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Strata consolidation subsidence induced by metro tunneling in saturated soft clay strata

机译:饱和软黏土层中地铁隧道施工引起的地层固结沉降

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To choose the optimum construction method of metro tunneling, we conducted research with numerical simulation on strata consolidation subsidence by dewatering, dynamic dewatering, and non-dewatering construction method, taking the integrated effects of fluid-solid coupling and tunneling mechanics into account. We obtained the curved surfaces of ground surface subsidence and strata consolidation subsidence. The results show that the quantity of ground surface subsidence is 31 mm for the non-dewatering method, 39 mm for the dynamic dewatering method, and 105 mm for the dewatering method. Their ratio is 1:1.3:3.4; and the percentages of strata consolidation subsidence to whole ground surface subsidence of each construction method is 27% (no-dewatering), 50% (dynamic dewatering), and 79% (dewatering). It is obvious that the non-dewatering construction method is the most effective method to control the strata consolidation subsidence induced by metro tunneling in saturated soft clay strata, and it has been successfully applied to the construction of the Shenzhen metro line 1.
机译:为了选择最佳的地铁隧道施工方法,我们考虑了流固耦合和隧道力学的综合作用,通过脱水,动力脱水和非脱水施工方法对地层固结沉陷进行了数值模拟研究。我们获得了地面沉降和地层固结沉降的曲面。结果表明,非脱水法地面沉降量为31 mm,动态脱水法为39 mm,脱水法为105 mm。它们的比例是1:1.3:3.4;每种施工方法的地层固结沉降对整个地面沉降的百分比分别为27%(不脱水),50%(动态脱水)和79%(脱水)。显然,非脱水施工方法是控制饱和软黏土地层中地铁隧道施工引起的地层固结沉降最有效的方法,并已成功地应用于深圳地铁一号线的施工。

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