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渗透对非饱和原状黄土高边坡土压力和水平位移影响的试验研究 被引量:6
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作者 黄雪峰 李佳 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2011年第3期635-642,共8页
通过现场原位试验,对非饱和原状黄土垂直高边坡在坡顶浸水渗流作用下的土压力变化及切坡临空面位移进行现场试验研究,试验结果表明:(1)切坡坡顶浸水后,土压力强度增加迅速,截止滑坡前,土压力强度比浸水前增大约4倍;(2)滑坡发生后,实测... 通过现场原位试验,对非饱和原状黄土垂直高边坡在坡顶浸水渗流作用下的土压力变化及切坡临空面位移进行现场试验研究,试验结果表明:(1)切坡坡顶浸水后,土压力强度增加迅速,截止滑坡前,土压力强度比浸水前增大约4倍;(2)滑坡发生后,实测的滑移面形态及剪出口位置在切坡高度H的1/3处,而并非发生在坡脚处;(3)非饱和原状黄土垂直切坡的土压力强度是由下滑土体自身的剩余下滑推力引起的,这与经典土压力理论有一定差异;(4)土压力强度变化与边坡临空面水平位移没有对应关系,也是非线性的;(5)在切坡浸水渗透试验过程中,土压力强度变化过程可划分为3个阶段:第一阶段滑动土体的力学性质改变阶段,第二阶段滑动土体的整体变形阶段,第三阶段滑动土体的整体滑移阶段;(6)对于非饱和原状黄土垂直切坡,本次实测坡顶水平位移在10 mm时滑坡,可考虑对于该力学特性的黄土水平位移10 mm为预警值。 展开更多
关键词 土力学 非饱和原状黄土 垂直高切坡 边坡浸水 土压力
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Erosion characteristic of slope sandstone soaking in acid mine drainage 被引量:3
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作者 姜立春 陈嘉生 吴爱祥 《Journal of Central South University of Technology》 EI 2007年第2期236-242,共7页
Acid mine drainage(AMD) is one of the main reasons of slope instability in chemical mines with high sulfide. The pH values of the solution inside the mining pit decrease with the increasing of distance from ore body... Acid mine drainage(AMD) is one of the main reasons of slope instability in chemical mines with high sulfide. The pH values of the solution inside the mining pit decrease with the increasing of distance from ore body and vary from 1.2 to 4.6, according to the results of the water environmental investigation and the composition test of the slope sandstone in Xinqiao Pyrite Mine. Comparative experiments between original sandstone and AMD eroded sandstone samples show that after AMD erosion the uniaxial compressive strength and elastic modulus decrease by 30%-50% and 25%-45%, respectively, the cohesion and internal friction angle decrease obviously, and the Poisson ratio fluctuates between 0.20-0.29. The greater joints development, the higher residual stress after peak value, and the longer time to damage. Besides above, the reaction mechanism analysis of AMD eroded sandstone shows that the fillings in joints and fissures of sandstone are frequently decomposed and polyreacted, resulting in changes of interior molecule structure and fi'amework composition, and decreases of cohesion and angle of internal friction between rock structure interfaces. 展开更多
关键词 acid mine drainage SLOPE microstructure SANDSTONE
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