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A strength reduction method based on double reduction parameters and its application 被引量:45
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作者 袁维 白冰 +1 位作者 李小春 汪海滨 《Journal of Central South University》 SCIE EI CAS 2013年第9期2555-2562,共8页
In the traditional strength reduction method,the cohesion and the friction angle adopt the same reduction parameter,resulting in equivalent proportional reduction.This method does not consider the different effects of... In the traditional strength reduction method,the cohesion and the friction angle adopt the same reduction parameter,resulting in equivalent proportional reduction.This method does not consider the different effects of the cohesion and friction angle on the stability of the same slope and is defective to some extent.Regarding this defect,a strength reduction method based on double reduction parameters,which adopts different reduction parameters,is proposed.The core of the double-parameter reduction method is the matching reduction principle of the slope with different angles.This principle is represented by the ratio of the reduction parameter of the cohesion to that of the friction angle,described as η.With the increase in the slopeangle,ηincreases; in particular,when the slope angle is 45°,tηis 1.0.Through the matching reduction principle,different safety margin factors can be calculated for the cohesion and friction angle.In combination with these two safety margin factors,a formula for calculating the overall safety factor of the slope is proposed,reflecting the different contributions of the cohesion and friction angle to the slope stability.Finally,it is shown that the strength reduction method based on double reduction parameters acquires a larger safety factor than the classic limit equilibrium method,but the calculation results are very close to those obtained by the limit equilibrium method. 展开更多
关键词 double reduction parameter strength reduction method matching reduction principle slope stability
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Limit analysis of vertical anti-pulling screw pile group under inclined loading on 3D elastic-plastic finite element strength reduction method 被引量:12
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作者 董天文 郑颖人 《Journal of Central South University》 SCIE EI CAS 2014年第3期1165-1175,共11页
Based on the functional theory, catastrophe theory, simultaneity principle and the idea of strength reduction method (SRM), the bearing capacity functional anti SRM of pile group foundation were established, and the... Based on the functional theory, catastrophe theory, simultaneity principle and the idea of strength reduction method (SRM), the bearing capacity functional anti SRM of pile group foundation were established, and the criteria of ultimate load and the concept of safety storage coefficient (Css) were advanced. The inclined ultimate loads by the static loading test, load increment method (LIM) and SRM are compared. Theoretically, the ultimate load of piles does not change with the loading levels when it is calculated by SRM. When the one strength reduction parameter is applied in the calculation boundary, there are calculating errors because the bearing capacity action of soils happened in the finite zone. The inclined 10adings are 108, 132 and 144 kN, and SSC are 1.07, 0.94 and 0.79, respectively, so the calculation values of ultimate loads are about 115.56, 124.08 and 113.76 kN, respectively. The error between calculations and observation values is less than 6%. But .the error between calculations of LIM and observations is 20%. Because of the effect of inclined loading, the push-rotation phenomenon of screw pile group appears. Under this testing, the ultimate bearing capacity of piles is mostly determined by the horizontal ultimate bearing capacity, and the effect of the vertical component of inclined load should also be considered. 展开更多
关键词 strength reduction method screw pile group ultimate load inclined loading
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Strength reduction method for slope based on a ubiquitous-joint criterion and its application 被引量:8
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作者 JIANG Qing-qing 《Mining Science and Technology》 EI CAS 2009年第4期452-456,共5页
