Rainfall-induced instability of highway slopes with a soil–rock binary structure may be strongly influenced by the hydraulic barrier effect of low-permeability shale. This study investigated the right-side slope along the D-ramp section from DK0+230 to DK0+660 at Deze Interchange on the Zhanhui Expressway, China. A two-dimensional coupled seepage–stress model was developed based on the engineering geological conditions and rainfall records to simulate the slope response under a 72 h extreme rainfall scenario with an intensity of 175.6 mm/d. Field displacement monitoring data were used to validate the modeled deformation pattern under natural conditions. Under natural conditions, the reinforced toe zone remained stable, deformation was concentrated along the interface between the block-stone layer and strongly weathered limestone in the middle and rear portions of the slope, and the factor of safety was 1.1344, indicating a basically stable state. During prolonged rainfall, infiltrating water accumulated near the interface between the strongly weathered shale and the underlying shale owing to the hydraulic barrier effect of the low-permeability shale, forming a continuous transient saturated zone. The plastic zone progressively extended from the upper shallow weak interface to the lower deep interface and eventually became fully connected, while the factor of safety decreased to 0.9886, indicating overall instability. The results reveal a coupled mechanism involving interfacial water accumulation, increased pore-water pressure, the formation of a transient saturated zone, and a shift in the controlling zone of slope deformation and failure from shallow to deeper layers. These findings provide a reference for disaster prevention and mitigation of similar soil–rock binary-structure slopes.
Rainfall-induced instability is a major concern for unsaturated residual soil slopes in tropical regions, where porewater pressure and matric suction fluctuate rapidly under transient hydrological conditions. This study investigates the hydro-mechanical response of the Bukit Mewah slope in Selangor through a fully coup...
Faris Shazani Suhaizan, A. Mohd Taib, M. Taha· Jurnal Kejuruteraan· 0 citations
Tropical environments accelerate rock weathering, which can significantly reduce the stability of mineralized slopes. This study investigates the influence of weathering and groundwater conditions on the stability of a strong–weak–strong multilayered rock slope hosting an iron deposit in the Philippines, where intense...
S. I. Luna· Journal of the Civil Enginee...· 0 citations
Hanzhong granitic residual soil exhibits a pronounced rainfall-sensitive response, but the evolution of hydraulic participation and failure pathways under different rainfall intensities and slope inclinations remains insufficiently understood. Physical model tests and coupled Geo-Studio simulations were conducted under...
Steep, highly fractured rock slopes, characterized by lithological heterogeneity, intense fracturing, and sensitivity to rainfall-induced hydraulic perturbations, pose challenges that are not covered by classical sliding-surface models. This study integrates multiphysics monitoring, laboratory experiments, and probab...
Peng Wang, Haipeng Jia, Yuxia Zhao et al.· Journal of Measurements in E...· 0 citations
Background: To elucidate the hydraulic response, progressive deformation, and wetting-induced swelling effects of high-fill expansive soil slopes throughout the rainfall–cessation process. Methods: A high-fill expansive soil slope in Jianshui, Yunnan Province, China, was selected as the study case. A three-dimensional...
Ruo-Xi Lin, F. A, Hai-Feng Jia et al.· Modelling· 0 citations