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Effects of spatial heterogeneity on pseudo-static stability of coal mine overburden dump slope,using random limit equilibrium and random finite element methods:A comparative study
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作者 Madhumita Mohanty Rajib Sarkar Sarat Kumar Das 《Earthquake Engineering and Engineering Vibration》 2025年第1期83-99,共17页
Sudden and unforeseen seismic failures of coal mine overburden(OB)dump slopes interrupt mining operations,cause loss of lives and delay the production of coal.Consideration of the spatial heterogeneity of OB dump mate... Sudden and unforeseen seismic failures of coal mine overburden(OB)dump slopes interrupt mining operations,cause loss of lives and delay the production of coal.Consideration of the spatial heterogeneity of OB dump materials is imperative for an adequate evaluation of the seismic stability of OB dump slopes.In this study,pseudo-static seismic stability analyses are carried out for an OB dump slope by considering the material parameters obtained from an insitu field investigation.Spatial heterogeneity is simulated through use of the random finite element method(RFEM)and the random limit equilibrium method(RLEM)and a comparative study is presented.Combinations of horizontal and vertical spatial correlation lengths were considered for simulating isotropic and anisotropic random fields within the OB dump slope.Seismic performances of the slope have been reported through the probability of failure and reliability index.It was observed that the RLEM approach overestimates failure probability(P_(f))by considering seismic stability with spatial heterogeneity.The P_(f)was observed to increase with an increase in the coefficient of variation of friction angle of the dump materials.Further,it was inferred that the RLEM approach may not be adequately applicable for assessing the seismic stability of an OB dump slope for a horizontal seismic coefficient that is more than or equal to 0.1. 展开更多
关键词 coal mine overburden dump slope random limit equilibrium method random finite element method seismic slope stability spatial heterogeneity
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An improved limit equilibrium method for rock slope stability analysis under stress-based calculation mode for slip surface
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作者 DENG Dong-ping ZHANG Dian +1 位作者 PENG Yi-hang CHEN Hao-yu 《Journal of Central South University》 2025年第1期262-287,共26页
This study proposes an alternative calculation mode for stresses on the slip surface(SS).The calculation of the normal stress(NS)on the SS involves examining its composition and expanding its unknown using the Taylor ... This study proposes an alternative calculation mode for stresses on the slip surface(SS).The calculation of the normal stress(NS)on the SS involves examining its composition and expanding its unknown using the Taylor series.This expansion enables the reasonable construction of a function describing the NS on the SS.Additionally,by directly incorporating the nonlinear Generalized Hoke-Brown(GHB)strength criterion and utilizing the slope factor of safety(FOS)definition,a function of the shear stress on the SS is derived.This function considers the mutual feedback mechanism between the NS and strength parameters of the SS.The stress constraints conditions are then introduced at both ends of the SS based on the spatial stress relation of one point.Determining the slope FOS and stress solution for the SS involves considering the mechanical equilibrium conditions and the stress constraint conditions satisfied by the sliding body.The proposed approach successfully simulates the tension-shear stress zone near the slope top and provides an intuitive description of the concentration effect of compression-shear stress of the SS near the slope toe.Furthermore,compared to other methods,the present method demonstrates superior processing capabilities for the embedded nonlinear GHB strength criterion. 展开更多
