金沙江缝合带白格滑坡蚀变软岩工程地质特性研究

    ENGINEERING GEOLOGICAL CHARACTERISTICS OF ALTERED SOFT ROCKS AT THE BAIGE LANDSLIDE IN THE JINSHA RIVER SUTURE ZONE

    • 摘要: 受活跃的构造运动与热液作用影响,金沙江缝合带内发育大量蚀变软岩,遇水后不良工程地质特性突出,潜在危害严重。以西藏江达白格滑坡滑源区的蚀变软岩为典型研究对象,采用现场调查、Ⅹ衍射、电镜扫描、浸水崩解和三轴试验等方法,分析了蚀变软岩的物质组成、微观结构和水理特征,结合宏观表征和耐崩解指数进行蚀变程度分级,并分析不同蚀变软岩的抗剪强度特性与含水率的关系。结果表明,白格滑坡滑源区发育滑石化、蛇纹石化和黏土化等多种类型的蚀变岩体,其中黏土化蚀变岩的蚀变程度最高,含有大量黏土矿物,占比高达50.84%,以绿泥石、伊利石和伊-蒙混层为主,内部孔隙极为发育,整体结构松散,耐崩解性差。随着含水率的升高,黏土颗粒间的摩擦阻力和胶结强度显著降低,黏聚力和内摩擦角分别降低超过50%和20%。而以滑石化、蛇纹石化蚀变为主的蚀变岩,黏土矿物含量仅为7.62%和15.95%。当含水率逐渐升高至超过塑限时,黏聚力同样显著降低,但内摩擦角却分别呈现出逐渐升高和先降低后上升的复杂变化趋势,这与其遇水软化后粗颗粒结构和含量的变化密切相关。上述研究结果对深化认识金沙江缝合带蚀变软岩的工程地质特性具有重要参考价值。

       

      Abstract: Active tectonic movement and hydrothermal activity have led to the development of abundant altered soft rocks within the Jinsha River suture zone. These altered soft rocks exhibit significantly pronounced undesirable engineering geological properties upon water exposure, posing severe potential hazards. This paper focuses on the altered soft rocks in the source area of the Baige landslide in Jiangda County as a representative case study. Using integrated techniques including field investigation, X-ray diffraction(XRD),scanning electron microscopy(SEM),immersion disintegration test, and triaxial compression experiments, we analyzed the material composition, microstructural characteristics, and hydro-physical properties of altered soft rocks. The degree of alteration is classified by combining macroscopic characterization and disintegration index, and the relationship between the shear strength characteristics and moisture content of different altered soft rocks is analyzed. The results show that in the source area of the Baige landslide, there are various types of altered rock masses such as talcum-altered, serpentine-altered, and clay-altered. Among them, clay-altered rocks have the highest degree of alteration, containing a large amount of clay minerals, accounting for as high as 50.84%,mainly composed of chlorite, illite and imon mixed layers. This kind of altered soft rock has highly developed internal pores, a loose overall structure and poor resistance to disintegration. With the increase of moisture content, due to the significant reduction of frictional resistance and cementation strength between clay particles, the cohesion and internal friction angle decrease by more than 50% and 20% respectively. However, for the altered rocks mainly characterized by talcum-altered and serpentine-altered, the content of clay minerals is only 7.62% and 15.95% respectively. As the moisture content gradually rises above the plastic limit, the cohesion of both types of specimens decreases significantly. And their internal friction angles exhibit complex variation trends, showing a gradual increase and an initial decrease followed by an increase, respectively. This change is closely related to the alterations in the structure and content of coarse particles in these altered rocks after they soften upon contact with water. The above research results have important reference value for deepening the understanding of the engineering geological characteristics of altered soft rocks in the Jinsha River suture zone.

       

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