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Upper-bound limit analysis based on the natural element method 被引量:5
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作者 Shu-Tao Zhou Ying-Hua Liu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第5期1398-1415,共18页
The natural element method (NEM) is a newly- developed numerical method based on Voronoi diagram and Delaunay triangulation of scattered points, which adopts natural neighbour interpolation to construct trial functi... The natural element method (NEM) is a newly- developed numerical method based on Voronoi diagram and Delaunay triangulation of scattered points, which adopts natural neighbour interpolation to construct trial functions in the framework of Galerkin method. Owing to its distinctive advantages, the NEM is used widely in many problems of computational mechanics. Utilizing the NEM, this paper deals with numerical limit analysis of structures made up of perfectly rigid-plastic material. According to kinematic the- orem of plastic limit analysis, a mathematical programming natural element formulation is established for determining the upper bound multiplier of plane problems, and a direct iteration algorithm is proposed accordingly to solve it. In this algorithm, the plastic incompressibility condition is handled by two different treatments, and the nonlinearity and nons- moothness of the goal function are overcome by distinguishing the rigid zones from the plastic zones at each iteration. The procedure implementation of iterative process is quite simple and effective because each iteration is equivalent to solving an associated elastic problem. The obtained limit load multiplier is proved to monotonically converge to the upper bound of true solution. Several benchmark examples are investigated to validate the significant performance of the NEM in the application field of limit analysis. 展开更多
关键词 upper bound limit analysis Meshless methodNatural neighbour interpolation Natural element methodMathematical programming Iteration algorithm
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Three-dimensional upper bound limit analysis of underground cavities using nonlinear Baker failure criterion 被引量:7
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作者 Zhi-zhen LIU Ping CAO +2 位作者 Hang LIN Jing-jing MENG Yi-xian WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第7期1916-1927,共12页
A generalized nonlinear Baker failure criterion is employed with the upper bound limit analysis to study the surrounding rock stability of underground cavities. A three-dimensional(3D) failure mode is established by e... A generalized nonlinear Baker failure criterion is employed with the upper bound limit analysis to study the surrounding rock stability of underground cavities. A three-dimensional(3D) failure mode is established by extending the two-dimensional(2D) failure mode, which offers an upper bound expression of the surrounding rock pressure. This method is validated with a series of examples before the influence of four parameters of scale parameter, curvature parameter, shift parameter and lateral pressure coefficient, on the surrounding rock pressure is analyzed. According to these results, failure ranges of the underground cavities are determined. The following conclusions are reached:(1) the proposed approach is more accurate to predict surrounding rock pressure than the Mohr-Coulomb failure criterion;(2) the surrounding rock with large scale parameter, curvature parameter, shift parameter, and lateral pressure coefficient can lead to a more stable underground cavity;(3) the failure range in 3D mode can be predicted according to the upper bound solutions. 展开更多
