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首页> 外文期刊>International journal of geotechnical earthquake engineering >Seismic Performance of Soil-Ash and Soil-Ash-Foundation System: A Parametric Study
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Seismic Performance of Soil-Ash and Soil-Ash-Foundation System: A Parametric Study

机译:土灰和土灰基础系统的地震性能:参数研究

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In this study, a 3D seismic response of soil deposit, soil-ash deposit and soil-ash-foundation system was investigated. Homogeneous sand deposit of 80m × 9m × 20m was initially analyzed. A pond ash layer is on top of the sand deposit with varying thicknesses and the efficiency of the pond ash layer on the sand deposit was evaluated for its best suitability. The optimum sand-ash deposit overlain by a shallow foundation has been analysed under the excitation of the Nepal (Mw:7.8) and North East India earthquake (Mw:7.5). A seismic response analysis was performed using finite element software PLAXIS3D. The finite element model adopted for the present study has been validated using 1D nonlinear ground response analysis programs. e.g. DEEPSOIL and Cyclic1D. Results of the response analysis have been determined in terms of acceleration, displacement, excess pore pressure, and excess pore pressure ratio. It was observed that, the sand-pond ash-foundation system experienced liquefaction when excited under the Nepal earthquake motion whereas it is safe against the North East India earthquake.
机译:在本研究中,研究了土壤沉积物,土壤 - 灰沉积物和土 - 灰基础系统的3D地震反应。最初分析了80m×9m×20m的均匀砂沉积物。池灰层在具有变化厚度的砂沉积物顶部,并评估了池粉末在砂矿床上的效率进行了最佳适用性。在尼泊尔(MW:7.8)和东北地震(MW:7.5)的激发下,通过浅地基础覆盖的最佳砂灰沉积物。使用有限元软件PLAXIS3D进行地震反应分析。使用1D非线性地面响应分析计划验证了本研究采用的有限元模型。例如Deepsoil和Cyclic1D。在加速,位移,过量的孔隙压力和过量的孔隙压力比方面已经确定了响应分析的结果。观察到,在尼泊尔地震行动下兴奋时,沙池基础系统在兴奋时经历了液化,而这是对印度东北地震安全的。

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