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北京山区岩土混合质边坡变形破坏机理分析 被引量:2
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作者 翟淑花 孙小华 +2 位作者 冒建 程素珍 刘欢欢 《徐州工程学院学报(自然科学版)》 CAS 2020年第4期24-29,共6页
岩土混合质边坡是公路沿线常见的边坡类型,其特有的结构性质导致滑坡频发,带来重大的经济损失和人员伤亡.该文以密云区石城镇栗林山庄边坡为研究对象,在野外调查、勘察的基础上,借助于室内直剪试验、数值模拟和现场监测,分析不同含水量... 岩土混合质边坡是公路沿线常见的边坡类型,其特有的结构性质导致滑坡频发,带来重大的经济损失和人员伤亡.该文以密云区石城镇栗林山庄边坡为研究对象,在野外调查、勘察的基础上,借助于室内直剪试验、数值模拟和现场监测,分析不同含水量下残坡积土内聚力和内摩擦角变化规律,揭示降雨入渗条件下边坡的变形破坏机理,研究边坡治理后的稳定性.结果表明:栗林山庄滑坡为沿土-岩接触面的折线形滑移破坏,降雨入渗是造成滑坡的关键因素;滑坡发生的演化过程可细分为微裂隙发育、滑带演化形成、滑面扩展这3个阶段;治理后边坡位移明显减小,剪应变增量云图未见明显滑动带;削坡、护坡以及挡墙等综合治理技术可为北京地区公路高切坡防治提供技术支持. 展开更多
关键词 岩土混合质边坡 变形破坏机理 FLAC3D 降雨入渗 直剪试验
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岩土混合质超高边坡监测实例分析 被引量:1
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作者 宋再荣 《广东建材》 2020年第10期27-30,共4页
本文通过对广州地区岩土混合地质超高边坡监测过程的研究分析,从而为边坡施工提供安全、可靠、准确的信息,保证了边坡施工的顺利进行,以及危险源的稳定性,为同类型工程积累宝贵可借鉴的经验。
关键词 岩土混合质 超高边坡 信息化监测
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Influence of water content and shear rate on the mechanical behavior of soil-rock mixtures 被引量:8
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作者 WEI HouZhen XU WenJie +1 位作者 WEI ChangFu MENG QingShan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第8期1127-1136,共10页
Soil-rock mixtures(S-RMs) are widely distributed in the nature. The mesoscopic deformation and failure mechanisms as well as the macro-mechanical behaviors of the S-RMs depend largely upon the rate of deformation, wat... Soil-rock mixtures(S-RMs) are widely distributed in the nature. The mesoscopic deformation and failure mechanisms as well as the macro-mechanical behaviors of the S-RMs depend largely upon the rate of deformation, water content and particle sizes. In this research, a series of large-scale direct shear tests with different water contents and different grain-size distributions were conducted to study the influence of the aforementioned factors on the mechanical properties of the S-RMs. Due to the effect of the rock blocks' breakage in the S-RMs, the relationship between the shear strength and the vertical stress of S-RM follows a power law instead of a linear one. It is found that there exists a threshold value for the vertical stress during the shearing process,below which the soil strength is mainly determined by the inter-locking of particles and the re-arrangement of meso-structure,and otherwise large-sized rock blocks are gradually broken into smaller fragments, resulting in a decrease in the soil strength.The shear rate can also significantly influence the degree of particle breakage and the meso-structural rearrangement of the SRMs, namely, under low shear rate, the particles of the samples are fully broken resulting in enhanced macro-strength. As a result, the lower the shear rate, the higher the macroscopic strength. So under unsaturated conditions, the water content will affect the strength of the S-RMs by reducing the strength of rock blocks. As the water content increases, the soil strength decreases gradually, and assumes a moderate value when the water content reaches 8%. At the same water content, the soil strength increases with the sizes of large rock blocks. For the occlusion, breakage and structure re-arrangement of the oversized rock blocks inside S-RM, which have a huge influence on the mechanical characteristics of the samples. 展开更多
关键词 soil-rock mixture(S-RM) direct shear test water content shear rate particle breakage
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