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Renewed Instability Assessment and Reinforcement Evaluation of a Landslide-Affected Waste Dump Slope under Adverse Hydraulic Conditions

Aug 2026 · Engineering Research Express · 0 citations

Abstract

Waste dump slopes may appear stable after an initial landslide, yet their renewed instability potential under subsequent hydraulic disturbance can remain significant. This study investigates a landslide-affected waste dump slope in Ma’anshan City, Anhui Province, China, by integrating pre-landslide and post-landslide UAV-based three-dimensional reconstruction, CAD-derived representative profiles, field investigation, and measured pre-failure rainfall data. Two-dimensional coupled seepage-stability models were established in Midas GTS NX, and the shear strength reduction method was used to evaluate slope responses under pre-landslide natural and rainfall-infiltration conditions, post-landslide natural and surface-reaching phreatic-line conditions, and reinforced conditions. The results show that, under the adopted upper-bound effective infiltration ratio, the factor of safety of the pre-landslide slope decreased from 1.17 under natural conditions to 0.98 after the recorded rainfall process, indicating that the slope could evolve from a low-reserve stable state to a near-limit or unstable state under high effective infiltration. After the initial landslide, the reconfigured slope reached temporary equilibrium with a factor of safety of 1.55 under natural conditions, but decreased to 0.92 under the prescribed surface-reaching phreatic-line scenario, revealing its conditional renewed-instability potential under an upper-bound hydraulic state. The numerically interpreted instability-controlled section showed good profile-scale agreement with the UAV-derived landslide morphology, with a rear-scarp offset of 0.3 m and a main affected-zone length error of 7.7%. For the reconfigured residual slope, a stabilization scheme dominated by prestressed anchor cables and assisted by local shallow bolts increased the factor of safety to 2.28 under natural conditions and 1.28 under the surface-reaching phreatic-line scenario. The proposed framework provides a practical basis for post-landslide reassessment and residual slope stabilization of rainfall-sensitive waste dump slopes.

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