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电力系统临界电压稳定与同步稳定极限分析 被引量:7
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作者 彭志炜 胡国根 韩祯祥 《电网技术》 EI CSCD 北大核心 1997年第5期16-19,27,共5页
本文旨在分析电力系统临界电压稳定与同步稳定极限的内在关系。相对于电力系统的不同运行条件,文中对电压失稳域与同步失稳域进行了比较。此外,本文还对复杂电力系统中临界电压稳定与同步稳定极限的条件进行了探讨。
关键词 电力系统 临界电压 稳定 稳定极限分析
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岩土工程边坡破坏模式探讨及多块体组合“刚体极限平衡法”稳定分析案例 被引量:2
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作者 李锋 郭立红 雷艳 《西北水电》 2019年第5期29-33,38,共6页
随着中国筑坝技术的不断发展,高度大于200m的超高土石坝(或拱坝)相继建成或处于前期规划阶段。高坝泄洪消能及雾化问题十分突出,尤其对窄深峡谷岸坡的稳定可能产生极大危害,甚至影响水电站的安全运行,且工程治理规模及投资往往较大。通... 随着中国筑坝技术的不断发展,高度大于200m的超高土石坝(或拱坝)相继建成或处于前期规划阶段。高坝泄洪消能及雾化问题十分突出,尤其对窄深峡谷岸坡的稳定可能产生极大危害,甚至影响水电站的安全运行,且工程治理规模及投资往往较大。通过对岩土工程边坡破坏模式的探讨,并结合某工程案例对复杂岩质边坡在考虑侧向约束作用下,采用多块体“刚体极限平衡法”进行稳定分析,可减小工程治理规模和投资,取得了明显效益。 展开更多
关键词 失稳模式 刚体极限平衡法 稳定分析 坡体结构特征 侧向约束
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三峡船闸高边坡在地震作用下的稳定性分析 被引量:8
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作者 彭定 陈玲玲 《长江科学院院报》 EI CSCD 北大核心 2001年第6期47-49,共3页
采用有限元动力分析和改进的Sarma极限稳定分析程序对三峡船闸高边坡的动力特性、动态应力和动位移以及边坡的动力放大系数进行了计算分析 ,并对船闸高边坡在地震作用下的稳定性进行了计算。结果表明 ,在自重和地震作用下 ,边坡整体是... 采用有限元动力分析和改进的Sarma极限稳定分析程序对三峡船闸高边坡的动力特性、动态应力和动位移以及边坡的动力放大系数进行了计算分析 ,并对船闸高边坡在地震作用下的稳定性进行了计算。结果表明 ,在自重和地震作用下 ,边坡整体是稳定的。 展开更多
关键词 船闸 高边坡 动力计算 地震作用 稳定 三峡 有限元 极限稳定分析 动态应力 动力放大系数 地质 岩体强度 变形指标
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重力坝深层抗滑稳定分析方法综述 被引量:11
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作者 彭文明 张连明 陈强 《水电站设计》 2010年第3期52-54,共3页
概述了目前重力坝深层抗滑稳定分析使用比较广泛的方法,指出了各种分析方法的优缺点,最后,对重力坝深层抗滑稳定分析方法的发展方向进行了探讨和展望。
关键词 重力坝 极限平衡稳定分析 滑动 安全系数 计算方法
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土工织物加筋堤坝地基的有限元稳定计算方法
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作者 陈永辉 于祥生 熊伟明 《矿产勘查》 2002年第12期46-48,52,共4页
由于目前常规的计算方法无法合理地考虑加筋对堤坝稳定性的影响 ,建议对土工合成材料加筋    堤坝地基采用有限元计算方法。介绍一种复合模量分析法 ,即将加筋材料与周围土体作为一种    复合体 ,采用各向异性弹性非线性本构模... 由于目前常规的计算方法无法合理地考虑加筋对堤坝稳定性的影响 ,建议对土工合成材料加筋    堤坝地基采用有限元计算方法。介绍一种复合模量分析法 ,即将加筋材料与周围土体作为一种    复合体 ,采用各向异性弹性非线性本构模型和多模式的强度准则 ,直接给出安全系数。另外介绍    一种除抗滑力之外还能考虑加筋引起土体强度变化的圆弧滑动简便计算方法。计算结果表明 ,    这两种方法比起常用的荷兰法或瑞典法要合理 。 展开更多
关键词 土工织物 有限元 稳定分析 加筋堤坝 极限平衡稳定分析
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拱桥结构稳定浅析 被引量:1
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作者 王士勇 《工程与建设》 2007年第2期121-122,138,共3页
论述拱桥稳定性的基本概念及分类,分析现有理论的缺点,介绍拱桥稳定研究的进展,包括拱桥的面内弹性屈曲、面外弹性屈曲、极限稳定承载力,分析有限元计算方法在拱结构稳定性分析中的应用,指出拱桥稳定承载力研究的趋势。
关键词 弹性屈曲 非线性 极限稳定分析
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Upper bound solution of surrounding rock pressure of shallow tunnel under nonlinear failure criterion 被引量:9
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作者 ZHANG Dao-bing MA Zong-yu +1 位作者 YU Biao YIN Hua-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1696-1705,共10页
The nonlinear Baker failure criterion is introduced into the upper-bound limit analysis to examine the face stability of a shallow tunnel. The tunnel face under the ultimate limit state is analyzed from the perspectiv... The nonlinear Baker failure criterion is introduced into the upper-bound limit analysis to examine the face stability of a shallow tunnel. The tunnel face under the ultimate limit state is analyzed from the perspective of energy balance. The work rates of external forces and internal energy dissipation are calculated. An analytical solution of necessary face pressures is derived. The optimal upper-bound solution of the face pressures is obtained by optimization. The results show that the three dimensionless parameters A, T, n of nonlinear Baker failure criterion have different effects on the necessary face pressures and the pattern failure mechanisms ahead of tunnel face. A is the most important one;n takes the second place, and T is the least one. The computed necessary face pressures are nonlinearly increasing when A is reduced. Combined with the actual monitoring data of Taxia tunnel, the calculation results in this paper is verified. It is suggested that the tunnel face supports should be strengthened timely in soft rocks to prevent the occurrence of face collapse. 展开更多
关键词 nonlinear Baker failure criterion FACE stability limit analysis method pressure of surrounding rock
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Three-dimensional stability analysis of anisotropic and non-homogeneous slopes using limit analysis 被引量:6
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作者 韩长玉 陈锦剑 +1 位作者 夏小和 王建华 《Journal of Central South University》 SCIE EI CAS 2014年第3期1142-1147,共6页
