National Engineering Research Center for Inland Waterway Regulation, Chongqing Jiaotong University, Chongqing, 400074, China.
Chongqing Jiaotong University, Chongqing, 400074, China.
Sci Rep. 2023 Jan 30;13(1):1643. doi: 10.1038/s41598-023-28657-2.
The instability of rock slope is still a very frequent geological disaster, which seriously affects people's life and production activities. Previous studies have mainly focused on deformation mechanism, prediction, and control of hard rock with single lithology, while there are limited studies on the theoretic computational method of the stability for soft-hard interbedded anti-inclined rock strata. In this study, a geomechanical model for the toppling failure of soft-hard-interbedded anti-inclined rock slope is established. The modes of failure for soft and hard rock strata are analyzed, the computational formula of the downward thrust for each anti-inclined rock stratum is derived, and the stability safety factor of each rock stratum is defined. A theoretical computational method for determining the potentially most dangerous failure surface of soft-hard-interbedded anti-inclined rock slope is proposed. By comparing with the existing research results, the theoretical solving method proposed in this study can well solve the location of the potentially most dangerous failure surface of soft-hard-interbedded anti-inclined rock slope. The potentially most dangerous failure surface of this kind of slope is approximately planar, and the angle between it and the normal plane of the rock strata is an acute angle within 30°. It provides theoretical support for the stability analysis of this kind of slope.
岩质边坡失稳仍然是一种非常频繁的地质灾害,严重影响人们的生活和生产活动。以往的研究主要集中在单一岩性硬岩的变形机制、预测和控制方面,而对于软硬互层反倾岩层的稳定性理论计算方法研究较少。本文建立了软硬互层反倾岩质边坡倾倒破坏的地质力学模型。分析了软硬岩层的破坏模式,推导出各反倾岩层的向下推力计算公式,并定义了各岩层的稳定性安全系数。提出了一种确定软硬互层反倾岩质边坡潜在最危险滑动面的理论计算方法。通过与现有研究结果进行比较,本文提出的理论求解方法可以很好地确定软硬互层反倾岩质边坡潜在最危险滑动面的位置。这类边坡的潜在最危险滑动面近似为平面,与岩层法向平面之间的夹角为锐角,在 30°以内。为这类边坡的稳定性分析提供了理论支持。