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Liquefaction Analysis of Large Diameter Long Pile Foundation in Medium Dense Sand under Earthquake Based on Finite Difference Method

机译:基于有限差分法的地震下大直径长桩基液化分析

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Liquefaction properties of large diameter long pile in medium dense sand under earthquake was investigated based on finite difference method. Dynamic property of foundation soil was modeled with equivalent linear model, three peak acceleration of 0.2 g, 0.15 g and 0.1 g was studied. Numerical calculation results show that: peak acceleration affects large pore pressure zone and maximum pore pressure, when peak acceleration increase from 0.1 g to 0.2 g, large pore pressure zone moved from middle to bottom of pile, maximum pore pressure raised from 45 kPa to 350 kPa; liquefaction zone of foundation has a heart shape, and expanded with increase of peak acceleration, peak acceleration increase from 0.1 g to 0.2 g, depth of liquefaction zone bottom increase from 27% to 41% pile length, width of liquefaction zone increase from 34% to 41% pile length, peak acceleration reached to 0.2 g, liquefaction zone extended to ground surface.
机译:基于有限差分法,研究了地震下大直径长桩的液化性能。基础土壤的动态特性用等效线性模型进行了建模,研究了0.2g,0.15g和0.1g的三个峰值加速度。数值计算结果表明:峰值加速度影响大的孔隙压区和最大孔隙压力,当峰值加速度从0.1g增加到0.2g时,大的孔压力区从桩中的中部移动,最大孔隙压力从45 kpa升高到350 KPA;基础液化区具有心脏形状,随着峰值加速的增加,峰值加速度增加到0.1g至0.2g,深度液化区底部增加到27%至41%的桩长,液化区宽度从34%增加至41%桩长,峰加速度达到0.2g,液化区延伸到地面。

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