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Seismic Performances of Slurry Walls

机译:泥浆墙的抗震性能

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The purpose of this study is to understand the seismic responses of slurry walls. Slurry walls have been widely used as seepage barriers in levees, but their behavior under seismic forces is relatively unknown. The types of walls that are evaluated in this research include cement-bentonite (CB) and soil-cement-bentonite (SCB). A slurry wall with the following dimensions 150cm × 160cm × 20cm is constructed and tested on a 2.4 m × 2.1 m one dimensional shake table that is capable of replicating the 6.7 magnitude Northridge earthquake. The load capacity of the table is 20.0 tons (177.9 kN) and the actuator provides 245 kN.hydraulic fluid driving force through a 25 cm displacement stroke. A 150cm × 187cm × 180cm rigid steel-frame box that is anchored on the shake table contains the slurry wall and the sandy soil that is compacted on both sides of the wall to simulate a levee section. In each shake table test, the slurry wall and the confining soil are instrumented with accelerometers, LVDT transducers, linear potentiometers, and dynamic soil stress gauges to respectively record the accelerations, vertical and horizontal deformations of the wall, and transient dynamic soil pressures on the wall during the simulated earthquake excitations. After the test, the soil is removed so that the slurry wall can be examined for any cracks that are caused by the shaking. Furthermore, samples are taken at 40 cm from the top and the bottom of the wall. Triaxial compression tests along with flexible wall permeability tests are conducted to reveal the possible micro cracks that could be caused by the shaking. The experimental results reveal the during- and post-earthquake performances of the slurry walls, so that adequate remediation measures can be taken.
机译:这项研究的目的是了解泥浆墙的地震反应。泥浆墙已被广泛用作堤防中的渗流屏障,但在地震作用下其行为却相对未知。在这项研究中评估的墙类型包括水泥膨润土(CB)和土壤水泥膨润土(SCB)。构造尺寸为150cm×160cm×20cm的泥浆墙,并在能够复制6.7级北岭地震的2.4 m×2.1 m一维振动台上进行测试。该工作台的负载能力为20.0吨(177.9 kN),执行器通过25 cm的位移冲程提供245 kN的液压油驱动力。一个150cm×187cm×180cm的刚性钢框架箱固定在振动台上,里面装有泥浆墙和被压紧在墙两旁以模拟堤坝截面的沙土。在每个振动台测试中,均使用加速度计,LVDT传感器,线性电位计和动态土壤压力计对泥浆壁和承压土进行测量,以分别记录壁上的加速度,垂直和水平变形以及瞬态动态土压力。模拟地震激发过程中的墙体。测试后,去除污垢,以便可以检查泥浆壁是否有因振动而产生的裂缝。此外,在距墙壁顶部和底部40厘米处取样。进行了三轴压缩测试以及柔性壁渗透性测试,以揭示可能由于振动而引起的微裂纹。实验结果揭示了泥浆墙在地震期间和地震后的性能,因此可以采取适当的补救措施。

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