关键词 stability of rock slope nonlinear GHB strength criterion limit equilibrium method stress function on slip surface stress constraint conditions at both ends of slip surface
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Influence of joint spacing and rock characteristics on the toppling stability of cut rock slope through a simplified limit equilibrium method
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作者 ZHANG Xue-peng JIANG Yu-jing +6 位作者 DU Yan WANG Ke-peng CAI Yue WANG Xing-da SU Hang GOLSANAMI Naser LIU Bao-guo 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2694-2702,共9页
Toppling failure of rock mass/soil slope is an important geological and environmental problem.Clarifying its failure mechanism under different conditions has great significance in engineering.The toppling failure of a... Toppling failure of rock mass/soil slope is an important geological and environmental problem.Clarifying its failure mechanism under different conditions has great significance in engineering.The toppling failure of a cutting slope occurred in a hydropower station in Kyushu,Japan illustrates that the joint characteristic played a significant role in the occurrence of rock slope tipping failure.Thus,in order to consider the mechanical properties of jointed rock mass and the influence of geometric conditions,a simplified analytical approach based on the limit equilibrium method for modeling the flexural toppling of cut rock slopes is proposed to consider the influence of the mechanical properties and geometry condition of jointed rock mass.The theoretical solution is compared with the numerical solution taking Kyushu Hydropower Station in Japan as one case,and it is found that the theoretical solution obtained by the simplified analysis method is consistent with the numerical analytical solution,thus verifying the accuracy of the simplified method.Meanwhile,the Goodman-Bray approach conventionally used in engineering practice is improved according to the analytical results.The results show that the allowable slope angle may be obtained by the improved Goodman-Bray approach considering the joint spacing,the joint frictional angle and the tensile strength of rock mass together. 展开更多
关键词 slope stability flexural toppling rock slope simplified limit equilibrium method
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Centers and Limit Cycles for a Class of Three-dimensional Cubic Kukles Systems
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作者 Liang Kunjian Huang Zhanghan Huang Wentao 《数学理论与应用》 2024年第4期31-44,共14页
In this paper the centers and limit cycles for a class of three-dimensional cubic Kukles systems are investigated.First,by calculating and analyzing the common zeros of the first ten singular point quantities,the nece... In this paper the centers and limit cycles for a class of three-dimensional cubic Kukles systems are investigated.First,by calculating and analyzing the common zeros of the first ten singular point quantities,the necessary conditions for the origin being a center on the center manifold are derived,and furthermore,the sufficiency of those conditions is proved using the Darboux integrating method.Then,by calculating and analyzing the common zeros of the first three period constants,the necessary and sufficient conditions for the origin being an isochronous center on the center manifold are given.Finally,by proving the linear independence of the first ten singular point quantities,it is demonstrated that the system can bifurcate ten small-amplitude limit cycles near the origin under a suitable perturbation,which is a new lower bound for the number of limit cycles around a weak focus in a three-dimensional cubic system. 展开更多