关键词 Baker failure criterion underground cavity surrounding rock pressure 3D failure mode upper bound limit analysis
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Combined influence of nonlinearity and dilation on slope stability evaluated by upper-bound limit analysis 被引量:7
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作者 TANG Gao-peng ZHAO Lian-heng +1 位作者 LI Liang CHEN Jing-yu 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第7期1602-1611,共10页
The combined influence of nonlinearity and dilation on slope stability was evaluated using the upper-bound limit analysis theorem.The mechanism of slope collapse was analyzed by dividing it into arbitrary discrete soi... The combined influence of nonlinearity and dilation on slope stability was evaluated using the upper-bound limit analysis theorem.The mechanism of slope collapse was analyzed by dividing it into arbitrary discrete soil blocks with the nonlinear Mohr–Coulomb failure criterion and nonassociated flow rule.The multipoint tangent(multi-tangent) technique was used to analyze the slope stability by linearizing the nonlinear failure criterion.A general expression for the slope safety factor was derived based on the virtual work principle and the strength reduction technique,and the global slope safety factor can be obtained by the optimization method of nonlinear sequential quadratic programming.The results show better agreement with previous research result when the nonlinear failure criterion reduces to a linear failure criterion or the non-associated flow rule reduces to an associated flow rule,which demonstrates the rationality of the presented method.Slope safety factors calculated by the multi-tangent inclined-slices technique were smaller than those obtained by the traditional single-tangent inclined-slices technique.The results show that the multi-tangent inclined-slices technique is a safe and effective method of slope stability limit analysis.The combined effect of nonlinearity and dilation on slope stability was analyzed,and the parameter analysis indicates that nonlinearity and dilation have significant influence on the result of slope stability analysis. 展开更多
关键词 SLOPE stability analysis nonlinear failure criterion non-associated flow rule multipoint TANGENT technique upper-bound limit analysis THEOREM
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Upper bound limit analysis of roof collapse in shallow tunnels with arbitrary cross sections under condition of seepage force 被引量:4
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作者 杨小礼 覃长兵 《Journal of Central South University》 SCIE EI CAS 2014年第11期4338-4343,共6页
The analytical solutions for predicting the exact shape of collapse mechanisms in shallow tunnels with arbitrary excavation profiles were obtained by virtue of the upper bound theorem of limit analysis and variation p... The analytical solutions for predicting the exact shape of collapse mechanisms in shallow tunnels with arbitrary excavation profiles were obtained by virtue of the upper bound theorem of limit analysis and variation principle according to Hoek-Brown failure criterion. The seepage force was included in the upper bound limit analysis, and it was computed from the gradient of excess pore pressure distribution. The seepage was regarded as a work rate of external force. The numerical results of roof collapse in square and circular tunnels with different rock parameters were derived and discussed, which proves to be valid in comparison with the previous work. The influences of different parameters on the shape of collapsing blocks were also discussed. 展开更多
关键词 shallow tunnel collapse mechanism seepage force upper bound limit analysis Hoek-Brown failure criterion
