期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
土石坝加宽培厚对坝体位移与心墙应力变化的影响
1
作者 张敏 冯红卫 《水电能源科学》 北大核心 2016年第7期77-79,共3页
为考察西南地区某土石坝加宽培厚后坝体的真实工作性态和安全状况,采用三维有限元方法分析了土石坝坝体加宽培厚及蓄水运行时坝体位移、防渗心墙应力与等效塑性应变区域的变化规律。结果表明,坝体沉降最大值发生在加宽培厚土层区域,且... 为考察西南地区某土石坝加宽培厚后坝体的真实工作性态和安全状况,采用三维有限元方法分析了土石坝坝体加宽培厚及蓄水运行时坝体位移、防渗心墙应力与等效塑性应变区域的变化规律。结果表明,坝体沉降最大值发生在加宽培厚土层区域,且坝体出现了向上游与向下游的水平位移,下游贴坡式加宽培厚方式使坝体防渗心墙出现了拉应力与较大区域的等效塑性应变范围,坝体加宽培厚后,需进一步判定坝体培厚土层的稳定性以及心墙的屈服情况与防渗性能。研究成果可供类似工程参考。 展开更多
关键词 加宽培厚 土石坝 心墙应力 坝体位移
下载PDF
沥青混凝土心墙连续转弯在水利枢纽防渗中的应用 被引量:5
2
作者 陈雷 《水利规划与设计》 2020年第9期102-104,共3页
沥青混凝土心墙堆石坝作为现阶段常见的枢纽拦水坝型在工程设计布置中会遇到地形地貌限制需防渗心墙进行转弯布置,通过工程心墙连续转弯呈“S”型的实际应用,探讨心墙连续转弯在水利枢纽防渗中的良好效果。
关键词 沥青混凝土 连续转弯 心墙应力应变控制 工程实际防渗效果
下载PDF
Jatigede大坝施工期心墙孔隙水压力数值模拟研究 被引量:1
3
作者 翟旻 王鹏 《四川水力发电》 2019年第5期153-158,共6页
在粘土心墙堆石坝施工过程中,由于填筑速度较快,心墙内会产生来不及消散的超孔隙水压力。施工期心墙内将残生高孔隙水压(最大0.82MPa),导致心墙内的有效应力很低,心墙的抗剪能力很差。因此,设计中应重视坝体施工期的坝体的临时稳定,根... 在粘土心墙堆石坝施工过程中,由于填筑速度较快,心墙内会产生来不及消散的超孔隙水压力。施工期心墙内将残生高孔隙水压(最大0.82MPa),导致心墙内的有效应力很低,心墙的抗剪能力很差。因此,设计中应重视坝体施工期的坝体的临时稳定,根据大坝填筑加载速度和心墙内孔隙水压生产和消散情况,选择代表性施工剖面验算大坝在施工期的稳定性。 展开更多
关键词 堆石坝 心墙应力 孔隙水压 对比分析
下载PDF
Hydro-mechanical coupling mechanism on joint of clay core-wall and concrete cut-off wall 被引量:3
4
作者 罗玉龙 詹美礼 +1 位作者 盛金昌 吴强 《Journal of Central South University》 SCIE EI CAS 2013年第9期2578-2585,共8页
The joint of clay core-wall and concrete cut-off wall is one of the weakest parts in high earth and rockftll dams.A kind of highly plastic clay is always fixed on the joint to fit the large shear deformation between c... The joint of clay core-wall and concrete cut-off wall is one of the weakest parts in high earth and rockftll dams.A kind of highly plastic clay is always fixed on the joint to fit the large shear deformation between clay core-wall and concrete cut-offwall,so the hydro-mechanical coupling mechanisms on the joint under high stress,high hydraulic gradient,and large shear deformation are of great importance for the evaluation of dam safety.The hydro-mechanical coupling characteristics of the joint of the highly plastic clay and the concrete cut-off wall in a high earth and rockfill dam in China were studied by using a newly designed soil-structure contact erosion apparatus.The experimental results indicate that:1) Shear failure on the joint is due to the hydro-mechanical coupling effect of stress and seepage failure.The seepage failure will induce the final shear failure when the ratio of deviatoric stress to confining pressure is within 1.0-1.2; 2) A negative exponential permeability empirical model for the joint denoted by a newly defined principal stress function,which considers the coupling effect of confining pressure and axial pressure on the permeability,is established based on hydro-mechanical coupling experiments.3) The variation of the settlement before and after seepage failure is very different.The settlement before seepage failure changes very slowly,while it increases significantly after the seepage failure.4) The stress-strain relationship is of a strain softening type.5) Flow along the joint still follows Darcian flow rule.The results will provide an important theoretical basis for the further evaluation on the safety of the high earth and rockfill dam. 展开更多
关键词 high earth and rockfill dam soil/structure interface hydro-mechanical coupling mechanism seepage failure shear failure
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部