关键词 three-dimensional Kukles system Singular point quantity limit cycle Center Darboux integrating method
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LOWER BOUND LIMIT ANALYSIS OF THREE-DIMENSIONAL ELASTOPLASTIC STRUCTURES BY BOUNDARY ELEMENT METHOD 被引量:1
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作者 刘应华 张晓峰 岑章志 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2003年第12期1466-1474,共9页
Based on the lower bound theorem of limit analysis, a solution procedure for limit analysis of three_dimensional elastoplastic structures was established using conventional boundary element method (BEM). The elastic s... Based on the lower bound theorem of limit analysis, a solution procedure for limit analysis of three_dimensional elastoplastic structures was established using conventional boundary element method (BEM). The elastic stress field for lower bound limit analysis was computed directly by three_dimensional boundary element method (3_D BEM). The self_equilibrium stress field was constructed by the linear combination of several self_equilibrium “basis vectors” which can be computed by elastic_plastic incremental iteration of 3_D BEM analysis. The lower bound limit analysis problem was finally reduced to a series of nonlinear programming sub_problems with relatively few optimal variables. The complex method was used to solve the nonlinear programming sub_problems. The numerical results show that the present solution procedure has good accuracy and high efficiency. 展开更多
关键词 BEM lower bound limit analysis self-equilibrium stress field nonlinear programming complex method
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Overhanging rock slope by design:An integrated approach using rock mass strength characterisation,large-scale numerical modelling and limit equilibrium methods 被引量:10
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作者 Paul Schlotfeldt Davide Elmo Brad Panton 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第1期72-90,共19页
Overhanging rock slopes(steeper than 90°) are typically avoided in rock engineering design, particularly where the scale of the slope exceeds the scale of fracturing present in the rock mass. This paper highlight... Overhanging rock slopes(steeper than 90°) are typically avoided in rock engineering design, particularly where the scale of the slope exceeds the scale of fracturing present in the rock mass. This paper highlights an integrated approach of designing overhanging rock slopes where the relative dimensions of the slope exceed the scale of fracturing and the rock mass failure needs to be considered rather than kinematic release of individual blocks. The key to the method is a simplified limit equilibrium(LE) tool that was used for the support design and analysis of a multi-faceted overhanging rock slope. The overhanging slopes required complex geometries with constantly changing orientations. The overhanging rock varied in height from 30 m to 66 m. Geomechanical modelling combined with discrete fracture network(DFN)representation of the rock mass was used to validate the rock mass strength assumptions and the failure mechanism assumed in the LE model. The advantage of the simplified LE method is that buttress and support design iterations(along with sensitivity analysis of design parameters) can be completed for various cross-sections along the proposed overhanging rock sections in an efficient manner, compared to the more time-intensive, sophisticated methods that were used for the initial validation. The method described presents the development of this design tool and assumptions made for a specific overhanging rock slope design. Other locations will have different geological conditions that can control the potential behaviour of rock slopes, however, the approach presented can be applied as a general guiding design principle for overhanging rock cut slope. 展开更多