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Upper Bound Limit Analysis of Anisotropic Soils
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作者 Chunguang Li Cuihua Li Cong Sun 《Computers, Materials & Continua》 SCIE EI 2020年第12期2607-2621,共15页
In this paper,a novel discretization method inσ-τspace is developed to calculate the upper bound limit loads and failure modes of anisotropic Mohr-Coulomb materials.To achieve this objective,the Mohr-Coulomb yield c... In this paper,a novel discretization method inσ-τspace is developed to calculate the upper bound limit loads and failure modes of anisotropic Mohr-Coulomb materials.To achieve this objective,the Mohr-Coulomb yield criterion is linearized inσ-τspace,which allows for upper bound solution of soils whose cohesion and friction coefficient varying with direction.The finite element upper limit analysis formulation using the modified anisotropic yield criterion is then developed.Several examples are given to illustrate the capability and effectiveness of the proposed numerical procedure for computing rigorous upper bounds for anisotropic soils. 展开更多
关键词 ANISOTROPY limit analysis upper bound finite element
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Upper bound analysis of ultimate pullout capacity of shallow 3-D circular plate anchors based on nonlinear Mohr-Coulomb failure criterion 被引量:8
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作者 ZHAO Lian-heng TAN Yi-gao +2 位作者 HU Shi-hong DENG Dong-ping YANG Xin-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2272-2288,共17页
Based on the nonlinear Mohr-Coulomb failure criterion and the associated flow rules,the three-dimensional(3-D)axisymmetric failure mechanism of shallow horizontal circular plate anchors that are subjected to the ultim... Based on the nonlinear Mohr-Coulomb failure criterion and the associated flow rules,the three-dimensional(3-D)axisymmetric failure mechanism of shallow horizontal circular plate anchors that are subjected to the ultimate pullout capacity(UPC)is determined.A derivative function of the projection function for projecting the 3-D axisymmetric failure surface on plane is deduced using the variation theory.By using difference principle,the primitive function of failure surface satisfying boundary condition and numerical solution to its corresponding ultimate pullout capacity function are obtained.The influences of nonlinear Mohr-Coulomb parameters on UPC and failure mechanism are studied.The result shows that UPC decreases with dimensionless parameter m and uniaxial tensile strength increases but increases when depth and radius of plate anchor,surface overload,initial cohesion,geomaterial density and friction angle increase.The failure surface is similar to a symmetrical spatial funnel,and its shape is mainly determined by dimensionless parameter m;the surface damage range expands with the increase of radius and depth of the plate anchor as well as initial cohesion but decreases with the increase of dimensionless parameter m and uniaxial tensile strength as well as geomaterial density.As the dimensionless parameter m=2.0,the numerical solution of UPC based on the difference principle is proved to be feasible and effective through the comparison with the exact solution.In addition,the comparison between solutions of UPC computed by variation method and those computed by upper bound method indicate that variation method outperforms upper bound method. 展开更多
关键词 shallow circular plate anchors ultimate pullout capacity variation analysis nonlinear Mohr-Coulomb failure criterion upper bound limit analysis
