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NUMERICAL SIMULATION OF DEEP EXCAVATION IN GRAVEL LAYERS

机译:砾石层深基坑开挖的数值模拟

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This study analyzed gravel excavation cases in the Xindian District of Taiwan. Instead of the parameters typically employed in deep excavation analysis we used the deformations of diaphragm walls in a back analysis to achieve recommendations regarding the ideal range of the soil elastic modulus E-s in the analysis parameters of numerical simulations for the Xindian District stratum or similar strata. We used Plaxis 2D software to analyze the gravel layer. The results indicated that, when the fifth layer of gravel was set to N = 100 and the range of the soil elastic modulus Es was set between 7.84N and 9.8N MPa, where N is the N value of the Standard Penetration Test, the maximum deformation of the wall at the final excavation stage was satisfactorily estimated. A few studies have investigated the gravel layer of the Xindian District; therefore, the current study used the gravel layer of Bagua Mountain in the Changhua Region of Taiwan for conducting a comparison. Previous studies on the gravel layer of Bagua Mountain have reported that the soil elastic modulus Es of this layer ranged from 88.2 to 833 MPa, which is consistent with the empirically estimated range of the elastic modulus Es (180.3-980 MPa) in our study.
机译:本研究分析了台湾新店区的碎石开挖案例。在新店区地层或类似地层的数值模拟分析参数中,我们在后向分析中使用了隔板墙的变形,而不是通常在深基坑分析中使用的参数来获得有关土壤弹性模量E-s理想范围的建议。我们使用Plaxis 2D软件分析了砾石层。结果表明,当第五层砾石层设置为N = 100且土壤弹性模量Es的范围设置在7.84N和9.8N MPa之间时,其中N是标准渗透试验的N值,最大值令人满意地估计了在最终开挖阶段的墙体变形。一些研究调查了新店区的砾石层。因此,本研究利用台湾彰化地区八卦山的砾石层进行了比较。先前对八卦山砾石层的研究表明,该层的土壤弹性模量Es在88.2至833 MPa的范围内,这与我们研究中的经验估算的弹性模量Es(180.3-980 MPa)一致。

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