关键词 Rock slopes Discrete fracture network(DFN) Rock mass strength characterisation Numerical modelling limit equilibrium(LE) methods
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Lateral Bearing Capacity of Modified Suction Caissons Determined by Using the Limit Equilibrium Method 被引量:6
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作者 LI Da-yong MA Shi-li +1 位作者 ZHANG Yu-kun CHEN Fu-quan 《China Ocean Engineering》 SCIE EI CSCD 2018年第4期461-466,共6页
The modified suction caisson(MSC) adds a short-skirted structure around the regular suction caissons to increase the lateral bearing capacity and limit the deflection. The MSC is suitable for acting as the offshore wi... The modified suction caisson(MSC) adds a short-skirted structure around the regular suction caissons to increase the lateral bearing capacity and limit the deflection. The MSC is suitable for acting as the offshore wind turbine foundation subjected to larger lateral loads compared with the imposed vertical loads. Determination of the lateral bearing capacity is a key issue for the MSC design. The formula estimating the lateral bearing capacity of the MSC was proposed in terms of the limit equilibrium method and was verified by the test results. Parametric studies on the lateral bearing capacity were also carried out. It was found that the lateral bearing capacity of the MSC increases with the increasing length and radius of the external skirt, and the lateral bearing capacity increases linearly with the increasing coefficient of subgrade reaction. The maximum lateral bearing capacity of the MSC is attained when the ratio of the radii of the internal compartment to the external skirt equals 0.82 and the ratio of the lengths of the external skirt to the internal compartment equals 0.48, provided that the steel usage of the MSC is kept constant. 展开更多
关键词 modified suction caissons(MSCs) lateral bearing capacity limit equilibrium method parametric studies
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A Generalized Limit Equilibrium Method for the Solution of Active Earth Pressure on a Retaining Wall 被引量:11
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作者 OUYANG Chao-jun XU Qiang +2 位作者 HE Si-ming LUO Yu WU Yong 《Journal of Mountain Science》 SCIE CSCD 2013年第6期1018-1027,共10页
In this paper, a generalized limit equilibrium method of solving the active earth pressure problem behind a retaining wall is proposed.Differing from other limit equilibrium methods, an arbitrary slip surface shape wi... In this paper, a generalized limit equilibrium method of solving the active earth pressure problem behind a retaining wall is proposed.Differing from other limit equilibrium methods, an arbitrary slip surface shape without any assumptions of pre-defined shapes is needed in the current framework, which is verified to find the most probable failure slip surface. Based on the current computational framework, numerical comparisons with experiment, discrete element method and other methods are carried out. In addition, the influences of the inclination of the wall, the soil cohesion, the angle of the internal friction of the soil, the slope inclination of the backfill soil on the critical pressure coefficient of the soil, the point of application of the resultant earth pressure and the shape of the slip surface are also carefully investigated. The results demonstrate that limit equilibrium solution from predefined slip plane assumption, including Coulomb solution, is a special case of current computational framework. It is well illustrated that the current method is feasible to evaluate the characteristics of earth pressure problem. 展开更多
关键词 limit equilibrium method Retainingwall Active earth pressure Critical slip surface
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Comprehensive analysis of slope stability and determination of stable slopes in the Chador-Malu iron ore mine using numerical and limit equilibrium methods 被引量:18
