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Geotechnical stability analysis considering strain softening using micro-polar continuum finite element method 被引量:7
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作者 CHEN Xi WANG Dong-yong +2 位作者 TANG Jian-bin MA Wen-chen LIU Yong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期297-310,共14页
Geotechnical stability analyses based on classical continuum may lead to remarkable underestimations on geotechnical safety.To attain better estimations on geotechnical stability,the micro-polar continuum is employed ... Geotechnical stability analyses based on classical continuum may lead to remarkable underestimations on geotechnical safety.To attain better estimations on geotechnical stability,the micro-polar continuum is employed so that its internal characteristic length(lc)can be utilized to model the shear band width.Based on two soil slope examples,the role of internal characteristic length in modeling the shear band width of geomaterial is investigated by the second-order cone programming optimized micro-polar continuum finite element method.It is recognized that the underestimation on factor of safety(FOS)calculated from the classical continuum tends to be more pronounced with the increase of lc.When the micro-polar continuum is applied,the shear band dominated by lc is almost kept unaffected as long as the adopted meshes are fine enough,but it does not generally present a slip surface like in the cases from the classical continuum,indicating that the micro-polar continuum is capable of capturing the non-local geotechnical failure characteristic.Due to the coupling effects of lc and strain softening,softening behavior of geomaterial tends to be postponed.Additionally,the bearing capacity of a geotechnical system may be significantly underestimated,if the effects of lc are not modeled or considered in numerical analyses. 展开更多
关键词 slope stability strain localization non-local geotechnical failure micro-polar continuum internal characteristic length
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Geotechnical characterization of red shale and its indication for ground control in deep underground mining 被引量:6
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作者 WANG Dong-yi LI Xi-bing +3 位作者 PENG Kang MA Chun-de ZHANG Zhen-yu LIU Xiao-qian 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第12期2979-2991,共13页
Geotechnical properties of red shale encountered in deep underground mining were characterized on both laboratory and field scale to reveal its unfavorably in geoenvironment.Its constituents,microstructure,strength pr... Geotechnical properties of red shale encountered in deep underground mining were characterized on both laboratory and field scale to reveal its unfavorably in geoenvironment.Its constituents,microstructure,strength properties and water-weakening properties were investigated.In situ stress environment and mining-induced fractured damage zone after excavation were studied to reveal the instability mechanism.The results show that red shale contains swelling and loose clayey minerals as interstitial filling material,producing low shear strength of microstructure and making it vulnerable to water.Macroscopically,a U-shaped curve of uniaxial compressive strength(UCS)exists with the increase of the angle between macro weakness plane and the horizon.However,its tensile strength reduced monotonically with this angle.While immersed in water for72h,its UCS reduced by91.9%comparing to the natural state.Field sonic tests reveal that an asymmetrical geometrical profile of fractured damage zone of gateroad was identified due to geological bedding plane and detailed gateroad layout with regards to the direction of major principle stress.Therefore,red shale is a kind of engineering soft rock.For ground control in underground mining or similar applications,water inflow within several hours of excavation must strictly be prevented and energy adsorbing rock bolt is recommended,especially in large deformation part of gateroad. 展开更多
关键词 red shale soft rock deep mining geotechnical characterization ground control
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Assessment on strength reduction schemes for geotechnical stability analysis involving the Drucker-Prager criterion 被引量:5
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作者 WANG Dong-yong CHEN Xi +1 位作者 QI Ji-lin PENG Li-yun 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期3238-3245,共8页
For geotechnical stability analysis involving the Drucker-Prager(DP)criterion,both the c-ϕreduction scheme and the M-K reduction scheme can be utilized.With the aid of the second-order cone programming optimized finit... For geotechnical stability analysis involving the Drucker-Prager(DP)criterion,both the c-ϕreduction scheme and the M-K reduction scheme can be utilized.With the aid of the second-order cone programming optimized finite element method(FEM-SOCP),a comparison of the two strength reduction schemes for the stability analysis of a homogeneous slope and a multilayered slope is carried out.Numerical investigations disclose that the FoS results calculated by the c-ϕreduction scheme agree well with those calculated by the classical Morgenstern-Price solutions.However,the FoS results attained by the M-K reduction scheme may lead to conservative estimation of the geotechnical safety,particularly for the cases with large internal friction angles.In view of the possible big difference in stability analysis results caused by the M-K reduction scheme,the c-ϕreduction scheme is recommended for the geotechnical stability analyses involving the DP criterion. 展开更多
关键词 geotechnical stability Drucker-Prager criterion strength reduction second-order cone programming c-ϕreduction M-K reduction
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Probabilistic back analysis for geotechnical engineering based on Bayesian and support vector machine 被引量:2
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作者 陈炳瑞 赵洪波 +1 位作者 茹忠亮 李贤 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4778-4786,共9页
Geomechanical parameters are complex and uncertain.In order to take this complexity and uncertainty into account,a probabilistic back-analysis method combining the Bayesian probability with the least squares support v... Geomechanical parameters are complex and uncertain.In order to take this complexity and uncertainty into account,a probabilistic back-analysis method combining the Bayesian probability with the least squares support vector machine(LS-SVM) technique was proposed.The Bayesian probability was used to deal with the uncertainties in the geomechanical parameters,and an LS-SVM was utilized to establish the relationship between the displacement and the geomechanical parameters.The proposed approach was applied to the geomechanical parameter identification in a slope stability case study which was related to the permanent ship lock within the Three Gorges project in China.The results indicate that the proposed method presents the uncertainties in the geomechanical parameters reasonably well,and also improves the understanding that the monitored information is important in real projects. 展开更多
关键词 geotechnical engineering back analysis UNCERTAINTY Bayesian theory least square method support vector machine(SVM)
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第四届GeoShanghai国际会议通知(英文)
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《岩土工程学报》 EI CAS CSCD 北大核心 2017年第5期821-821,共1页
Geo Shanghai is a series of international conferences on geotechnical engineering held in Shanghai every four years.The conference was inaugurated in 2006 and was successfully held in2010 and 2014,with more than 1200 ... Geo Shanghai is a series of international conferences on geotechnical engineering held in Shanghai every four years.The conference was inaugurated in 2006 and was successfully held in2010 and 2014,with more than 1200 participants in total.Since the last conference,the geotechnical communities have witnessed many advances both in fundamental understandings and engineering practices. To show the latest developments and promote collaborations in geotechnical engineering and related topics, the organizers of the GeoShanghai International Conference would like to invite 'you to participate in the 4th GeoShanghai International Conference to be held in Shanghai in May 2018. 展开更多
关键词 会议通知 GeoShanghai witnessed geotechnical ADVANCES CITATION submitted INSTRUCTIONS WELCOME invite
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