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带有耗能器的基底滑动结构隔震效果研究 被引量:1
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作者 杜成斌 池永斌 《河海大学学报(自然科学版)》 CAS CSCD 1996年第5期72-79,共8页
对带有基底滑动隔震系统及耗能器系统的结构进行了研究,建立了三种情况下(常规结构、基底滑动隔震结构、带有耗能器的隔震结构)的数学模型,推导了有关公式,并编制了相应的计算程序.研究了一座四层建筑物在ElCentro地震波... 对带有基底滑动隔震系统及耗能器系统的结构进行了研究,建立了三种情况下(常规结构、基底滑动隔震结构、带有耗能器的隔震结构)的数学模型,推导了有关公式,并编制了相应的计算程序.研究了一座四层建筑物在ElCentro地震波作用下的位移响应、加速度响应、层间剪力响应等,考虑了不同摩擦系数、不同加速度峰值及附加耗能器不同参数时对结构隔震效果的影响,并与相应的线弹性结构进行了比较.通过计算分析。 展开更多
关键词 地震响应 耗能 基底滑动 隔震结构
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多年冻土地区道路病害及其防治对策 被引量:16
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作者 李治平 《东北公路》 2003年第4期69-70,96,共3页
论述了多年冻土地区常见的工程地质问题 ,介绍了多年冻土地区道路病害及其防治对策 ,对冻土地区公路建设具有参考作用。
关键词 公路工程 道路病害 防治对策 多年冻土区 地质条件 边坡滑坍 基底滑动失稳 隆起变形 冻胀 沉陷 路面开裂 防治对策
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Intermittent slipping of landslide regulated by dilatancy evolution and velocity-weakening friction law: an efficient numerical scheme
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作者 JAN Chyan-deng YANG Ray-yeng +1 位作者 HWUNG Hwung-hweng CHEN Wen-yau 《Journal of Mountain Science》 SCIE CSCD 2016年第8期1333-1344,共12页
When a block of dense sandy soil moves downhill, the shear-induced soil dilatancy along the basal shear boundary produces a negative value of excess pore pressure that increases the basal frictional resistance. Dilata... When a block of dense sandy soil moves downhill, the shear-induced soil dilatancy along the basal shear boundary produces a negative value of excess pore pressure that increases the basal frictional resistance. Dilatancy angle,Ψ, the degree to which the basal soil dilates due to the shear, normally evolves during slope failure. A study by other researchers shows that if Ψ is constant, the block of dense soil will remain stable(or unstable) sliding when the velocity-weakening rate of the basal friction coefficient of the block is small(or large) enough. Moreover, during unstable sliding processes, the block of dense soil exhibits "periodic" patterns of intermittent slipping. Here, we used a more efficient and accurate numerical scheme to revisit that study. We expanded their model by assuming Ψ evolves during slope failure. Consequently, we acquired completely different results. For instance, even though the velocity-weakening rate of the friction coefficient is fixed at the same smaller(or larger) value that those researchers use, the stable(or unstable) steady states of landslide they predict will inversely change to unstable(or stable) when Ψ decreases(or increases) with the increase of slide displacement to a value small(or large) enough. Particularly, in unstable processes, the soil block exhibits "aperiodic" styles of intermittent slipping, instead of "periodic". We found out that the stick states appearing later last longer(or shorter) in the case of decreasing(or increasing) Ψ. Moreover, because the basic states of landslides with impacts of dilatancy evolution are not steady nor periodic, traditional stability-analysis methods cannot be "directly" used to analyze the stability of such landslides. Here, we broke through this technical problem to a degree. We showed that combining a concept called "quasi-steady-state approximation" with a traditional stability-analysis technique can qualitatively predict the instability onset of the landslides. Through this study, we demonstrated that the combination of Chebyshev collocation(CC) and 4^(th)-order Runge-Kutta methods is more accurate and efficient than the numerical scheme those researchers use. 展开更多
关键词 LANDSLIDE Stability analysis Intermittent slipping Dilatancy angle
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