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基于UBCSAND本构关系的西安路气盾坝闸地震动响应特征及液化地基处理研究
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作者 陈敏 姜静静 顾子龙 《水利科技与经济》 2024年第5期30-35,共6页
为了研究古盐河西安路气盾坝工程地震作用水平及坝基液化特性,引入UBCSAND本构理论,根据坝体液化模型,开展地震作用下应力、位移响应分析,并探讨碎石桩设计参数对坝基液化影响。结果显示,地震作用下,坝体上部结构拉应力响应水平以右岸... 为了研究古盐河西安路气盾坝工程地震作用水平及坝基液化特性,引入UBCSAND本构理论,根据坝体液化模型,开展地震作用下应力、位移响应分析,并探讨碎石桩设计参数对坝基液化影响。结果显示,地震作用下,坝体上部结构拉应力响应水平以右岸为最大,且最大拉应力位于9#断面;上下游坝基沉降差38mm,坝基沉降分布具有层次性。当采用碎石桩复合地基时,地震作用过程中,土层孔隙压力比PPR值具有递减、振荡式、平稳三阶段变化特征,而峰值应力比λ参数差异性体现在作用时间0~15s。碎石桩直径愈大,则PPR值、峰值应力比λ参数均愈低;碎石桩直径0.6~0.8m下,PPR值会超过0、峰值应力比λ参数超过1,极易发生坝基液化。从工程设计优化考虑,碎石桩直径不应低于1m。研究结果对水工结构地震动响应特征及地基液化研究具有参考意义。 展开更多
关键词 ubcsand本构 地震动 地基液化 西安路气盾坝
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Fluidization Prediction of Liquefiable Cargo: Based on FINN and UBCSAND Constitutive Models
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作者 Jianwei Zhang Weiwen Qian +1 位作者 Jinshu Lu Gechuan Chen 《Journal of Marine Science and Application》 CSCD 2022年第2期210-227,共18页
Fluidization mechanism of liquefiable cargo is similar to that of sand liquefaction.But the cargo is subjected to more complex external loads during sea transportation.Based on two different constitutive models,numeri... Fluidization mechanism of liquefiable cargo is similar to that of sand liquefaction.But the cargo is subjected to more complex external loads during sea transportation.Based on two different constitutive models,numerical predictions were conducted in this study.And the effects of ship motions including motion acceleration,frequency and relative density of cargo on fluidization was investigated.By comparing with available the experimental data,validation is carried out.Results show that the roll motion is the most important one related to cargo fluidization.When the motion acceleration increases,the possibility of cargo fluidization increases.The higher of the cargo density the lower of the possibility of cargo fluidization.The effect of frequency on cargo fluidization is not unique,and it exists a critical value.The fluidization behavior of cargo could be described both by UBCSAND and FINN models.And the comparisons were discussed and summed up. 展开更多
关键词 Liquefiable cargo FLUIDIZATION FINN ubcsand Ship motion Relative density
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