In order to expand the application of strength reduction methods with the ubiquitous-joint criterion, the corresponding program is compiled using FLAC3D software. A procedure for strength reduction in the ubiquitous-j... In order to expand the application of strength reduction methods with the ubiquitous-joint criterion, the corresponding program is compiled using FLAC3D software. A procedure for strength reduction in the ubiquitous-joint criterion is proposed to study the safety factor of slopes as well as the relationships of the bedding plane inclination angle β and the safety factor F. The results show that: 1) for the bedding rock slope, the various failure modes cause different variations of the safety factor F; 2) a bed- ding rock slope can be divided into two types by the angle between the bedding plane inclination and slope surface inclination a; when a_〈45~, the bedding slope can be strictly defined as the subsequent bedding rock slope; when 45°〈α〈90°, the bedding slope is defined as an oblique bedding slope; 3) for bedding rock slopes, the safety factor increases with an increase in a; for inverse bed- ding slopes, when the bedding plane inclination angle fl is small, the safety factor F of the slope increases at first, then decreases with an increase in a; when β is large, the safety factor F increases with an increase in α. 展开更多
关键词 SLOPE safety factor strength reduction method numerical simulation
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Slope analysis based on local strength reduction method and variable-modulus elasto-plastic model 被引量:5
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作者 杨光华 钟志辉 +3 位作者 傅旭东 张玉成 温勇 张明飞 《Journal of Central South University》 SCIE EI CAS 2014年第5期2041-2050,共10页
Employing an ideal elasto-plastic model,the typically used strength reduction method reduced the strength of all soil elements of a slope.Therefore,this method was called the global strength reduction method(GSRM).How... Employing an ideal elasto-plastic model,the typically used strength reduction method reduced the strength of all soil elements of a slope.Therefore,this method was called the global strength reduction method(GSRM).However,the deformation field obtained by GSRM could not reflect the real deformation of a slope when the slope became unstable.For most slopes,failure occurs once the strength of some regional soil is sufficiently weakened; thus,the local strength reduction method(LSRM)was proposed to analyze slope stability.In contrast with GSRM,LSRM only reduces the strength of local soil,while the strength of other soil remains unchanged.Therefore,deformation by LSRM is more reasonable than that by GSRM.In addition,the accuracy of the slope's deformation depends on the constitutive model to a large degree,and the variable-modulus elasto-plastic model was thus adopted.This constitutive model was an improvement of the Duncan–Chang model,which modified soil's deformation modulus according to stress level,and it thus better reflected the plastic feature of soil.Most importantly,the parameters of the variable-modulus elasto-plastic model could be determined through in-situ tests,and parameters determination by plate loading test and pressuremeter test were introduced.Therefore,it is easy to put this model into practice.Finally,LSRM and the variable-modulus elasto-plastic model were used to analyze Egongdai ancient landslide.Safety factor,deformation field,and optimal reinforcement measures for Egongdai ancient landslide were obtained based on the proposed method. 展开更多
关键词 slope stability local strength reduction method variable-modulus elasto-plastic model in-situ test
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Application of strength reduction method to dynamic anti-sliding stability analysis of high gravity dam with complex dam foundation 被引量:3
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作者 Deng-hong CHEN Cheng-bin DU 《Water Science and Engineering》 EI CAS 2011年第2期212-224,共13页
