Dynamic simulation and failure analysis of intermittently jointed rock cells and slopes based on a novel spring-based smoothed particle hydrodynamics method

Bulletin of Engineering Geology and the Environment(2024)

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摘要
A spring-based smoothed particle hydrodynamics (SB-SPH) method was developed to reproduce the progressive failure process and quantify the factor of safety (FOS) of a slope within the intermittently jointed rock mass. In the improved framework, the equations of contact forces between particles are introduced into the Eulerian formulations of SPH, and a unified governing equation for coupled cracking and contact is developed. Moreover, the initial discontinuous domain searching algorithm has been proposed to realize the generation of prefabricated discontinuities. A sliding benchmark test of rectangular blocks on inclines is conducted to verify the validity of the contact behaviour. Jointed rock cells under uniaxial compression with varying dip angles are employed to validate the accuracy and reliability of SB-SPH in cracking and contact behaviour. Additionally, the effects of intermittent joints on the progressive failure process and FOS of slopes characterized by various dip angles and rock bridge lengths are revealed. In comparison to horizontal joints, the FOS of the slope increases by 49.18
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关键词
Spring-based smoothed particle hydrodynamics,Intermittently jointed rock mass,Initial discontinuous domain searching,Failure mode,Stability characteristic
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