A method of three-dimensional loaded slope stability for anisotropic and nonhomogeneous slopes was presented based on the upper-bound theorem of the limit analysis approach. The approach can be considered as a modific... A method of three-dimensional loaded slope stability for anisotropic and nonhomogeneous slopes was presented based on the upper-bound theorem of the limit analysis approach. The approach can be considered as a modification and extension of the solutions. The influences of friction angle, anisotropy factor, nonhomogeneous factor, slope angle, ratio of width to depth, and load on the slope crest were investigated. The results show that solutions are suitable to deal with the purely cohesive soils and frictional/cohesive soils, isotropic and anisotropic, homogeneous and nonhomogeneous, loaded and unloaded cases. 展开更多
关键词 stability ANISOTROPY limit analysis loaded slope nonhomogeneous slope
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Stability analysis of shallow tunnels subjected to seepage with strength reduction theory 被引量:20
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作者 杨小礼 黄阜 《Journal of Central South University》 SCIE EI CAS 2009年第6期1001-1005,共5页
Based on strength reduction theory,the stability numbers of shallow tunnels were investigated within the framework of upper and lower bound theorems of limit analysis. Stability solutions taking into account of water ... Based on strength reduction theory,the stability numbers of shallow tunnels were investigated within the framework of upper and lower bound theorems of limit analysis. Stability solutions taking into account of water seepage were presented and compared with those without considering seepage. The comparisons indicate that the maximum difference does not exceed 3.7%,which proves the present method credible. The results show that stability numbers of shallow tunnels considering seepage are much less than those without considering seepage,and that the difference of stability numbers between considering seepage and without considering seepage increase with increasing the depth ratio. The stability numbers decrease with increasing permeability coefficient and groundwater depth. Seepage has significant effects on the stability numbers of shallow tunnels. 展开更多
关键词 strength reduction theory SEEPAGE permeability coefficient stability numbers
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Limit equilibrium stability analysis of slopes under external loads 被引量:4
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作者 DENG Dong-ping ZHAO Lian-heng LI Liang 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2382-2396,共15页
Two calculation modes for the effect of external load on slope stability, i.e., mode I in which the external load is thought to act on slope surface, and mode II in which the external load is thought to act on slip su... Two calculation modes for the effect of external load on slope stability, i.e., mode I in which the external load is thought to act on slope surface, and mode II in which the external load is thought to act on slip surface along the force action line, were considered. Meanwhile, four basic distribution patterns of external load were used, of which complex external loads could be composed. In analysis process, several limit equilibrium methods, such as Swedish method, simplified Bishop method, simplified Janbu method, Spencer method, Morgenstern-Price(M-P) method, Sarma method, and unbalanced thrust method, were also adopted to contrast their differences in slope stability under the external load. According to parametric analysis, some conclusions can be obtained as follows:(1) The external load, with the large magnitude, small inclination angle, and acting position close to the slope toe,has more positive effect on slope stability;(2) The results calculated using modes I and II of external load are similar, indicating that the calculation mode of external load has little influence on slope stability;(3) If different patterns of external loads are equivalent to each other, their slope stability under these external loads are the same, and if not, the external load leads to the better slope stability,as action position of the resultant force for external load is closer to the lower sliding point of slip surface. 展开更多
关键词 slope stability calculation mode of external load distribution pattern of external load limit equilibrium slip surface factor of safety (FOS)