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Limit variation analysis of shallow rectangular tunnels collapsing with double-layer rock mass based on a three-dimensional failure mechanism 被引量:1
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作者 ZHAO Lian-heng HU Shi-hong +2 位作者 YANG Xin-ping HUANG Fu ZUO Shi 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1794-1806,共13页
In the framework of upper bound theorem of limit analysis, the progressive collapse of shallow rectangular tunnels with double-layer rock mass has been theoretically analyzed based on the three-dimensional (3D) veloci... In the framework of upper bound theorem of limit analysis, the progressive collapse of shallow rectangular tunnels with double-layer rock mass has been theoretically analyzed based on the three-dimensional (3D) velocity discontinuity surfaces. According to the virtual work principle, the difference theorem and the variation method, the collapse surface of double-layer rock mass is determined based on the Hoek-Brown failure criterion. The formula can be degenerated to a single-layer rock collapsing problem when the rock mass is homogeneous. To estimate the validity of the result, the numerical simulation software PLAXIS 3D is used to simulate the collapse of shallow tunnels with double-layer rock mass, and the comparative analysis shows that numerical results are in good agreement with upper-bound solutions. According to the results of parametric analysis, the potential range of collapse of a double-layer rock mass above a shallow cavity decreases with a decrease in A1/A2,σci1/σci2 and σtm1/σtm2 and an increase in B1/B2,γ1/γ2. The range will decrease with a decrease in support pressure q and increase with a decrease in surface overload σs. Therefore, reinforced supporting is beneficial to improve the stability of the cavity during actual construction. 展开更多
关键词 shallow tunnels three-dimensional collapse double-layer rock mass Hoek-Brown failure criterion variation analysis upper bound limit analysis
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Pseudo-dynamic viscoelastic stability analysis of anti-dip bedding rock slopes
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作者 Shixin Zhang Yufeng Wei +4 位作者 Yanling Liu Chunyu Chen Hao Yang Xin Zhang Peng Liang 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第3期1631-1645,共15页
Earthquakes contribute to the failure of anti-dip bedding rock slopes(ABRSs)in seismically active regions.The pseudo-static method is commonly employed to assess the ABRSs stability.However,simplifying seismic effects... Earthquakes contribute to the failure of anti-dip bedding rock slopes(ABRSs)in seismically active regions.The pseudo-static method is commonly employed to assess the ABRSs stability.However,simplifying seismic effects as static loads often underestimates rock slope stability.The development of a practical stability analysis approach for ABRSs,particularly in slope engineering design,is imperative.This study proposes a stability evaluation model for ABRSs,incorporating the viscoelastic properties of rock,to quantitatively assess the safety factor and failure surface under seismic conditions.The mathematical description of the pseudo-dynamic method,derived in this study,accounts for the viscoelastic properties of ABRSs and integrates the HoekeBrown failure criterion with the Kelvin-Voigt stress-strain relationship of rocks.Furthermore,to address concurrent translation-rotation failure in ABRSs,upper bound limit analysis is utilized to quantify the safety factor.Through a comparison with existing literature,the proposed method considers the effect of harmonic vibration on the stability of ABRSs.The obtained safety factor is lower than that of the quasi-static method,with