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作者 ATAEI M BODAGHABADI S 《Journal of China University of Mining and Technology》 2008年第4期488-493,共6页
One of the critical aspects in mine design is slope stability analysis and the determination of stable slopes. In the Chador- Malu iron ore mine, one of the most important iron ore mines in central Iran, it was consid... One of the critical aspects in mine design is slope stability analysis and the determination of stable slopes. In the Chador- Malu iron ore mine, one of the most important iron ore mines in central Iran, it was considered vital to perform a comprehensive slope stability analysis. At first, we divided the existing rock hosting pit into six zones and a geotechnical map was prepared. Then, the value of MRMR (Mining Rock Mass Rating) was determined for each zone. Owing to the fact that the Chador-Malu iron ore mine is located in a highly tectonic area and the rock mass completely crushed, the Hoek-Brown failure criterion was found suitable to estimate geo-mechanical parameters. After that, the value of cohesion (c) and friction angle (tp) were calculated for different geotechnical zones and relative graphs and equations were derived as a function of slope height. The stability analyses using numerical and limit equilibrium methods showed that some instability problems might occur by increasing the slope height. Therefore, stable slopes for each geotechnical zone and prepared sections were calculated and presented as a function of slope height. 展开更多
关键词 slope stability limit equilibrium method numerical method rock mass classification
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A Method Combining Numerical Analysis and Limit Equilibrium Theory to Determine Potential Slip Surfaces in Soil Slopes 被引量:6
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作者 XIAO Shiguo YAN Liping CHENG Zhiqiang 《Journal of Mountain Science》 SCIE CSCD 2011年第5期718-727,共10页
This paper describes a precise method combining numerical analysis and limit equilibrium theory to determine potential slip surfaces in soil slopes. In this method, the direction of the critical slip surface at any po... This paper describes a precise method combining numerical analysis and limit equilibrium theory to determine potential slip surfaces in soil slopes. In this method, the direction of the critical slip surface at any point in a slope is determined using the Coulomb’s strength principle and the extremum principle based on the ratio of the shear strength to the shear stress at that point. The ratio, which is considered as an analysis index, can be computed once the stress field of the soil slope is obtained. The critical slip direction at any point in the slope must be the tangential direction of a potential slip surface passing through the point. Therefore, starting from a point on the top of the slope surface or on the horizontal segment outside the slope toe, the increment with a small distance into the slope is used to choose another point and the corresponding slip direction at the point is computed. Connecting all the points used in the computation forms a potential slip surface exiting at the starting point. Then the factor of safety for any potential slip surface can be computed using limit equilibrium method like Spencer method. After factors of safety for all the potential slip surfaces are obtained, the minimum one is the factor of safety for the slope and the corresponding potential slip surface is the critical slip surface of the slope. The proposed method does not need to pre-assume the shape of potential slip surfaces. Thus it is suitable for any shape of slip surfaces. Moreover the method is very simple to be applied. Examples are presented in this paper to illustrate the feasibility of the proposed method programmed in ANSYS software by macro commands. 展开更多