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Limit equilibrium analysis for rock slope stability using basic Hoek–Brown strength criterion 被引量:6
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作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2154-2163,共10页
Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only sui... Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only suitable for analyzing the rock slope stability using the linear equivalent Mohr–Coulomb(EMC)strength parameters instead of the nonlinear HB strength criterion.Therefore,a new method derived to analyze directly the rock slope stability using the nonlinear HB strength criterion for arbitrary curve slip surface was described in the limit equilibrium framework.The current method was established based on certain assumptions concerning the stresses on the slip surface through amending the initial normal stressσ0 obtained without considering the effect of inter-slice forces,and it can satisfy all static equilibrium conditions of the sliding body,so the current method can obtain the reasonable and strict factor of safety(FOS)solutions.Compared with the results of other methods in some examples,the feasibility of the current method was verified.Meanwhile,the parametric analysis shows that the slope angleβhas an important influence on the difference of the results obtained using the nonlinear HB strength criterion and its linear EMC strength parameters.Forβ≤45°,both of the results are similar,showing the traditional limit equilibrium methods using the linear EMC strength parameters and the current method are all suitable to analyze rock slope stability,but forβ>60°,the differences of both the results are obvious,showing the actual slope stability state can not be reflected in the traditional limit equilibrium methods,and then the current method should be used. 展开更多
关键词 Hoek-Brown strength criterion linear equivalent Mohr-Coulomb strength parameters slope stability limit equilibrium slip surface factor of safety
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3D stability analysis method of concave slope based on the Bishop method 被引量:6
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作者 Zhang Tianwen Cai Qingxiang +2 位作者 Han Liu Shu Jisen Zhou Wei 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第2期365-370,共6页
In order to study the stability control mechanism of a concave slope with circular landslide, and remove the influence of differences in shape on slope stability, the limit analysis method of a simplified Bishop metho... In order to study the stability control mechanism of a concave slope with circular landslide, and remove the influence of differences in shape on slope stability, the limit analysis method of a simplified Bishop method was employed. The sliding body was divided into strips in a three-dimensional model, and the lateral earth pressure was put into mechanical analysis and the three-dimensional stability analysis methods applicable for circular sliding in concave slope were deduced. Based on geometric structure and the geological parameters of a concave slope, the influence rule of curvature radius and the top and bottom arch height on the concave slope stability were analyzed. The results show that the stability coefficient decreases after growth, first in the transition stage of slope shape from flat to concave, and it has been confirmed that there is a best size to make the slope stability factor reach a maximum. By contrast with average slope, the stability of a concave slope features a smaller range of ascension with slope height increase, which indicates that the enhancing effect of a concave slope is apparent only with lower slope heights. 展开更多
关键词 Bishop method Concave slope Three-dimensional structure Stability analysis
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Study on the FEM design of reinforced earth retaining wall with geogrid 被引量:4
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作者 Song Yakun Zheng Yingren +1 位作者 Tang Xiaosong Zhang Yufang 《Engineering Sciences》 EI 2010年第3期71-80,共10页
