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Modelling the flexural buckling failure of stratified rock slopes based on the multilayer beam model

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【作者】 ZHANG Yan-junNIAN Ting-kaiGUO Xing-senCHEN Guang-qiZHENG Lu

【Author】 ZHANG Yan-jun;NIAN Ting-kai;GUO Xing-sen;CHEN Guang-qi;ZHENG Lu;State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology;Department of Civil and Structural Engineering, Faculty of Engineering, Kyushu University;College of Civil Engineering, Fuzhou University;

【通讯作者】 NIAN Ting-kai;

【机构】 State Key Laboratory of Coastal and Offshore Engineering, Dalian University of TechnologyDepartment of Civil and Structural Engineering, Faculty of Engineering, Kyushu UniversityCollege of Civil Engineering, Fuzhou University

【摘要】 The buckling failure of stratified rock slopes intersected by a set of steep discontinuities that are approximately parallel to the slope surface is frequently encountered while constructing railways and roadways in mountainous areas. In this study, an analytical approach based on the energy equilibrium principle is presented to solve the flexural buckling stability of stratified rock slopes within the framework of multilayer beam theory. The generalized HoekBrown failure criterion is introduced to reflect the influences of slope size(scale effects) on the buckling stability. Subsequently, numerical and physical modellings from previous literatures are employed to validate the proposed approach. Furthermore, a practical case of Bawang Mountain landslide is also used for the comparative analysis. The study shows that the present analytical approach is capable to provide a more reasonable assessment for the buckling failure of stratified rock slopes, compared with several existing analytical approaches. Finally, a detailed parametric study is implemented, and the results indicate that the effects of rock strength, rock deformation modulus, geological strength index, layer thickness and disturbance degree of rock mass on the buckling failure of stratified rock slopes are more significant than that of rock type and slope angle.

【Abstract】 The buckling failure of stratified rock slopes intersected by a set of steep discontinuities that are approximately parallel to the slope surface is frequently encountered while constructing railways and roadways in mountainous areas. In this study, an analytical approach based on the energy equilibrium principle is presented to solve the flexural buckling stability of stratified rock slopes within the framework of multilayer beam theory. The generalized HoekBrown failure criterion is introduced to reflect the influences of slope size(scale effects) on the buckling stability. Subsequently, numerical and physical modellings from previous literatures are employed to validate the proposed approach. Furthermore, a practical case of Bawang Mountain landslide is also used for the comparative analysis. The study shows that the present analytical approach is capable to provide a more reasonable assessment for the buckling failure of stratified rock slopes, compared with several existing analytical approaches. Finally, a detailed parametric study is implemented, and the results indicate that the effects of rock strength, rock deformation modulus, geological strength index, layer thickness and disturbance degree of rock mass on the buckling failure of stratified rock slopes are more significant than that of rock type and slope angle.

【基金】 the financial support of the National Natural Science Foundation of China (Grant No.51579032, 51509173, U1765107);Fundamental Research Funds for the Central Universities (Grant No.DUT16ZD211, DUT17ZD205)
  • 【文献出处】 Journal of Mountain Science ,Journal of Mountain Science 山地科学学报(英文版) , 编辑部邮箱 ,2019年05期
  • 【分类号】TU45
  • 【被引频次】3
  • 【下载频次】21
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