关键词 Soil slope Stress field Potential slip surface Slope stability Factor of safety Numerical analysis limit equilibrium method ANSYS software
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Limit equilibrium method for slope stability based on assumed stress on slip surface 被引量:2
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作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2972-2983,共12页
In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-... In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-C) strength criterion and the initial normal stress without considering the inter-slice(or inter-column) forces, the normal and shear stresses on the slip surface are assumed using some dimensionless variables, and these variables have the same numbers with the force and moment equilibrium equations of a sliding body to establish easily the linear equation groups for solving them. After these variables are determined, the normal stresses, shear stresses, and slope safety factor are also obtained using the stresses assumptions and M-C strength criterion. In the case of a three-dimensional slope stability analysis, three calculation methods, namely, a non-strict method, quasi-strict method, and strict method, can be obtained by satisfying different force and moment equilibrium conditions. Results of the comparison in the classic two- and three-dimensional slope examples show that the slope safety factors calculated using the current method and the other limit equilibrium methods are approximately equal to each other, indicating the feasibility of the current method; further, the following conclusions are obtained: 1) The current method better amends the initial normal and shear stresses acting on the slip surface, and has the identical results with using simplified Bishop method, Spencer method, and Morgenstern-Price(M-P) method; however, the stress curve of the current method is smoother than that obtained using the three abovementioned methods. 2) The current method is suitable for analyzing the two- and three-dimensional slope stability. 3) In the three-dimensional asymmetric sliding body, the non-strict method yields safer solutions, and the results of the quasi-strict method are relatively reasonable and close to those of the strict method, indicating that the quasi-strict method can be used to obtain a reliable slope safety factor. 展开更多
关键词 two-dimensional slope three-dimensional slope limit equilibrium analysis normal stress shear stress safety factor
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Probabilistic Analysis of Slope Using Finite Element Approach and Limit Equilibrium Approach around Amalpata Landslide of West Central, Nepal
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作者 Mahendra Acharya Khomendra Bhandari +2 位作者 Sandesh Dhakal Aasish Giri Prabin Kafle 《International Journal of Geosciences》 CAS 2024年第5期416-432,共17页
The stability study of the ongoing and recurring Amalpata landslide in Baglung in Nepal’s Gandaki Province is presented in this research. The impacted slope is around 200 meters high, with two terraces that have diff... The stability study of the ongoing and recurring Amalpata landslide in Baglung in Nepal’s Gandaki Province is presented in this research. The impacted slope is around 200 meters high, with two terraces that have different slope inclinations. The lower bench, located above the basement, consistently fails and sets others up for failure. The fluctuating water level of the slope, which travels down the slope masses, exacerbates the slide problem. The majority of these rocks are Amalpata landslide area experiences several structural disruptions. The area’s stability must be evaluated in order to prevent and control more harm from occurring to the nearby agricultural land and people living along the slope. The slopes’ failures increase the damages of house existing in nearby area and the erosion of the slope. Two modeling techniques the finite element approach and the limit equilibrium method were used to simulate the slope. The findings show that, in every case, the terrace above the basement is where the majority of the stress is concentrated, with a safety factor of near unity. Using probabilistic slope stability analysis, the failure probability was predicted to be between 98.90% and 100%. 展开更多
