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Mechanical properties and failure behavior of rock with different flaw inclinations under coupled static and dynamic loads 被引量:31
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作者 XIAO Peng LI Di-yuan +3 位作者 ZHAO Guo-yan ZHU Quan-qi LIU Huan-xin ZHANG Chun-shun 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期2945-2958,共14页
The deep fissured rock mass is affected by coupled effects of initial ground stress and external dynamic disturbance.In order to study the effect of internal flaw on pre-stressed rock mechanical responses and failure ... The deep fissured rock mass is affected by coupled effects of initial ground stress and external dynamic disturbance.In order to study the effect of internal flaw on pre-stressed rock mechanical responses and failure behavior under impact loading,intact granite specimens and specimens with different flaw inclinations are tested by a modified split Hopkinson pressure bar(SHPB)and digital image correlation(DIC)method.The results show that peak strain and dynamic strength of intact specimens and specimens with different flaw angles(α)decrease with the increase of axial static pressure.The 90°flaw has weak reduction effect on peak strain,dynamic strength and combined strength,while 45°and 0°flaws have remarkable reduction effect.Specimens with 90°flaw are suffered combined shear and tensile failure under middle and low axial static pre-stresses,and suffered shear failure under high axial static pre-stresses.Specimens with 45°and 0°flaws are suffered oblique shear failure caused by pre-existing flaw under different axial static pre-stresses.Besides,based on digital image correlation method,it is found that micro-cracks before formation of macro fractures(include shear and tensile fractures)belong to tensile cracks.Tensile and shear strain localizations at pre-existing flaw tip for specimen with 45°and 0°flaws are produced much earlier than that at other positions. 展开更多
关键词 split Hopkinson pressure bar(SHPB)system digital image correlation(DIC) coupled static and dynamic loads FLAW crack propagation
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Numerical analysis of deformation and failure characteristics of deep roadway surrounding rock under static-dynamic coupling stress 被引量:29
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作者 WU Xing-yu JIANG Li-shuai +3 位作者 XU Xing-gang GUO Tao ZHANG Pei-peng HUANG Wan-peng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期543-555,共13页
In actual production,deep coal mine roadways are often under typical static-dynamic coupling stress(SDCS)conditions with high ground stress and strong dynamic disturbances.With the increasing number of disasters and a... In actual production,deep coal mine roadways are often under typical static-dynamic coupling stress(SDCS)conditions with high ground stress and strong dynamic disturbances.With the increasing number of disasters and accidents induced by SDCS conditions,the safe and efficient production of coal mines is seriously threatened.Therefore,it is of great practical significance to study the deformation and failure characteristics of the roadway surrounding rock under SDCS.In this paper,the effects of different in-situ stress fields and dynamic load conditions on the surrounding rock are studied by numerical simulations,and the deformation and failure characteristics are obtained.According to the simulation results,the horizontal stress,vertical stress and dynamic disturbance have a positive correlation with the plastic failure of the surrounding rock.Among these factors,the influence of the dynamic disturbance is the most substantial.Under the same stress conditions,the extents of deformation and plastic failure of the roof and ribs are always greater than those of the floor.The effect of horizontal stresses on the roadway deformation is more notable than that of vertical stresses.The results indicate that for the roadway under high-stress conditions,the in-situ stress test must be strengthened first.After determining the magnitude of the in-situ stress,the location of the roadway should be reasonably arranged in the design to optimize the mining sequence.For roadways that are strongly disturbed by dynamic loads,rock supports(rebar/cable bolts,steel set etc.)that are capable of maintaining their effectiveness without failure after certain dynamic loads are required.The results of this study contribute to understanding the characteristics of the roadway deformation and failure under SDCS,and can be used to provide a basis for the support design and optimization under similar geological and geotechnical circumstances. 展开更多
关键词 static-dynamic coupling stress(SDCS) deep roadway surrounding rock stability numerical simulation roadway deformation plastic failure of surrounding rock
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Dynamic response and failure behavior of rock under static-dynamic loading 被引量:7
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作者 陈枫 马春德 徐纪成 《Journal of Central South University of Technology》 2005年第3期354-358,共5页