Considering that there are some limitations in analyzing the anti-sliding seismic stability of dam-foundation systems with the traditional pseudo-static method and response spectrum method, the dynamic strength reduct... Considering that there are some limitations in analyzing the anti-sliding seismic stability of dam-foundation systems with the traditional pseudo-static method and response spectrum method, the dynamic strength reduction method was used to study the deep anti-sliding stability of a high gravity dam with a complex dam foundation in response to strong earthquake-induced ground action. Based on static anti-sliding stability analysis of the dam foundation undertaken by decreasing the shear strength parameters of the rock mass in equal proportion, the seismic time history analysis was carried out. The proposed instability criterion for the dynamic strength reduction method was that the peak values of dynamic displacements and plastic strain energy change suddenly with the increase of the strength reduction factor. The elasto-plastic behavior of the dam foundation was idealized using the Drucker-Prager yield criterion based on the associated flow rule assumption. The result of elasto-plastic time history analysis of an overflow dam monolith based on the dynamic strength reduction method was compared with that of the dynamic linear elastic analysis, and the reliability of elasto-plastic time history analysis was confirmed. The results also show that the safety factors of the dam-foundation system in the static and dynamic cases are 3.25 and 3.0, respectively, and that the F2 fault has a significant influence on the anti-sliding stability of the high gravity dam. It is also concluded that the proposed instability criterion for the dynamic strength reduction method is feasible. 展开更多
关键词 dynamic anti-sliding stability complex dam foundation dynamic strength reduction method instability criteria elasto-plastie model dynamic time history analysis gravity dam
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New method of designing anti-slide piles——the strength reduction FEM 被引量:3
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作者 Zheng Yingren Zhao Shanyi +1 位作者 Lei Wenjie Tang Xiaosong 《Engineering Sciences》 EI 2010年第3期2-11,共10页
At present,the thrust of an anti-slide pile can be worked out with some calculation methods. However,the resistance in front of the pile,the distributions of resistance and thrust,and appropriate pile length cannot be... At present,the thrust of an anti-slide pile can be worked out with some calculation methods. However,the resistance in front of the pile,the distributions of resistance and thrust,and appropriate pile length cannot be easily obtained. In this paper,the authors applied the strength-reduction finite element method (FEM) to several design cases of anti-slide piles. Using this method,it is possible to take the pile-soil interactions into consideration,obtain reasonable resistance in front of pile and the distributions of thrust and resistance,and reasonable lengths of anti-slide piles. In particular,the thrust and resistance imposed on embedded anti-slide piles can be calculated and composite anti-slide pile structures such as anchored piles and braced piles can be optimized. It is proved through the calculation examples that this method is more reliable and economical in the design of anti-slide pile. 展开更多
关键词 strength reduction method finite element method anti-slide piles sub-grade reaction embedded piles
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A case study of multi-seam coal mine entry stability analysis with strength reduction method 被引量:7
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作者 Tulu Ihsan Berk Esterhuizen Gabriel S. +3 位作者 Klemetti Ted Murphy Michael M. Sumner James Sloan Michael 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第2期193-198,共6页
In this paper,the advantage of using numerical models with the strength reduction method(SRM) to evaluate entry stability in complex multiple-seam conditions is demonstrated.A coal mine under variable topography from ... In this paper,the advantage of using numerical models with the strength reduction method(SRM) to evaluate entry stability in complex multiple-seam conditions is demonstrated.A coal mine under variable topography from the Central Appalachian region is used as a case study.At this mine,unexpected roof conditions were encountered during development below previously mined panels.Stress mapping and observation of ground conditions were used to quantify the success of entry support systems in three room-and-pillar panels.Numerical model analyses were initially conducted to estimate the stresses induced by the multiple-seam mining at the locations of the affected entries.The SRM was used to quantify the stability factor of the supported roof of the entries at selected locations.The SRM-calculated stability factors were compared with observations made during the site visits,and the results demonstrate that the SRM adequately identifies the unexpected roof conditions in this complex case.It is concluded that the SRM can be used to effectively evaluate the likely success of roof supports and the stability condition of entries in coal mines. 展开更多