关键词 Finite Element Approach limit equilibrium method SLOPE Factor of Safety
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GIS-based 3D limit equilibrium analysis for design optimization of a 600 m high slope in an open pit mine 被引量:4
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作者 Meifeng Cai Mowen Xie Chunlei Li 《Journal of University of Science and Technology Beijing》 CSCD 2007年第1期1-5,共5页
Combining the GIS (geographic information systems) grid-based data with four proposed column-based 3D slope stability analysis models, a comprehensive solution of a high-steep open-pit slope has been obtained. For s... Combining the GIS (geographic information systems) grid-based data with four proposed column-based 3D slope stability analysis models, a comprehensive solution of a high-steep open-pit slope has been obtained. For six searching ranges, 19 critical slip surfaces of different sizes have been studied, in which the minimum 3D safety factor is 1.33. Comparison of 3D safety factors of designed and proposed slope plans shows for all the critical slip surfaces for the proposed plan, the smallest 3D safety factor is 1.33 under the most unfavorable condition. This means that the proposed plan of the high slopes, about 600 m, of an open pit (2-5° steeper than designed plan) is feasible. 展开更多
关键词 three-dimensional slope stability limit equilibrium equation geographic information systems (GIS) high slope deep open-pit
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Three-dimensional critical slip surface locating and slope stability assessment for lava lobe of Unzen volcano 被引量:1
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作者 Mowen Xie,Zengfu Wang,Xiangyu Liu,Bo Xu School of Civil and Environmental Engineering,University of Science and Technology Beijing,Beijing,100083,China 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE 2011年第1期82-89,共8页
Even Unzen volcano has been declared to be in a state of relative dormancy,the latest formed lava lobe No.11 now represents a potential slope failure mass based on the latest research.This paper concentrates on the st... Even Unzen volcano has been declared to be in a state of relative dormancy,the latest formed lava lobe No.11 now represents a potential slope failure mass based on the latest research.This paper concentrates on the stability of the lava lobe No.11 and its possible critical sliding mass.It proposes geographic information systems (GIS) based three-dimensional (3D) slope stability analysis models.It uses a 3D locating approach to identify the 3D critical slip surface and to analyze the 3D stability of the lava lobe No.11.At the same time,the new 3D approach shows the effectiveness in selecting the range of the Monte Carlo random variables and locating the critical slip surface in different parts of the lava lobe No.11.The results are very valuable for judging the stability of the lava lobe and assigning the monitoring equipments. 展开更多
关键词 three-dimensional (3D) slope stability limit equilibrium equation Unzen volcano lava lobe geographic information systems (GIS)
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危岩体稳定性分析的三维极限平衡法 被引量:1
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作者 苏国韶 刘本朝 +1 位作者 刘友能 范秋雁 《金属矿山》 北大核心 2025年第1期72-80,共9页
