使用5-7个主要成分来表示初始的19-21个变量。对于长江洪泛区而言,高度依赖于沉降的变量参数包括:隧道深度,隧道顶板与软土层底部之间的距离,软土厚度,隧道所通过的土的压缩模量和速度。刀头。对于秦淮古河道,可变参数为泊松比,孔隙率,含水量,单位重量,内聚力,内摩擦角,隧道通过的土壤压缩模量,前进速度,土室压力。对于长江梯田,可变参数为内聚力,孔隙率,含水量,泊松比,压缩模量和土壤单位重量。另外,对于具有col地形的地貌单元,可变参数是不同的。回归公式的残差很小,在实际工程中具有一定的参考价值。

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