At present,limit equilibrium method is often adopted in the design of reinforced earth retaining wall. Geotechnical engineers home and abroad have done a lot of work to improve the traditional calculation methods in r... At present,limit equilibrium method is often adopted in the design of reinforced earth retaining wall. Geotechnical engineers home and abroad have done a lot of work to improve the traditional calculation methods in recent years,while there are lots of defects. This paper first identifies the location of failure surface and safety factor through the finite element program of PLAXIS and then analyses the influencing factors of the stability of reinforced earth retaining wall with geogrid. The authors adopt strength reduction FEM (finite element method)in the design and stability analysis of reinforced earth retaining wall and have achieved some satisfying results. Without any assumptions,the new design method can automatically judge the failure mode of reinforced earth retaining wall,consider the influence of axial tensile stiffness of the reinforcement stripe on the stability of retaining wall,identify reasonable distance and length of the reinforcement stripe,and choose suitable parameters of reinforcement stripe,including strength,stiffness and pseudo-friction coefficient which makes the design optimal. It is proved through the calculation examples that this method is more reasonable,reliable and economical in the design of reinforced earth retaining wall. 展开更多
关键词 FEM strength reduction methods earth retaining walls optimization design
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Distributed Fiber Optic Monitoring and Stability Analysis of a Model Slope under Surcharge Loading 被引量:23
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作者 ZHU Hong-Hu SHI Bin +2 位作者 ZHANG Jie YAN Jun-Fan ZHANG Cheng-Cheng 《Journal of Mountain Science》 SCIE CSCD 2014年第4期979-989,共11页
In the discipline of geotechnical engineering, fiber optic sensor based distributed monitoring has played an increasingly important role over the past few decades. Compared with conventional sensors, fiber optic senso... In the discipline of geotechnical engineering, fiber optic sensor based distributed monitoring has played an increasingly important role over the past few decades. Compared with conventional sensors, fiber optic sensors have a variety of exclusive advantages, such as smaller size, higher precision, and better corrosion resistance. These innovative monitoring technologies have been successfully applied for performance monitoring of geo-structures and early warning of potential geo- hazards around the world. In order to investigate their ability to monitor slope stability problems, a medium-sized model of soil nailed slope has been constructed in laboratory. The fully distributed Brillouin optical time-domain analysis (BOTDA) sensing technology was employed to measure the horizontal strain distributions inside the model slope. During model construction, a specially designed strain sensing fiber was buried in the soil mass. Afterward, the surcharge loading was applied on the slope crest in stages using hydraulic jacks and a reaction frame. During testing, an NBX-6o5o BOTDA sensing interrogator was used to collect the fiber optic sensing data. The test results have been analyzed in detail, which shows that the fiber optic sensors can capture the progressive deformation and failure pattern of the model slope. The limit equilibrium analyses were also conducted to obtain the factors ofsafety of the slope under different surface loadings. It is found that the characteristic maximum strains can reflect the stability of the model slope and an empirical relationship was obtained, This study verified the effectiveness of the distributed BOTDA sensing technology in performance monitoring of slope. 展开更多
关键词 Slope stability Geotechnical monitoring Fiber optic sensor Distributed strain sensing Brillouin optical time-domain analysis (BOTDA) Model test
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Stability analysis for natural slope by kinematical approach 被引量:2
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作者 孙志彬 覃长兵 《Journal of Central South University》 SCIE EI CAS 2014年第4期1546-1553,共8页
The stability of natural slope was analyzed on the basis of limit analysis. The sliding model of a kind of natural slope was presented. A new kinematically admissible velocity field for the new sliding model was const... The stability of natural slope was analyzed on the basis of limit analysis. The sliding model of a kind of natural slope was presented. A new kinematically admissible velocity field for the new sliding model was constructed. The stability factor formulation by the upper bound theorem leads to a classical nonlinear programming problem, when the external work rate and internal energy dissipation were solved, and the constraint condition of the programming problem was given. The upper bound optimization problem can be solved efficiently by applying a nonlinear SQP algorithm, and stability factor was obtained, which agrees well with previous achievements. 展开更多