针对二维极限平衡法不完全适用于三维危岩体稳定性分析的问题,根据极限平衡理论,考虑结构面宽度方向两侧贯通程度不一致时危岩体具有侧向扭转倾向的情况,提出了一种改进的危岩稳定性分析的三维极限平衡法。该方法通过对危岩体主控结构... 针对二维极限平衡法不完全适用于三维危岩体稳定性分析的问题,根据极限平衡理论,考虑结构面宽度方向两侧贯通程度不一致时危岩体具有侧向扭转倾向的情况,提出了一种改进的危岩稳定性分析的三维极限平衡法。该方法通过对危岩体主控结构面进行拉伸拓展,得到三维计算简图,进而对三维计算简图进行受力分析,计算其抗滑(扭)力(矩)和滑动(扭转)力(矩)的比值,得出了滑移式、坠落式和倾倒式3类危岩相应的稳定性系数计算公式,依据所提公式与数值模拟分析了侧向贯通率及上部贯通率对危岩稳定性的影响。研究表明:随着侧向贯通率及上部贯通率增大,危岩体稳定性呈下降趋势。相较于传统的二维极限平衡法,所提方法计算精度更高,计算相对误差降低了50%以上,并且能够同时适用于主控结构面竖向与侧向完全贯通条件与不完全贯通条件下的危岩稳定性分析,有效解决了现行规范推荐的二维极限平衡法无法考虑主控结构面侧向贯通影响的问题,扩展了二维极限平衡分析方法的适用范围,丰富了危岩稳定性分析理论。 展开更多
关键词 危岩 崩塌 稳定性系数 极限平衡法
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卸荷损伤效应下开挖边坡稳定性极限平衡分析 被引量:2
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作者 邓东平 石柱 彭文耀 《工程地质学报》 北大核心 2025年第1期327-340,共14页
边坡开挖卸荷在一定程度上会引起坡体内岩土体强度产生损伤,进而影响到开挖边坡稳定性。当前,边坡工程开挖滑塌事故频有发生,而较少研究关注卸荷损伤效应下开挖边坡稳定性分析。在此,基于简单的线性模型,建立开挖卸荷效应下边坡滑面岩... 边坡开挖卸荷在一定程度上会引起坡体内岩土体强度产生损伤,进而影响到开挖边坡稳定性。当前,边坡工程开挖滑塌事故频有发生,而较少研究关注卸荷损伤效应下开挖边坡稳定性分析。在此,基于简单的线性模型,建立开挖卸荷效应下边坡滑面岩土体强度参数计算公式。进而,结合极限平衡推力法,引入迭代计算策略,实现边坡安全系数反馈与滑面强度参数更新之间的交互计算,达到卸荷损伤效应下开挖边坡稳定性分析的目的,为工程边坡开挖过程中安全状态评估提供科学依据。此后,经3种不同类型开挖边坡算例对比分析,验证了本文方法的可行性。研究表明,开挖卸荷损伤明显降低开挖后边坡稳定性,且边坡破坏形态可能会演变成近坡面的浅层失效。 展开更多
关键词 开挖边坡稳定性 卸荷损伤 滑面强度参数 极限平衡推力法 安全系数 滑动面
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考虑场地效应的多点地震动作用下边坡永久位移分析
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作者 宋健 潘驭航 +3 位作者 陆朱汐 姬建 张飞 高玉峰 《岩土工程学报》 EI CAS 北大核心 2025年第1期65-75,共11页
地震动引起的边坡土层非线性动力响应可能导致坡体不同位置的地震动加速度时程不一致,从而对整个滑动体的极限平衡状态及之后的地震累积永久位移产生影响。为了研究场地效应对边坡地震永久位移的影响,基于极限平衡条分法,通过对不同土... 地震动引起的边坡土层非线性动力响应可能导致坡体不同位置的地震动加速度时程不一致,从而对整个滑动体的极限平衡状态及之后的地震累积永久位移产生影响。为了研究场地效应对边坡地震永久位移的影响,基于极限平衡条分法,通过对不同土条赋予不同的水平和竖向地震动时程,推导出一种考虑场地效应的圆弧和任意形状滑面的多点地震作用下边坡永久位移分析方法。通过与有限差分软件FLAC的数值模拟结果进行对比,验证了该方法能够合理考虑地震动的场地效应。通过研究不同分布形式的多点地震动及竖向地震动对边坡永久位移的影响,结果表明:场地效应引起的水平地震动放大以及多点地震动不同分布模式会导致整个滑体平均地震惯性力作用位置发生改变,从而影响地震作用下滑动体沿滑面的永久变形量,竖向地震动对边坡地震位移影响较小。将方法应用于Lexington土石坝震后变形案例分析,计算得到的坝坡地震永久位移与实际震后观测值相吻合,证明了考虑场地效应的重要性及本文方法的合理性。 展开更多
关键词 地震边坡稳定性 场地效应 永久位移 极限平衡条分法 多点地震动
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浅圆仓地震侧压力计算公式推导与分析
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作者 张国祥 曾荣 《地震工程学报》 北大核心 2025年第1期33-40,共8页
仓壁侧压力是浅圆仓抗震设计的重要参数,在规范中没有给出确切的浅圆仓仓壁地震侧压力的理论计算公式。对此,基于极限平衡法,将浅圆仓看作特殊的曲线挡墙,取单位弧长的滑动楔体为研究对象,采用拟静力法与旋转地震角法简化地震力以进行... 仓壁侧压力是浅圆仓抗震设计的重要参数,在规范中没有给出确切的浅圆仓仓壁地震侧压力的理论计算公式。对此,基于极限平衡法,将浅圆仓看作特殊的曲线挡墙,取单位弧长的滑动楔体为研究对象,采用拟静力法与旋转地震角法简化地震力以进行极限平衡分析,并推导出浅圆仓锥堆与平堆工况下的地震侧压力计算公式。通过算例分析,比较满仓状态下地震侧压力的实测数据值及理论计算值,初步验证公式的正确性。对地震侧压力进行数值模拟与参数分析,结果表明模型拟合效果良好,仓壁摩擦力影响较大,在计算中不可忽视;在平堆工况下半径取值对大直径浅圆仓地震侧压力的影响较小,可将其简化为直线挡墙计算。研究成果可为完善筒仓规范中地震侧压力的计算推导提供一定的参考依据。 展开更多
关键词 浅圆仓 极限平衡法 滑动楔体 地震侧压力 拟静力法 旋转地震角法
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浅埋砂土地层盾构带压进舱施工作业开挖面稳定性研究
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作者 葛俊 《城市轨道交通研究》 北大核心 2025年第1期92-96,共5页
[目的]解决浅埋砂土地层盾构带压进舱施工作业过程中开挖面稳定性问题。[方法]综合采用数值模拟、理论解析和工程验证的方法对盾构带压进舱施工作业过程中的极限支护压力进行研究。首先,采用数值模拟方法对浅埋砂土地层主动破坏现象进... [目的]解决浅埋砂土地层盾构带压进舱施工作业过程中开挖面稳定性问题。[方法]综合采用数值模拟、理论解析和工程验证的方法对盾构带压进舱施工作业过程中的极限支护压力进行研究。首先,采用数值模拟方法对浅埋砂土地层主动破坏现象进行研究,得到了相应的极限支护压力和破坏区形状;然后,基于数值模拟结果,构建了适用于浅埋砂土地层的破坏模式,并求解了相应的极限支护压力;最后,将本模型应用于杭州地铁5号线工程的盾构带压进舱施工作业,并对地面沉降情况进行了监测。[结果及结论]极限支护压力随着埋深的增大近似线性增大,随着内摩擦角的增大近似指数形式减小;失稳模式浅埋砂土地层呈现下部楔形体和上部倒圆台的形状,其中上部破坏区进一步分为破坏核心区和扰动区;通过与数值模型、文献模型对比发现,所提出的楔形体+倒圆台组合破坏模式能较好地描述因浅埋砂土地层无法成拱而导致破坏区可达地面的现象;杭州地铁5号线工程盾构带压进舱施工作业过程中,引起地面最大沉降值为9.5 mm,影响范围为隧道轴线两侧10 m范围内。 展开更多
关键词 地铁 浅埋隧道 砂土地层 盾构 带压进舱 开挖面稳定性 极限平衡法
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考虑周边岩体约束的危岩体稳定性分析极限平衡法
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作者 苏国韶 张吉祥 +1 位作者 刘友能 王钧沐 《人民珠江》 2025年第1期69-77,共9页
现行规范在复杂形态危岩体稳定性分析方面存在缺乏同时考虑多个结构面影响的局限性。基于复杂形态危岩体的特点及三维离散元计算的剪应力分布情况,对现有极限平衡法进行了改进,对于规范中由上缘结构面控制的坠落式与由下缘面结构控制的... 现行规范在复杂形态危岩体稳定性分析方面存在缺乏同时考虑多个结构面影响的局限性。基于复杂形态危岩体的特点及三维离散元计算的剪应力分布情况,对现有极限平衡法进行了改进,对于规范中由上缘结构面控制的坠落式与由下缘面结构控制的滑移式危岩,均添加了对危岩体后缘结构面约束作用的考虑,对双结构面滑移式危岩体则增加了后缘结构面裂隙水压影响。采用改进的极限平衡法对上述三类危岩进行了稳定性分析,通过与三维离散法的模拟结果进行对比,结果表明:改进后的公式在计算多结构面影响下的不同复杂形态危岩体稳定性系数时,相对误差仅为3.06%~9.10%,相对于规范推荐公式13.8%~14.7%的相对误差,计算精度明显提高。改进后的公式充分考虑到了危岩体的周边约束的特点,为极限平衡法解决复杂形态危岩体问题提供了新的途径。 展开更多
关键词 危岩 离散元 极限平衡法
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