关键词 Coal mine ground control Multiple seam mining Phase 2 FLAC3D strength reduction method Roof supports
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A New Criterion for Defining Inhomogeneous Slope Failure Using the Strength Reduction Method
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作者 Chengya Hua Leihua Yao +2 位作者 Chenguang Song Qihang Ni Dongfang Chen 《Computer Modeling in Engineering & Sciences》 SCIE EI 2022年第8期413-434,共22页
A new variational method treating the system as a whole with rigorous mathematical and physical derivation was presented in this paper.Combined with classical and engineering examples,variational energy expressions of... A new variational method treating the system as a whole with rigorous mathematical and physical derivation was presented in this paper.Combined with classical and engineering examples,variational energy expressions of slopes were derived.In addition,the calculation programs were written in the FISH language set in FLAC3D(fast Lagrangian analysis of continua in three dimensions)software.Factors of safety(FOSs)of the models were determined by the variational method based on the strength reduction method(SRM)and then compared with other criteria or methods.The result showed that the variational method reflected the process of slope plasticity and failure uniformly and was feasible to analyze the stability of inhomogeneous slopes.The method was applicable to both two-dimensional and three-dimensional heterogeneous slopes.The small error with other criteria or methods also showed the accuracy of this method.This method unified other criteria,avoided the artificial error of other criteria,and provided a logical derivation for the instability of heterogeneous slope.This method considered the system as a whole and avoided the shortcomings of the general method of one-sided instability analysis.The proposed method is of great significance as it considers the coupling effect of stress and strain of materials and gives the mechanical basis for the instability of complex slopes. 展开更多
关键词 strength reduction method variational method inhomogeneous slopes STABILITY
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A Calculation Method of Double Strength Reduction for Layered Slope Based on the Reduction of Water Content Intensity
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作者 Feng Shen Yang Zhao +1 位作者 Bingyi Li Kai Wu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第1期221-243,共23页
The calculation of the factor of safety(FOS)is an important means of slope evaluation.This paper proposed an improved double strength reductionmethod(DRM)to analyze the safety of layered slopes.The physical properties... The calculation of the factor of safety(FOS)is an important means of slope evaluation.This paper proposed an improved double strength reductionmethod(DRM)to analyze the safety of layered slopes.The physical properties of different soil layers of the slopes are different,so the single coefficient strength reduction method(SRM)is not enough to reflect the actual critical state of the slopes.Considering that the water content of the soil in the natural state is the main factor for the strength of the soil,the attenuation law of shear strength of clayey soil changing with water content is fitted.This paper also establishes the functional relationship between different reduction coefficients.Then,a USDFLD subroutine is programmed using the secondary development function of finite element software.Controlling the relationship between field variables and calculation time realizes double strength reduction applicable to the layered slope.Finally,by comparing the calculation results of different examples,it is proved that the stress and displacement distribution of the critical slope state obtained by the improved method is more realistic,and the calculated safety factor is more reliable.The newly proposedmethod considers the difference of intensity attenuation between different soil layers under natural conditions and avoids the disadvantage of the strength reduction method with uniform parameters,which provides a new idea and method for stability analysis of layered and complex slopes. 展开更多