关键词 natural slope stability analysis limit analysis upper bound theorem
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Three-dimensional stability of landslides based on local safety factor 被引量:4
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作者 YANG Tao Man-chu Ronald YEUNG +2 位作者 YANG Bing LIU Yong-jiang YANG Yan-xin 《Journal of Mountain Science》 SCIE CSCD 2016年第9期1515-1526,共12页
Unlike the limit equilibrium method(LEM), with which only the global safety factor of the landslide can be calculated, a local safety factor(LSF) method is proposed to evaluate the stability of different sections of a... Unlike the limit equilibrium method(LEM), with which only the global safety factor of the landslide can be calculated, a local safety factor(LSF) method is proposed to evaluate the stability of different sections of a landslide in this paper. Based on three-dimensional(3D) numerical simulation results, the local safety factor is defined as the ratio of the shear strength of the soil at an element on the slip zone to the shear stress parallel to the sliding direction at that element. The global safety factor of the landslide is defined as the weighted average of all local safety factors based on the area of the slip surface. Some example analyses show that the results computed by the LSF method agree well with those calculated by the General Limit Equilibrium(GLE) method in two-dimensional(2D) models and the distribution of the LSF in the 3D slip zone is consistent with that indicated by the observed deformation pattern of an actual landslide in China. 展开更多
关键词 Landslide stability Local safety factor Stability analysis method Slip mechanism
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Hybrid method of limit equilibrium and finite element internal force for analysis of arch dam stability against sliding 被引量:6
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作者 BAO TengFei1,2,3,XU BaoSong1,2,3 & ZHENG XueQing1,2,3 1State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering,Hohai University,Nanjing 210098,China 2National Engineering Research Center of Water Resources Efficient Utilization and Engineering Safety,Nanjing 210098,China 3College of Water Conservancy and Hydropower Engineering,Hohai University,Nanjing 210098,China 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第4期793-798,共6页
A hybrid method of limit equilibrium and finite element internal force for analysis of arch dam stability against sliding is presented.The finite element internal force method(FEIFM) is used to provide more accurate t... A hybrid method of limit equilibrium and finite element internal force for analysis of arch dam stability against sliding is presented.The finite element internal force method(FEIFM) is used to provide more accurate thrust forces acting on the faces of a slip body,and the limit equilibrium method(LEM) is employed to evaluate the factor of safety of the slip body.The method presented can deal with a slip body with large amount of geometrically complex slip faces.In addition,compared with the traditional LEM,it can meet the balance condition of the forces in the slip faces.An example shows that the factor of safety obtained by the method presented agrees well with the theoretical solution.A practical example is also presented to demonstrate the application of the method in the stability analysis of an arch dam project.The results from the examples show that the method is promising in analysis of arch dam stability against sliding. 展开更多
关键词 arch dam stability against sliding limit equilibrium method finite element internal force method
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Three-Dimensional Stability Analysis of Excavation Using Limit Analysis 被引量:1
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作者 韩长玉 陈锦剑 +1 位作者 王建华 夏小和 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第6期646-649,共4页
