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首页> 外文期刊>Canadian Geotechnical Journal >Effect of load shape on relationship between dissipated energy and residual excess pore pressure generation in cyclic triaxial tests
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Effect of load shape on relationship between dissipated energy and residual excess pore pressure generation in cyclic triaxial tests

机译:载荷形状对循环三轴试验中耗散能量与剩余过剩孔隙压力产生之间关系的影响

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摘要

The energy dissipated in soil during cyclic loading can be used to predict the change in the pore-water pressure developed in the soil. To examine whether the energy required to cause liquefaction is dependent on or independent of the load shape applied, a series of 28 cyclic triaxial tests were performed using five different load shapes having a range of cyclic stress ratios. The five load shapes were applied to identically prepared specimens of clean sand and the dissipated energy – pore pressure generation characteristics examined. It was found that that the dissipated energy to cause initial liquefaction was normally distributed and independent of the load shape, although it is seemingly somewhat dependent on duration of loading. A corollary to this finding is that laboratory data from specimens tested using sinusoidal loadings can be used to calibrate the Green, Mitchell, and Polito (GMP) energy-based pore pressure generation model for use in predicting in situ pore pressures in soils subjected to nonsinusoidal loadings (e.g., earthquake loadings). Given the relative simplicity of the GMP model, these findings make the model an attractive alternative to implement in effective stress dynamic response codes.
机译:循环加载过程中耗散在土壤中的能量可用于预测土壤中产生的孔隙水压力的变化。为了检查引起液化的能量是取决于还是不依赖于所施加的载荷形状,使用具有一定范围的循环应力比的五个不同载荷形状进行了一系列28次循环三轴试验。将五个载荷形状施加到相同准备的干净沙子样本上,并检查了耗散的能量-孔隙压力生成特性。已经发现,引起初始液化的耗散能量是正态分布的,并且与载荷的形状无关,尽管它似乎在某种程度上取决于载荷的持续时间。这一发现的推论是,使用正弦载荷测试的样本的实验室数据可用于校准基于Green,Mitchell和Polito(GMP)能量的孔隙压力生成模型,用于预测非正弦曲线土壤中的原位孔隙压力。荷载(例如地震荷载)。考虑到GMP模型的相对简单性,这些发现使该模型成为在有效应力动态响应代码中实施的有吸引力的替代方案。

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