the resulting percentage change exceeding 5%.The critical failure surface demonstrates superior positional accuracy compared to the Aydan and Adhikary basal planes,with minimal error observed between the physical model test and the numerical simulation test.The parameter sensitivity analysis reveals that the inclination of ABRSs exhibits the highest sensitivity(Sk)value across the three levels of horizontal seismic coefficient(kh).The study aims to devise an expeditious calculation approach for assessing the stability of ABRSs during seismic events,intending to offer theoretical guidance for their stability analysis. 展开更多
关键词 Anti-dip bedding rock slope Viscoelastic properties Pseudo-dynamic method upper bound limit analysis Kelvin-voigt model
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PLASTIC LIMIT ANALYSIS OF DISCONTINUOUS LINING UNDERGROUND PRESSURE
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作者 尤春安 《Journal of Coal Science & Engineering(China)》 1999年第1期50-55,共6页
Discontinuous lining is a special form of support in underground excavation. Based on the method of plastic limit analysis, it is found the upper and the lower bound solution of the pressure of circular discontinuous ... Discontinuous lining is a special form of support in underground excavation. Based on the method of plastic limit analysis, it is found the upper and the lower bound solution of the pressure of circular discontinuous lining and discussed support parameter of discontinuous lining and its applicable conditions , which provides theoretical basis for the design and calculation of discontinuous lining. 展开更多
关键词 discontinuous lining plastic limit analysis the upper and the lower bound theorem
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A new failure mechanism for deep cavity and upper bound solution of supporting pressure 被引量:4
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作者 张道兵 刘智振 张佳华 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2082-2091,共10页
The investigation of supporting pressure is of great significance to the design of underground structures.Based on the kinematical approach of limit analysis,an improved failure mechanism is proposed,and the supportin... The investigation of supporting pressure is of great significance to the design of underground structures.Based on the kinematical approach of limit analysis,an improved failure mechanism is proposed,and the supporting pressure is investigated for deep buried cavity.Three failure mechanisms are first introduced according to the existing failure mechanisms of geotechnical structures of limit analysis.A comparison with respect to the optimal failure mechanisms and the upper bound solutions provided among these three mechanisms are then conducted in an attempt to obtain the improved failure mechanism.The results provided by the improved failure mechanism are in good agreement with those by the existing method,the numerical solution and field monitoring,which demonstrates that the proposed failure mechanism is effective for the upper bound analysis of supporting pressure. 展开更多
关键词 deep cavity failure mechanism limit analysis upper bound solution
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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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Comparative study of material point method and upper bound limit analysis in slope stability analysis 被引量:2
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作者 Lianheng Zhao Nan Qiao +2 位作者 Zhigang Zhao Shi Zuo Xiang Wang 《Transportation Safety and Environment》 EI 2020年第1期44-57,共14页