Dynamic response and failure behavior of rock under static-dynamic loading were studied. The effects of initial static load on the total energy dissipated during the failure process of specimen were analyzed. To simul... Dynamic response and failure behavior of rock under static-dynamic loading were studied. The effects of initial static load on the total energy dissipated during the failure process of specimen were analyzed. To simulate the engineering situation that in-situ rock experienced and obtain the dynamic loading with an intermediate strain rate, a low cycle fatigue load with the frequency from 0.5 to 5 Hz was adopted by servo-controlled Instron material testing system. The results show that the obtained strain rate increase with the increase of load frequency. The initial static load has great influence on both the energy and dynamic response of rock. Both the energy and the maximum failure load P_f decreases with the increase of initial static load. P_f under the static-dynamic loading is larger than that under only the static loading but less than that under only the dynamic loading. The load-displacement curves become nonlinear as the pre-added static load reaches the transition point which is about one third of static strength. With the increase of initial static load, Young’s modulus decreases and poisson ratio increases. It shows that rock has a lower strength and a tendency to soften under a higher initial static load. Rock may be broken more easily static-dynamic loading than under only the dynamic loading. The proposed method is useful in the investigation of constitutive relationship and failure behavior of rock under quasi-dynamic loading. 展开更多
关键词 dynamic response ROCK static-dynamic loading strain rate
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Crack propagation mechanism of compression-shear rock under static-dynamic loading and seepage water pressure 被引量:12
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作者 周志华 曹平 叶洲元 《Journal of Central South University》 SCIE EI CAS 2014年第4期1565-1570,共6页
To reveal the water inrush mechanics of underground deep rock mass subjected to dynamic disturbance such as blasting, compression-shear rock crack initiation rule and the evolution of crack tip stress intensity factor... To reveal the water inrush mechanics of underground deep rock mass subjected to dynamic disturbance such as blasting, compression-shear rock crack initiation rule and the evolution of crack tip stress intensity factor are analyzed under static-dynamic loading and seepage water pressure on the basis of theoretical deduction and experimental research. It is shown that the major influence factors of the crack tip stress intensity factor are seepage pressure, dynamic load, static stress and crack angle. The existence of seepage water pressure aggravates propagation of branch cracks. With the seepage pressure increasing, the branch crack experiences unstable extension from stable propagation. The dynamic load in the direction of maximum main stress increases type I crack tip stress intensity factor and its influence on type II crack intensity factor is related with crack angle and material property. Crack initiation angle changes with the dynamic load. The initial crack initiation angle of type I dynamic crack fracture is 70.5°. The compression-shear crack initial strength is related to seepage pressure, confining pressure, and dynamic load. Experimental results verify that the initial crack strength increases with the confining pressure increasing, and decreases with the seepage pressure increasing. 展开更多
关键词 static-dynamic loading seepage pressure stress intensity factor initiation of crack
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Natural Frequency of the Bridge—Vehicle Coupled System Considering Uniform Distributed Moving Load
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作者 Zhang Jun Gou Mingkang Liang Chuan 《仪器仪表学报》 EI CAS CSCD 北大核心 2013年第S1期185-189,共5页
Natural frequencies of the bridge—vehicle coupling system considering uniform distributed load varying with position is investigated in this work.An analytic model of a simply supported beam bridge with constant sect... Natural frequencies of the bridge—vehicle coupling system considering uniform distributed load varying with position is investigated in this work.An analytic model of a simply supported beam bridge with constant section is introduced to establish the frequency equations of the coupled system.Comparisons with the results between analytic model and FEM indicate that the present research is correct and reasonable.In view of an example bridge,natural frequencies are studied on the bridge subjected to uniform distributed moving loads in cases of different weight and span,by which some regular phenomenon are obtained.The present study can apply in the engineering problem of interaction between bridges and moving loads such as trains and tracked vehicles. 展开更多
关键词 bridge-vehicle coupled system frequency analysis UNIFORM DISTRIBUTED MOVING load analytical model
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Finite element analysis of couple effect of soil displacement and axial load on single inclined pile 被引量:2
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS 2014年第9期3656-3664,共9页
