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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Total Stress Analysis of Soft Clay Ground Response in Centrifuge Models
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Total Stress Analysis of Soft Clay Ground Response in Centrifuge Models

机译:离心机模型中软土地基响应的全应力分析

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This paper presents one-dimensional ground response simulations of centrifuge models involving soft clay deposits subjected to ground motions of varying intensity. Total stress ground response simulations were performed using equivalent-linear (EL) and nonlinear (NL) methods. Shear strains higher than 10% were mobilized during large ground motions; therefore, undrained shear strength of the clay is an important parameter for the simulations. Testing shows that the San Francisco Bay Mud materials used in centrifuge modeling have monotonic shear strengths that increase by 13% per log cycle of shear strain rate. A comparison of simulation results to observations reveals the importance of incorporating shear strength into the development of stress-strain backbone curves, with appropriate consideration of rate adjustments to shear strength and stiffness. NL ground response simulations provide a good match to observed pseudospectral accelerations only when rate-adjusted shear strengths are properly accounted for; otherwise, the NL simulations have significant underprediction bias at oscillator periods less than the soil column period. EL modeling, even with the incorporation of shear strength, leads to unrealistic spectral shapes and overprediction at short spectral periods for tests involving large-strain site response.
机译:本文介绍了离心模型的一维地面响应模拟,该模型涉及承受不同强度地面运动的软粘土沉积物。使用等效线性(EL)和非线性(NL)方法执行总应力地面响应模拟。在大的地面运动中,动员了超过10%的剪切应变。因此,粘土的不排水剪切强度是模拟的重要参数。测试表明,用于离心机建模的San Francisco Bay Mud材料具有单调剪切强度,每个剪切应变速率的对数周期增加13%。模拟结果与观测值的比较表明,在适当考虑剪切强度和刚度的速率调整的情况下,将剪切强度纳入应力-应变主干曲线的开发中非常重要。 NL地面响应模拟只有在正确考虑了速率调整后的剪切强度后才能与观测到的伪谱加速度很好地匹配。否则,NL模拟在小于土壤柱周期的震荡周期内具有明显的低估偏差。 EL模型,即使结合了剪切强度,也会导致不切实际的光谱形状,并在短光谱周期内对涉及大应变站点响应的测试进行过度预测。

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