The upper bound limit analysis(UBLA)is one of the key research directions in geotechnical engineering and is widely used in engineering practice.UBLA assumes that the slip surface with the minimum factor of safety(FSm... The upper bound limit analysis(UBLA)is one of the key research directions in geotechnical engineering and is widely used in engineering practice.UBLA assumes that the slip surface with the minimum factor of safety(FSmin)is the critical slip surface,and then applies it to slope stability analysis.However,the hypothesis of UBLA has not been systematically verified,which may be due to the fact that the traditional numerical method is difficult to simulate the large deformation.In this study,in order to systematically verify the assumption of UBLA,material point method(MPM),which is suitable to simulate the large deformation of continuous media,is used to simulate the whole process of the slope failure,including the large-scale transportation and deposition of soil mass after slope failure.And a series of comparative studies are conducted on the stability of cohesive slopes using UBLA and MPM.The proposed study indicated that the slope angle,internal friction angle and cohesion have a remarkable effect on the slip surface of the cohesive slope.Also,for stable slopes,the calculation results of the two are relatively close.However,for unstable slopes,the slider volume determined by the UBLA is much smaller than the slider volume determined by the MPM.In other words,for unstable slopes,the critical slip surface of UBLA is very different from the slip surface when the slope failure occurs,and when the UBLA is applied to the stability analysis of unstable slope,it will lead to extremely unfavorable results. 展开更多
关键词 slope stability critical slip surface LANDSLIDE upper bound limit analysis material point method
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极限上限分析的区域光滑径向点插值法 被引量:1
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作者 陈莘莘 胡英 +1 位作者 张玮 王方鑫 《应用数学和力学》 北大核心 2025年第6期791-799,共9页
基于极限分析的上限定理,建立了用区域光滑径向点插值法进行理想刚塑性结构极限分析的整套求解算法.为了能方便地施加本质边界条件,采用径向点插值法构造机动容许的速度场.通过引入广义梯度光滑技术,将复杂的域内积分转换为简单的光滑... 基于极限分析的上限定理,建立了用区域光滑径向点插值法进行理想刚塑性结构极限分析的整套求解算法.为了能方便地施加本质边界条件,采用径向点插值法构造机动容许的速度场.通过引入广义梯度光滑技术,将复杂的域内积分转换为简单的光滑域边界积分,避免了对形函数的求导.考虑了材料的塑性不可压条件,并针对平面应力和平面应变问题采用不同方式进行处理.将极限上限分析问题归结为满足一系列等式约束的塑性耗散功率最小化问题,从而可采用标准的二阶锥规划对该问题进行求解,这样既提高了求解效率,又提高了求解精度.数值算例结果表明,该文所提方法能对理想刚塑性结构的极限载荷乘子给出令人满意的结果,并且计算结果对网格畸变十分不敏感. 展开更多
关键词 无网格法 区域光滑径向点插值法 极限上限分析 广义梯度光滑技术 二阶锥规划
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考虑埋深的黏性回填挡墙抗震转动稳定性上限分析
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作者 李东阳 马志宏 +2 位作者 刘杰 尹吉丽 孙勃岩 《岩土工程学报》 北大核心 2025年第6期1181-1189,共9页
在挡土墙抗震稳定性的研究中,往往假定墙体的埋深为零,导致墙前回填土的作用被忽略。基于极限上限分析理论,考虑了埋深因素对黏性回填挡土墙抗震稳定性的影响。采用斜条分法,将墙前与墙后的回填土微分成平行于破裂面的刚性土条。建立了... 在挡土墙抗震稳定性的研究中,往往假定墙体的埋深为零,导致墙前回填土的作用被忽略。基于极限上限分析理论,考虑了埋深因素对黏性回填挡土墙抗震稳定性的影响。采用斜条分法,将墙前与墙后的回填土微分成平行于破裂面的刚性土条。建立了挡土墙绕墙趾转动,墙前与墙后填土分块滑动的墙-土系统。根据功-能平衡方程,推导了挡墙抗震加速度系数的表达式,讨论了地震作用下的填土高度、内摩擦角、填土黏聚力、墙-土摩擦角对挡土墙抗震转动稳定性的影响。结果表明:当墙前回填土高度与墙后回填土高度比值(H_(2)/H_(1))大于0.15时,地震屈服加速度系数将急剧增大,此时若忽略墙前回填土的作用则会低估挡土墙的抗震稳定性。最后,通过与极限平衡理论的方法进行对比,证实了该方法计算的准确性。 展开更多
关键词 挡土墙 极限上限理论 埋置深度 地震屈服加速度 转动稳定性
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滇西土质地层大跨公路隧道开挖面稳定性及开挖工法研究
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作者 张俊儒 马荐驰 +3 位作者 陈鹏涛 张思睿 颜志坚 冯冀蒙 《中国公路学报》 北大核心 2025年第9期242-254,共13页
大跨度公路隧道在软弱土质地层施工时,开挖面的稳定性问题一直是工程领域的关注重点。依托大(理)南(涧)高速公路五茂林隧道,建立考虑台阶虚拟支护力的对数螺旋线失稳破坏模型,对失稳段进行开挖面稳定性研究,并通过强度折减法及现场试验... 大跨度公路隧道在软弱土质地层施工时,开挖面的稳定性问题一直是工程领域的关注重点。依托大(理)南(涧)高速公路五茂林隧道,建立考虑台阶虚拟支护力的对数螺旋线失稳破坏模型,对失稳段进行开挖面稳定性研究,并通过强度折减法及现场试验验证工法转换有效性。结果表明:失稳段台阶虚拟支护力与维持稳定开挖面支护力所做功率比值仅为0.77,无法满足开挖面稳定性要求;随着隧道开挖跨度和进尺的增加,开挖面稳定系数显著下降;采用三台阶开挖时,开挖跨度由14m增至18m时,稳定系数降低了47.3%;开挖进尺从0.5m增至1.5m时,稳定系数降低了35.6%;针对不同土质地层,内摩擦角对于开挖面稳定性贡献大于黏聚力。数值模拟结果表明:采用三台阶七步法相较于三台阶法,开挖面最大挤出量和超前核心土预收敛变形分别降低了45.5%和48.2%,开挖安全系数由0.81提升至1.14,开挖面稳定性显著增强。现场试验表明:三台阶七步法实施后初支结构安全,拱顶沉降变形得到了有效控制。基于上述研究,建议滇西土质地层中隧道开挖跨度超过15m时,开挖工法由三台阶法转为三台阶七步法,通过预留核心土以确保施工安全与稳定性。 展开更多
