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Instrumentation and Numerical Analysis of Cylindrical Diaphragm Wall Movement During Deep Excavation at Coastal Area

机译:沿海地区深基坑开挖过程中地下连续墙的移动及其数值分析

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摘要

The lateral deflection of a cylindrical diaphragm wall and the associated ground movement induced by deep excavation are analyzed by performing site instrumentations and numerical analyses in the coastal area of Korea. Wall lateral deflection, rebar stress, and pore water pressure were measured and analyzed in eight directions. Variations of soil properties with the decrease of confining pressure are compared by performing various in situ tests before ad after excavation. To calculate the wall lateral deflection accurately, the effects of small strain nonlinearity, confining pressure, and the hysteresis loading/unloading loop developed during excavation are considered in the proposed numerical analysis. By comparing numerical results with measured ones, the importances of considering small strain nonlinearity and confining pressure reduction in the nonlinear (FEM) are emphasized. Also, the effects of wall stiffness on the performance of cylindrical diaphragm walls are studied for future similar excavation in the coastal area.
机译:通过在韩国沿海地区进行现场测量和数值分析,分析了圆柱状隔板墙的侧向挠度和由深基坑引起的相关地面运动。在八个方向上测量并分析了墙的侧向挠度,钢筋应力和孔隙水压力。通过在开挖前和开挖后进行各种原位测试,比较了土壤特性随围压降低的变化。为了精确计算壁的横向挠度,在数值分析中考虑了小应变非线性,围压和开挖过程中产生的滞后加载/卸载回路的影响。通过将数值结果与实测结果进行比较,强调了考虑小应变非线性和将非线性限制在有限范围内的重要性。此外,还研究了墙刚度对圆柱状隔板墙性能的影响,以供将来在沿海地区进行类似的开挖。

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