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BEHAVIOR OF SHEET PILE QUAY WALL STABILIZED BY SEA-SIDE GROUND IMPROVEMENT IN DYNAMIC CENTRIFUGE TESTS

机译:在动态离心试验中通过海旁地面改进稳定板桩码头墙的行为

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References(21) Sea-side ground improvement is one of the techniques used for increasing seismic stability of sheet pile quay wall. A series of centrifuge shaking table test is conducted to investigate the seismic behavior of sheet pile quay wall stabilized with sea-side cement deep mixing (CDM). At 50 g centrifugal acceleration, the clay ground is consolidated and four to five stages of shaking are applied to the quay wall. The recorded input-output accelerations, deflection of the quay wall, earth pressures along depth and pore pressures were used to evaluate the behavior of the stabilized sheet pile quay wall. The results indicated that an improved area provides significant resistance against seismic loading. The ground improvement can reduce 30% to 60% bending moment during the seismic loading. The horizontal deflection of the quay wall decreases rapidly with increase in area of the CDM until it reaches a certain limit. Prediction by the numerical model agrees fairly well with the results of centrifuge model tests.
机译:参考文献(21)海边地基改良是用于增加板桩码头墙抗震稳定性的技术之一。进行了一系列的离心振动台试验,以研究采用海边水泥深层搅拌(CDM)加固的板桩码头墙的抗震性能。在50 g的离心加速度下,粘土地面被固结,并向码头壁施加了四到五个阶段的振动。记录的输入输出加速度,码头壁的挠度,沿深度的土压力和孔隙压力被用于评估稳定的板桩码头壁的性能。结果表明,改进的区域可显着抵抗地震载荷。在地震荷载作用下,地面改良可以减少30%至60%的弯矩。码头壁的水平偏转随着CDM面积的增加而迅速减小,直到达到一定极限为止。数值模型的预测与离心​​模型测试的结果非常吻合。

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