关键词 Double strength reduction slopes stability water content factor of safety numerical methods
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Strength reduction and step-loading finite element approaches in geotechnical engineering 被引量:23
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作者 Yingren Zheng Xiaosong Tang +2 位作者 Shangyi Zhao Chujian Deng Wenjie Lei 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE 2009年第1期21-30,共10页
The finite element limit analysis method has the advantages of both numerical and traditional limit equilibrium techniques and it is particularly useful to geotechnical engineering.This method has been developed in Ch... The finite element limit analysis method has the advantages of both numerical and traditional limit equilibrium techniques and it is particularly useful to geotechnical engineering.This method has been developed in China,following well-accepted international procedures,to enhance understanding of stability issues in a number of geotechnical settings.Great advancements have been made in basic theory,the improvement of computational precision,and the broadening of practical applications.This paper presents the results of research on(1) the efficient design of embedded anti-slide piles,(2) the stability analysis of reservoir slopes with strength reduction theory,and(3) the determination of the ultimate bearing capacity of foundations using step-loading FEM(overloading).These three applications are evidence of the design improvements and benefits made possible in geotechnical engineering by finite element modeling. 展开更多
关键词 finite element limit analysis method strength reduction step-loading embedded anti-slide piles reservoir slope FOUNDATION
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A new double reduction method for slope stability analysis 被引量:16
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作者 白冰 袁维 李小春 《Journal of Central South University》 SCIE EI CAS 2014年第3期1158-1164,共7页
The core of strength reduction method(SRM) involves finding a critical strength curve that happens to make the slope globally fail and a definition of factor of safety(FOS). A new double reduction method, including a ... The core of strength reduction method(SRM) involves finding a critical strength curve that happens to make the slope globally fail and a definition of factor of safety(FOS). A new double reduction method, including a detailed calculation procedure and a definition of FOS for slope stability was developed based on the understanding of SRM. When constructing the new definition of FOS, efforts were made to make sure that it has concise physical meanings and fully reflects the shear strength of the slope. Two examples, slopes A and B with the slope angles of 63° and 34° respectively, were given to verify the method presented. It is found that, for these two slopes, the FOSs from original strength reduction method are respectively 1.5% and 38% higher than those from double reduction method. It is also found that the double reduction method predicts a deeper potential slide line and a larger slide mass. These results show that on one hand, the double reduction method is comparative to the traditional methods and is reasonable, and on the other hand, the original strength reduction method may overestimate the safety of a slope. The method presented is advised to be considered as an additional option in the practical slope stability evaluations although more useful experience is required. 展开更多
关键词 slope stability strength reduction method double strength reduction method factor of safety limit equilibrium method
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Upper bound analysis of slope stability with nonlinear failure criterion based on strength reduction technique 被引量:26
