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结构性对西澳残积土抗剪强度影响的试验研究
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作者 施维成 Barry Lehane +3 位作者 胡锡鹏 段超然 吴昌胜 代国忠 《中国农村水利水电》 北大核心 2020年第10期203-207,210,共6页
残积土结构性遭到破坏会导致工程事故,有必要研究其结构性对力学性质的影响。对西澳残积土的原状和重塑土分别进行单剪试验和三轴固结不排水试验,研究结构性对其抗剪强度的影响。试验结果显示:单剪试验中,不论是原状土还是重塑土,产生... 残积土结构性遭到破坏会导致工程事故,有必要研究其结构性对力学性质的影响。对西澳残积土的原状和重塑土分别进行单剪试验和三轴固结不排水试验,研究结构性对其抗剪强度的影响。试验结果显示:单剪试验中,不论是原状土还是重塑土,产生相同剪应变时,剪应力都是随着竖向应力的增大而增大;由于原状土的结构性较强,在较低的竖向应力作用下,要产生相同的剪应变,原状土比重塑土需要施加更大的剪应力;在较高的竖向应力作用下,原状土的结构性遭到一定程度的破坏,要产生相同的剪应变,需要施加的剪应力比重塑土小。三轴固结不排水试验中,围压较低时,原状土较强的结构性起主导作用,相同轴向应变下的剪应力比重塑土大;围压较高时,原状土的结构性被破坏,而其较大的孔隙起主导作用,在产生相同轴向应变时的剪应力反而比重塑土要小。重塑土在相同的轴向应变εa下,剪应力q随着围压的增大而增大;原状土在围压较小时,由于结构性较强,q~εa曲线随围压的变化不明显,在围压较大时,原状土的结构性被破坏,呈现和重塑土类似的规律。根据三轴试验结果提出了原状土和重塑土的Gmax与p′之间的归一化关系式。比较单剪试验和三轴试验得到的抗剪强度,发现单剪试验得到的抗剪强度位于三轴试验得到的有效强度包线和总强度包线之间。最后对工程中类似残积土抗剪强度参数的选取提出建议。 展开更多
关键词 残积土 抗剪强度 结构性 原状土 重塑土
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Seepage field distribution and water inflow laws of tunnels in water-rich regions 被引量:6
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作者 LI Zheng CHEN Zi-quan +2 位作者 HE Chuan MA Chun-chi duan chao-ran 《Journal of Mountain Science》 SCIE CSCD 2022年第2期591-605,共15页
Currently,the water inrush hazards during tunnel construction,the water leakage during tunnel operation,and the accompanying disturbances to the ecological environment have become the main problems that affect the str... Currently,the water inrush hazards during tunnel construction,the water leakage during tunnel operation,and the accompanying disturbances to the ecological environment have become the main problems that affect the structural safety of tunnels in water-rich regions.In this paper,a tunnel seepage model testing system was used to conduct experiments of the grouting circle and primary support with different permeability coefficients.The influences of the supporting structures on the water inflow laws and the distribution of the water pressure in the tunnel were analyzed.With the decrease in the permeability coefficient of the grouting circle or the primary support,the inflow rate of water into the tunnel showed a non-linear decreasing trend.In comparison,the water inflow reduction effect of grouting circle was much better than that of primary support.With the increase of the permeability coefficient of the grouting ring,the water pressure behind the primary lining increases gradually,while the water pressure behind the grouting ring decreases.Thus,the grouting of surrounding rock during the construction of water-rich tunnel can effectively weaken the hydraulic connection,reduce the influence range of seepage,and significantly reduce the decline of groundwater.Meanwhile,the seepage tests at different hydrostatic heads and hydrodynamic heads during tunnel operation period were also conducted.As the hydrostatic head decreased,the water pressure at each characteristic point decreased approximately linearly,and the water inflow rate also had a gradual downward trend.Under the action of hydrodynamic head,the water pressure had an obvious lagging effect,which was not conducive to the stability of the supporting structures,and it could be mitigated by actively regulating the drainage rate.Compared with the hydrostatic head,the hydrodynamic head could change the real-time rate of water inflow to the tunnel and broke the dynamic balance between the water pressure and water inflow rate,thereby affecting the stress state on the supporting structures. 展开更多
关键词 Water-rich tunnel Seepage field distribution Water inflow law Construction period Operation period
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