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河堤生态加筋挡墙受孔隙水影响的静水力学试验研究
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作者 陈涛 《水利技术监督》 2023年第7期96-99,共4页
采用静力学试验的方式对河堤生态加筋挡墙受孔隙水的影响进行分析。试验表明:河堤生态加筋挡墙系数随着水深的递增其总体稳定在0.43~0.61之间;生态加筋挡墙在充水方式下压力峰受孔隙水影响逐步递增,有效峰值破坏强度在同一水头下有所递... 采用静力学试验的方式对河堤生态加筋挡墙受孔隙水的影响进行分析。试验表明:河堤生态加筋挡墙系数随着水深的递增其总体稳定在0.43~0.61之间;生态加筋挡墙在充水方式下压力峰受孔隙水影响逐步递增,有效峰值破坏强度在同一水头下有所递减,压力有效峰值在非充水方式下逐步递减;河提生态加筋挡墙在充水方式下的静水压力~压力峰值呈现线性变化,非充水方式下呈二次曲线变化,稳定性受静水压力影响逐步减弱。研究成果对于河道生态治理设计具有参考价值。 展开更多
关键词 静力学试验 孔隙水影响 河堤生态加筋挡墙 试验分析
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Effects of Heat Softening on Initiation of Landslides 被引量:1
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作者 XIONG Chuan-xiang LU Xiao-bing +1 位作者 HUANG Wei-da WANG Cheng-hua 《Journal of Mountain Science》 SCIE CSCD 2014年第6期1571-1578,共8页
Effects of heat softening on the initiation of slide surface(shear banding) in clayey slopes during fast deformation were discussed.Controlling equations considering heat,pore pressure and mechanical movement were pre... Effects of heat softening on the initiation of slide surface(shear banding) in clayey slopes during fast deformation were discussed.Controlling equations considering heat,pore pressure and mechanical movement were presented.By perturbation method,the instability condition of localized zone(i.e.criterion for initiation of shear banding) for thermal related soils,such as clayey slope,was obtained.It is shown that slide surface initiates once the thermal-softening effects overcome the strain-hardening effects whether it is adiabatic or not.Without strain hardening effects,strain rate hardening obviously plays a role in initiation of shear band.During initiating process,heat is trapped inside the shear band,which leads rapidly to a pore pressure increase and fast loss of strength.The localized shear strain is concentrated in a narrow zone with a width of several centimeters at most and increases fast.This zone forms the sliding surface.Temperature can increase more than 2?C,pore pressure can increase 160% in about 0.1s inside this zone.These changes cause the fast decrease in friction-coefficient by about 36% over the initial value.That is how shear band initiated and developed in clayey slopes. 展开更多
关键词 LANDSLIDE Thermo-effect Slide surface INITIATION
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