关键词 隧道工程 大跨隧道 极限分析上限法 开挖面稳定性 安全系数
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融雪渗流作用下挡土墙转动稳定性分析
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作者 刘杰 白佳豪 苏靖海 《自然灾害学报》 北大核心 2025年第5期151-161,共11页
挡土墙顶部雪荷载以及融雪的渗入会对挡土墙的稳定性产生负面影响。基于极限分析上限定理,对墙后土体采用斜条分法,将墙后土体划分为无限个平行于滑裂面的刚性土条,并建立挡土墙转动破坏模型,将Green-Ampt渗流模型与雪荷载和融水渗透的... 挡土墙顶部雪荷载以及融雪的渗入会对挡土墙的稳定性产生负面影响。基于极限分析上限定理,对墙后土体采用斜条分法,将墙后土体划分为无限个平行于滑裂面的刚性土条,并建立挡土墙转动破坏模型,将Green-Ampt渗流模型与雪荷载和融水渗透的综合影响结合起来。运用极限分析上限定理,推导积雪影响的重力式挡土墙抗倾覆安全系数的最小上限解,并考虑了填土倾角α、墙-土界面摩擦角δ、渗流时间t以及含水量θ_(i)、θ_(s)等参数的影响。研究结果表明,随着渗流时间的增加,雪荷载逐渐减小,回填土中渗流水增加,挡土墙抗倾覆安全系数呈现先增大后减小的趋势。通过与数值模拟结果进行对比,验证了该文方法的有效性。 展开更多
关键词 极限分析上限法 挡土墙 降雪入渗 浸润锋 GREEN-AMPT模型
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非均质软土加筋路基三维稳定性极限上限分析
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作者 李林 孙砖芹 +1 位作者 张浩 朱云波 《哈尔滨工业大学学报》 北大核心 2025年第7期70-80,共11页
非均质软土地区路基的稳定性问题是岩土工程中的关键技术难点,为提升对其三维稳定性问题的评估能力,基于极限上限定理构建了非均质软土加筋路基的三维基底破坏机制,并依据虚功原理建立了相应的能量守恒方程。通过引入遗传算法,开发了一... 非均质软土地区路基的稳定性问题是岩土工程中的关键技术难点,为提升对其三维稳定性问题的评估能力,基于极限上限定理构建了非均质软土加筋路基的三维基底破坏机制,并依据虚功原理建立了相应的能量守恒方程。通过引入遗传算法,开发了一种用于高效求解三维上限解的搜索方法。该三维破坏模式可退化为边坡的三维坡趾破坏形式,并与已有边坡三维上限解进行对比,以验证遗传算法的准确性与计算效率。在此基础上,开展了参数敏感性分析,考察了路基分层特征、非饱和强度特性、抗剪强度非均质性、筋材抗拉强度、铺设层数以及基质吸力等因素对加筋路基三维稳定性的影响。结果表明:在三维基底破坏模式下,非饱和软土地基与路基之间的非均质系数比对稳定性具有提升作用,且该系数比越大,路基越稳定;在筋材抗拉强度不变的条件下,减小筋材间距会削弱基质吸力对稳定性的有利影响;当铺设层数一定时,非均质性越强,筋材增强稳定性的效果越显著。该三维稳定性分析方法可为加筋参数的优化配置和复杂地基条件下的路基设计提供可靠的计算工具和理论依据。 展开更多
关键词 加筋路基 非均质 遗传算法 上限分析 抗拉强度 铺设层数
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轴对称结构极限上限分析的完全边光滑有限元法
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作者 陈莘莘 张玮 胡英 《工程力学》 北大核心 2025年第12期26-33,共8页
根据极限分析的机动定理,该文建立了轴对称结构极限上限分析的完全边光滑有限元法。为了避免复杂的坐标映射和雅可比矩阵的计算,对形函数的偏导项和非偏导项分别采用光滑应变技术与光滑积分伪弱形式进行处理,从而将所有的域积分都转化... 根据极限分析的机动定理,该文建立了轴对称结构极限上限分析的完全边光滑有限元法。为了避免复杂的坐标映射和雅可比矩阵的计算,对形函数的偏导项和非偏导项分别采用光滑应变技术与光滑积分伪弱形式进行处理,从而将所有的域积分都转化为更为简单的边界积分。考虑了材料的不可压缩条件,并采用罚函数法将其引入。为了克服目标函数非光滑导致的计算困难,采用逐步识别刚性区和塑性区的方案,不断修正目标函数。数值算例结果表明:该文所提方法具有格式简单、计算效率高和收敛快等优点,并且对极度不规则单元同样可获得较高的计算精度。 展开更多
关键词 极限上限分析 轴对称结构 直接迭代算法 光滑有限元法 完全光滑技术
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双向起伏地表浅埋盾构隧道开挖面三维被动失稳极限支护压力上限解 被引量:1
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作者 钱伟丰 黄明 +2 位作者 曾子圣 王禹 胡艳峰 《应用基础与工程科学学报》 北大核心 2025年第1期273-288,共16页
海域吹填砂地层在自重固结作用下易产生差异沉降形成起伏地表,浅埋盾构隧道在该类地层掘进时开挖面常处于被动土压模式,传统开挖面稳定性理论分析模型欠缺对以上两类影响因素的综合考虑,亟需探索针对起伏地表情况下更为精确的开挖面被... 海域吹填砂地层在自重固结作用下易产生差异沉降形成起伏地表,浅埋盾构隧道在该类地层掘进时开挖面常处于被动土压模式,传统开挖面稳定性理论分析模型欠缺对以上两类影响因素的综合考虑,亟需探索针对起伏地表情况下更为精确的开挖面被动破坏分析模型.通过数值模拟研究了地表纵向坡度δ_(1)和横向坡度δ_(2)对极限支护压力和破坏区的影响,并根据数值模拟得到破坏区的范围.然后采用空间离散化技术,提出一种三维被动破坏模型,通过极限分析法推导了极限支护压力的上限解.分析结果表明:在实际工程中起伏地表双向坡度的影响不可忽略,地表纵向坡度δ_(1)比横向坡度δ_(2)对极限支护压力的影响更为明显;横向坡度δ_(2)对破坏区范围的影响比纵向坡度δ_(1)更为显著.最后,通过与数值模型和现有方法比较并结合工程实例验证,发现所提出的理论模型与数值模型模拟的结果更为接近.上述研究成果可为复杂地形下盾构法施工提供理论指导. 展开更多
关键词 浅埋盾构隧道 起伏地表 双向坡度 吹填砂地层 被动破坏 上限法分析
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黄土非均质多级高边坡稳定分析上限解
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作者 闫超 王红雨 +2 位作者 曹静 亢文涛 李其星 《武汉大学学报(工学版)》 北大核心 2025年第3期397-406,共10页
针对黄土高边坡天然水平分层和多级坡面的特点,构建了满足运动许可的2种破坏模式并推导出相应的功能平衡方程,采用强度折减技术进行边坡安全系数分析,并利用序列二次规划法进行边坡安全系数上限解寻优。以宁夏黄土丘陵地区妙岭750 kV变... 针对黄土高边坡天然水平分层和多级坡面的特点,构建了满足运动许可的2种破坏模式并推导出相应的功能平衡方程,采用强度折减技术进行边坡安全系数分析,并利用序列二次规划法进行边坡安全系数上限解寻优。以宁夏黄土丘陵地区妙岭750 kV变电站高边坡工程作为算例,进行安全系数上限解和影响因素的相关分析,同时利用极限分析有限元软件建立该工程高边坡数值模型,将模拟结果与边坡安全系数上限解进行了对比分析。结果表明:所构建破坏机制的上限解介于数值模拟上限解与下限解之间,优化后的上限解潜在危险滑移面与模拟结果相吻合;边坡安全系数分别与内摩擦角、台阶宽度近似呈线性变化,且随黏聚力比的增大而先增大后平稳;构建的2种机动许可破坏模式有各自的适用条件,否则会产生一定计算误差。 展开更多
关键词 极限分析上限解 破坏机制 非均质地层 多级边坡 安全系数
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