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作者 赵炼恒 李亮 +2 位作者 杨峰 罗强 刘项 《Journal of Central South University》 SCIE EI CAS 2010年第4期836-844,共9页
Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and it... Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and its corresponding critical failure mechanism by means of the kinematical approach of limit analysis theory. The nonlinear shear strength parameters were treated as variable parameters and a kinematically admissible failure mechanism was considered for calculation schemes. The iterative optimization method was adopted to obtain the safety factors. Case study and comparative analysis show that solutions presented here agree with available predictions when nonlinear criterion reduces to linear criterion, and the validity of present method could be illuminated. From the numerical results, it can also be seen that nonlinear parameter rn, slope foot gradient ,β, height of slope H, slope top gradient a and soil bulk density γ have significant effects on the safety factor of the slope. 展开更多
关键词 nonlinear failure criterion strength reduction method upper-bound theorem of limit analysis slope stability analysis factor of safety
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Application of dynamic analysis of strength reduction in the slope engineering under earthquake 被引量:2
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作者 Ye Hailin Zheng yingren +2 位作者 Huang Runqiu Li Anhong Du Xiuli 《Engineering Sciences》 EI 2010年第3期41-48,80,共9页
At present,the methods of analyzing the stability of slope under earthquake are not accurate and reasonable because of some limitations. Based on the real dynamic tensile-shear failure mechanism of slope,the paper pro... At present,the methods of analyzing the stability of slope under earthquake are not accurate and reasonable because of some limitations. Based on the real dynamic tensile-shear failure mechanism of slope,the paper proposes dynamic analysis of strength reduction FEM (finite element method) and takes the reduction of shear strength parameters and tensile strength parameters into consideration. And it comprehensively takes the transfixion of the failure surface,the non-convergence of calculation and mutation of displacement as the criterion of dynamic instability and failure of the slope. The strength reduction factor under limit state is regarded as the dynamic safety factor of the slope under earthquake effect and its advantages are introduced. Finally,the method is applied in the seismic design of anchors supporting and anti-slide pile supporting of the slope. Calculation examples show that the application of dynamic analysis of strength reduction is feasible in the seismic design of slope engineering,which can consider dynamic interaction of supporting structure and rock-soil mass. Owing to its preciseness and great advantages,it is a new method in the seismic design of slope supporting. 展开更多
关键词 slope engineering EARTHQUAKE safety factor ANCHOR anti-slide pile dynamic analysis method of strength reduction
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基于SRM法的直剪作用下不同随机节理倾角岩体尺寸效应研究 被引量:1
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作者 牙兰开 刘远明 +4 位作者 陈庆芝 王忠星 张策 王义乾 田茂亮 《水利水电技术(中英文)》 北大核心 2025年第1期217-230,共14页
【目的】旨在揭示不同倾角区间的随机节理对岩体破坏特征、抗剪强度和剪切模量尺寸效应的影响规律。【方法】利用PFC 2D离散元软件的SRM技术,结合分形理论和Monte Carlo方法,对不同尺寸、内嵌随机节理的类岩体进行数值模拟直剪试验。【... 【目的】旨在揭示不同倾角区间的随机节理对岩体破坏特征、抗剪强度和剪切模量尺寸效应的影响规律。【方法】利用PFC 2D离散元软件的SRM技术,结合分形理论和Monte Carlo方法,对不同尺寸、内嵌随机节理的类岩体进行数值模拟直剪试验。【结果】结果表明:(1)岩体抗剪强度随内嵌随机节理倾角区间的增大均呈现“S”型非线性特征,且最小值多出现在15°~30°区间,最大值均在60°~75°区间。(2)不同尺寸的内嵌随机节理倾角区间变化对岩体破坏影响效果相似。低倾角区间出现明显的优势破坏面和次优势破坏面,随着倾角区间增大,其应力集中发生向节理中部转移,两优势破坏面的优势发生转换。(3)随机节理倾角区间变化显著影响岩体抗剪强度和剪切模量的尺寸效应,且对岩体抗剪强度尺寸效应的影响大于对剪切模量尺寸效应的影响。【结论】研究了相同尺寸条件下内嵌随机节理倾角区间变化对节理岩体抗剪强度及破坏特征的影响和不同尺寸条件下内嵌随机节理倾角区间变化对节理岩体抗剪强度和剪切模量尺寸效应的影响,为岩体力学性质的预测和工程应用提供了重要的参考价值。 展开更多
关键词 srm PFC 随机节理 直剪试验 尺寸效应 抗剪强度 力学性能
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Reinforcement strength reduction in FEM for mechanically stabilized earth structures
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作者 薛剑峰 陈建峰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2691-2698,共8页
