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Influence of shallow footings on the dynamic response of saturated sand with low confining pressure

机译:浅基础对低围压饱和砂土动力响应的影响

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This research addresses the dynamic response of closely adjacent shallow footings on saturated sand with low confining pressure. This was achieved by performing physical experiments. A large laminar box, filled with sand, on a shake table, was used to simulate the soil-foundation interaction. The subsurface acceleration and the excess pore-pressure were measured along with the acceleration of the footings. A stand-alone footing, three adjacent footings aligned with the axis of shaking and a cluster of six footings (two rows of three footings) were studied. Harmonic waves and seismic ground motions were used. Results show a modification of the response of the footings and sand dependent on the number and location of footings. Variation in excess pore-pressure was observed partly dependent on the length of the drainage path. For the stand-alone condition, the footing acceleration was larger than that of the shake table. However, in the case of these experiments, the acceleration of the footings reduced with an increasing number of footings.
机译:这项研究解决了在低围压下饱和砂土上紧邻的浅层基础的动力响应。这是通过进行物理实验来实现的。在振动台上用一个装满沙子的大层流箱模拟土壤-基础相互作用。测量了地下加速度和多余的孔隙压力以及基脚的加速度。研究了独立的基础,与摇动轴对齐的三个相邻基础和一组六个基础(两行三个基础)。使用了谐波和地震地面运动。结果表明,取决于基础的数量和位置,基础和沙子响应的变化。观察到过大孔隙压力的变化部分取决于排水路径的长度。在独立条件下,立足加速度大于振动台的立足加速度。但是,在这些实验的情况下,底座的加速度会随着底座数量的增加而降低。

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