The theory of limit analysis is presented for a three-dimensional stability problem of excavation. In frictional soil, the failure surface has the shape of logarithm helicoid, with the outline profile defined by a log... The theory of limit analysis is presented for a three-dimensional stability problem of excavation. In frictional soil, the failure surface has the shape of logarithm helicoid, with the outline profile defined by a log- spiral curve. The internal dissipation rate of energy caused by soil cohesion and gravity power of the failure soil is obtained through theoretical derivation. By solving the energy balance equation, the stability factor for the excavation is obtained. Influence of the ratio of width to height, the slope angle, and the top angle on the stability is examined. Numerical results of the proposed algorithm are presented in the form of non dimensional graph. Examples illustrate the practical use of the results. 展开更多
关键词 STABILITY LANDSLIDES limit analysis EXCAVATIONS
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Interface stress element method and its application in analysis of anti-sliding stability of gravity dam 被引量:4
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作者 ZHANG Qing WANG ZhiQiang XIA XiaoZhou 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第12期3285-3291,共7页
The rigid body limit equilibrium method (LEM) and the nonlinear finite element method (NFEM) are often used in the analysis of anti-sliding stability of gravity dam. But LEM cannot reflect the process of progressi... The rigid body limit equilibrium method (LEM) and the nonlinear finite element method (NFEM) are often used in the analysis of anti-sliding stability of gravity dam. But LEM cannot reflect the process of progressive instability and mechanical mecha- nism on failure for rock mass while NFEM is difficult to use to solve the displacement discontinuity of weak structural plane. Combining the research with Xiangjiaba Hydropower Station project, the analysis of anti-sliding stability for segment 12# of the dam has been carried out using interface stress element method (ISEM). The results can reflect the most dangerous location, the scope and distribution of failure zone in weak structural plane, and present the process of progressive failure in dam foun- dation as well as the safety coefficient of possible sliding body. These achievements provide an important technical reference for dam foundation treatment measures. The computational results show that ISEM can naturally describe discontinuous de- formation of rock mass such as dislocation, openness and sliding. Besides, this method is characterized by good adaptability, convenient calculation and high compatibility, thus it is regarded as an effective way to make an analysis of anti-sliding stabil- ity of gravity dam 展开更多
关键词 discontinuous mechanics interface stress element method gravity dam analysis of anti-sliding stability
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Stability and multi-parametric Hopf bifurcation analyses of viral infection model with time delay 被引量:2
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作者 M. Prakash P. Balasubramaniam 《International Journal of Biomathematics》 2015年第5期107-133,共27页
Ever since HIV was first diagnosed in human, a great number of scientific works have been undertaken to explore the biological mechanisms involved in the infection and progression of the disease. This paper deals with... Ever since HIV was first diagnosed in human, a great number of scientific works have been undertaken to explore the biological mechanisms involved in the infection and progression of the disease. This paper deals with stability and bifurcation analyses of mathematical model that represents the dynamics of HIV infection of thymus. The existence and stability of the equilibria are investigated. The model is described by a system of delay differential equations with logistic growth term, cure rate and discrete type of time delay. Choosing the time delay as a bifurcation parameter, the analysis is mainly focused on the Hopf bifurcation problem to predict the existence of a limit cycle bifurcating from the infected steady state.Further, using center manifold theory and normal form method we derive explicit formulae to determine the stability and direction of the limit cycles. Moreover the mitosis rate r also plays a vital role in the model, so we fix it as second bifurcation parameter in the incidence of viral infection. Our analysis shows that, while both the bifurcation parameters can destabilize the equilibrium E* and cause limit cycles. Numerical simulations are performed to investigate the qualitative behaviors of the inherent model. 展开更多
关键词 HIV-1 asymptotic stability Hopf bifurcation discrete delay.
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