The factor of safety of mechanically stabilized earth(MSE) structures can be analyzed either using limit equilibrium method(LEM) or strength reduction method(SRM) in finite element/difference method. In LEM, the stren... The factor of safety of mechanically stabilized earth(MSE) structures can be analyzed either using limit equilibrium method(LEM) or strength reduction method(SRM) in finite element/difference method. In LEM, the strengths of the reinforcement members and soils are reduced with the same factor. While using the SRM, only soil strength is reduced during the calculation of the factor of safety. This causes inconsistence in calculating the factor of safety of the MSE structures. To overcome this, an iteration method is proposed to consider the strength reduction of the reinforcements in SRM. The method is demonstrated by using PLAXIS, a finite element software. The results show that the factor of safety converges after a few iterations. The reduction of strength has different effects on the factor of safety depending on the properties of the reinforcements and the soil, and failure modes. 展开更多
关键词 mechanically stabilized earth structures factor of safety strength reduction method iterative method
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大潮高速某边坡连续变形机理识别与协同处治方法研究
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作者 蒋惠 《市政技术》 2026年第2期78-85,96,共9页
针对山岭区高填方路堤沿线连续变形易发、破坏机理耦合性强与治理窗口期短的问题,选取大潮高速K46+975—K47+230典型病害段为研究对象,构建“机理识别-协同处治”的二维计算模型,采用强度折减法(SRM)评价边坡整体稳定性与破坏演化规律... 针对山岭区高填方路堤沿线连续变形易发、破坏机理耦合性强与治理窗口期短的问题,选取大潮高速K46+975—K47+230典型病害段为研究对象,构建“机理识别-协同处治”的二维计算模型,采用强度折减法(SRM)评价边坡整体稳定性与破坏演化规律。结果表明:现状工况下,边坡整体稳定性安全系数F_(s)≈1.03±0.02,处于临界稳定状态;实施“主涵导排+涵底下调、软化带注浆、锚索/框梁协同支护”处治方案后,边坡整体稳定性安全系数F_(s)≥1.30±0.02。典型测斜孔监测数据显示,处治后边坡位移峰值降低约60%~80%,“S型”拐折显著钝化,潜在剪切带由贯通转为断带化。敏感性分析指出,内摩擦角φ、渗透系数k及涵底标高对边坡稳定性最为敏感,导排措施对降低孔压峰值具有一阶贡献。 展开更多
关键词 高填方路堤 连续变形 强度折减法 二维计算分析 协同处治
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Midas-GTS(SRM)在边坡二维稳定性分析中的运用 被引量:29
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作者 毕小勇 闫天俊 鲁杰 《自然灾害学报》 CSCD 北大核心 2015年第1期170-176,共7页
Midas-GTS(SRM)是基于有限元强度折减原理对边坡进行稳定性分析的,它考虑了岩土体的非线性本构关系,其计算结果不仅能以云图的形式直观反映失稳边坡滑动面的位置,还能以动画的形式反映滑动面的形成、发展、贯通情况;并且还能得到边坡岩... Midas-GTS(SRM)是基于有限元强度折减原理对边坡进行稳定性分析的,它考虑了岩土体的非线性本构关系,其计算结果不仅能以云图的形式直观反映失稳边坡滑动面的位置,还能以动画的形式反映滑动面的形成、发展、贯通情况;并且还能得到边坡岩土体加固处理后结构的内力和变形。主要结合某边坡实例,运用Midas-GTS(SRM)对边坡进行二维数值模拟分析。通过对比边坡在无支护和有支护情况下的整体位移及最大剪切应变云图,对边坡整体稳定及支护效果做出了较为准确的分析及评价,在一定程度上,可以为今后类似工程提供理论参考和工程措施,具有一定的实用意义。 展开更多
关键词 Midas-GTS(srm) 有限元 强度折减原理 边坡 二维
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基于DEM-SRM和盲数理论的边坡地震稳定可靠性分析
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作者 刘焕玉 魏汝明 +2 位作者 胡文奎 程爱华 陈训龙 《城市勘测》 2021年第1期190-194,199,共6页
针对地震作用和边坡岩土体参数的多种不确定性,采用离散元强度折减法和盲数理论提出了一种边坡地震稳定可靠性分析方法。首先,基于离散元强度折减法和拟静力法计算分析地震作用下边坡的安全稳定状态,并结合响应面法和蒙特卡洛法建立地... 针对地震作用和边坡岩土体参数的多种不确定性,采用离散元强度折减法和盲数理论提出了一种边坡地震稳定可靠性分析方法。首先,基于离散元强度折减法和拟静力法计算分析地震作用下边坡的安全稳定状态,并结合响应面法和蒙特卡洛法建立地震边坡的极限状态方程,其次,运用盲数理论对边坡岩土体参数进行盲数化处理,并进一步建立地震边坡的安全系数盲数模型,最后,通过MATLAB编写相应的计算程序实现安全系数盲数解的快速输出和分析。算例分析表明:本文方法可计算出边坡总体可信度概率分布,可以根据实际工程等级情况及抗震要求计算出任一安全系数值所对应的可靠度值,可以更全面地分析地震边坡的安全稳定状态,进而以此来指导设计边坡抗震与加固方案。 展开更多
关键词 边坡 地震稳定性 可靠性 盲数理论 离散元强度折减法 拟静力法
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陕南某山区公路岩质高边坡稳定性分析及防护设计分析
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作者 岳雨欣 《陕西水利》 2026年第2期130-134,共5页
岩体结构的复杂性导致建模时无法十分精确地模拟岩体内部所有构造,对边坡稳定性分析造成一定困难,但岩质边坡又普遍存在于实际工程中,研究其稳定性及防护措施对路基安全具有重要意义。应用Slide和Phase2分别以极限平衡法中的Spencer法... 岩体结构的复杂性导致建模时无法十分精确地模拟岩体内部所有构造,对边坡稳定性分析造成一定困难,但岩质边坡又普遍存在于实际工程中,研究其稳定性及防护措施对路基安全具有重要意义。应用Slide和Phase2分别以极限平衡法中的Spencer法和有限元强度折减法对陕南某山区四级公路滑塌高陡边坡进行稳定性分析,重点探明滑塌现状边坡稳定状态、岩质边坡可能破坏模式及施加锚杆格梁后安全系数、位移及剪应变变化情况,可供相似条件下岩质边坡设计参考。 展开更多
关键词 岩质高边坡 极限平衡法 强度折减法 锚杆格梁 稳定性分析
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基于三维极限分析法的GIM和SRM边坡安全系数计算结果对比 被引量:9
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作者 洪勇 邵珠山 +1 位作者 石广斌 聂兴信 《河海大学学报(自然科学版)》 CAS CSCD 北大核心 2022年第4期112-120,共9页
基于三维牛角转动破坏模型的三维极限分析上限理论,建立了考虑坡顶倾角的边坡功率平衡方程,基于MATHEMATICA软件采用带有约束条件的穷举法优化求解了边坡安全系数最小值,在考虑参数c/γH、内摩擦角φ、坡顶倾角α和边坡倾角β的情况下,... 基于三维牛角转动破坏模型的三维极限分析上限理论,建立了考虑坡顶倾角的边坡功率平衡方程,基于MATHEMATICA软件采用带有约束条件的穷举法优化求解了边坡安全系数最小值,在考虑参数c/γH、内摩擦角φ、坡顶倾角α和边坡倾角β的情况下,定量对比分析了强度折减法(SRM)和容重增加法(GIM)计算的边坡安全系数。结果表明,边坡安全系数等于1时,GIM和SRM计算结果接近且近似都等于1;边坡安全系数大于1时,GIM计算结果大于SRM;边坡安全系数小于1时,SRM计算结果大于GIM;边坡安全系数小于1.2以下的稳定边坡,GIM和SRM法计算结果无明显差异。 展开更多
关键词 三维边坡 安全系数 强度折减法 容重增加法 极限分析
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