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Stability analysis of slope in strain-softening soils using local arc-length solution scheme 被引量:5
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作者 WANG Xiang-rong RONG Qi-guo +1 位作者 SUN Shu-li WANG Hui 《Journal of Mountain Science》 SCIE CSCD 2017年第1期175-187,共13页
Soils with strain-softening behavior — manifesting as a reduction of strength with increasing plastic strain — are commonly found in the natural environment. For slopes in these soils,a progressive failure mechanism... Soils with strain-softening behavior — manifesting as a reduction of strength with increasing plastic strain — are commonly found in the natural environment. For slopes in these soils,a progressive failure mechanism can occur due to a reduction of strength with increasing strain. Finite element method based numerical approaches have been widely performed for simulating such failure mechanism,owning to their ability for tracing the formation and development of the localized shear strain. However,the reliability of the currently used approaches are often affected by poor convergence or significant mesh-dependency,and their applicability is limited by the use of complicated soil models. This paper aims to overcome these limitations by developing a finite element approach using a local arc-length controlled iterative algorithm as the solution strategy. In the proposed finite element approach,the soils are simulated with an elastoplastic constitutive model in conjunction with the Mohr-Coulomb yield function. The strain-softening behavior is represented by a piece-wise linearrelationship between the Mohr-Coulomb strength parameters and the deviatoric plastic strain. To assess the reliability of the proposed finite element approach,comparisons of the numerical solutions obtained by different finite element methods and meshes with various qualities are presented. Moreover,a landslide triggered by excavation in a real expressway construction project is analyzed by the presented finite element approach to demonstrate its applicability for practical engineering problems. 展开更多
关键词 Strain-softening progressive failure Slope stability Local arc-length scheme Numerical simulation
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Seismic stability evaluation of embankment slope based on catastrophe theory 被引量:5
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作者 Hongwei Zhu Lingkan Yao Yuan Luo 《Journal of Modern Transportation》 2013年第2期111-116,共6页
An evaluation method for the seismic stability of embankment slope was presented based on catastrophe theory. Seven control factors, including internal frictional angle, cohesion force, slope height, slope angle, surf... An evaluation method for the seismic stability of embankment slope was presented based on catastrophe theory. Seven control factors, including internal frictional angle, cohesion force, slope height, slope angle, surface gradients, peak acceleration, and distance to fault were selected for analysis of multi-level objective decomposition. According to the normalization formula and the fuzzy subject function produced by combination of catastrophe theory and fuzzy math, a recursive calculation was carried out to obtain a catastrophic affiliated functional value, which can be used to evaluate the seismic stability of embankment slope. Fifteen samples were used to verify the effectiveness of this method. The results show that compared with the traditional quantitative method, the catastrophe progression owns higher accuracy and good application potential in predicting the seismic stability of embankment slope. 展开更多
关键词 Embankment slope Seismic stability -Catastrophe progression method - Comprehensiveevaluation
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Next year China's economic progress will maintain stability
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作者 Liu Xinxin 《纺织服装周刊》 2012年第1期40-40,共1页
Central Economic Work Conference was held in Beijing from December 12 to December 14.The meeting proposed the general requirements for economic work of 2012.In 2012,the government will continue to carry out proactive ... Central Economic Work Conference was held in Beijing from December 12 to December 14.The meeting proposed the general requirements for economic work of 2012.In 2012,the government will continue to carry out proactive fiscal policy and 展开更多
关键词 WILL Next year China’s economic progress will maintain stability Work
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