The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite eleme... The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite element method. Parametric analyses including the degree of inclination and the distance between soil and pile are carried out herein. When the displacement of soil on the left side and right side of a pile is identical, deformation of a vertical pile and an inclined pile is highly close in both cases of surcharge load and uniform soil movement. When the couple effect of soil displacement and axial load occurs, settlement of an inclined pile is greater than that of a vertical pile under the same axial load, and bearing capacity of an inclined pile is smaller than that of a vertical pile. This is quite different from the case when the inclined pile is not affected by soil displacement. For inclined piles, P-Δ effect of axial load would lead to a large increase in bending moment, however, for the vertical pile, P-Δ effect of axial load can be neglected. Although the direction of inclination of piles is reverse, deformation of piles caused by uniform soil movement is totally the same. For the inclined piles discussed herein, bending moment(-8 m to-17 m under the ground) relies heavily on uniform soil movement and does not change during the process of applying axial load. When the thickness of soil is less than the pile length, the greater the thickness of soil, the larger the bending moment at lower part of the inclined pile. When the thickness of soil is larger than the pile length, bending moment at lower part of the inclined pile is zero. 展开更多
关键词 couple effect inclined pile surcharge load uniform soil movement axial load
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Study of the explosion load characteristics and structural response law under a cabin water mist environment: Experimental tests and simulations
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作者 Xiaobin Li Ya Zhang +4 位作者 Yiheng Zhang Hai Huang Zhiping Wang Xingxing Wu Wei Chen 《Defence Technology(防务技术)》 2025年第7期387-404,共18页
To investigate the explosion load characteristics and structural response law in a water mist environment in a cabin,explosion experiments are carried out.The weakening rates of the initial peak overpressure,quasistat... To investigate the explosion load characteristics and structural response law in a water mist environment in a cabin,explosion experiments are carried out.The weakening rates of the initial peak overpressure,quasistatic pressure and structural residual deflection increase with increasing working pressure of the water mist nozzle.Specifically,the weakening rate of the initial peak overpressure ranges from 7.8%to 31.0%,the quasistatic pressure weakening rate ranges from 29.2%to 41.0%,and the weakening rate of the center of the plate residual deflection ranges from 10.8%to 34.4%under the various working pressures of the nozzles.To further explore the effect of water mist explosion suppression,a method for three-dimensional numerical simulations of water mist weakening the explosion shock wave is established to explore the explosion load characteristics of the compartment and the bulkhead response law.On the basis of the dimension analysis method,empirical formulas are derived to predict the residual deflection thickness in the center of the bulkheads.These findings provide the fundamental basis for the appli-cation of water mist in anti-explosive protection. 展开更多
关键词 Cabin explosion Blast response Fluidesolid coupling load weakening Water mist suppression
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Catastrophe model and its experimental verification ofstatic loading rock system under impact load 被引量:2
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作者 左宇军 李夕兵 +3 位作者 王卫华 张义平 马春德 闫长斌 《Journal of Central South University of Technology》 EI 2006年第3期281-285,共5页
According to the catastrophe model for impact buckling of static loading structures, a new catastrophe model for impact loading failure of a static loading rock system was established, and one dimension (1D) catastrop... According to the catastrophe model for impact buckling of static loading structures, a new catastrophe model for impact loading failure of a static loading rock system was established, and one dimension (1D) catastrophe model was analyzed. The analysis results indicate that the furcation collection where catastrophe may take place is not only decided by mechanical system itself but also relates to exterior loading, which is different from the results obtained under mono-static loading where the bifurcation collection is only determined by mechanics of the system itself and has nothing to do with exterior loading. In addition, the corresponding 1D coupled static-dynamic loading experiment is designed to verify the analysis results of catastrophe model. The test is done with Instron 1342 electro-servo controlled testing system, in which medium strain rate is caused by monotony rising dynamic load. The parameters are obtained combining theoretical model with experiment. The experimental and theoretical curves of critical dynamic load vs static load are rather coincided, thus the new model is proved to be correct. 展开更多
关键词 static loading rock system impact load INSTABILITY catastrophic model coupled static-dynamic loading
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Effects of axial cyclic loading at constant confining pressures on deformational characteristics of anisotropic argillite 被引量:2
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作者 张久长 周苏华 +1 位作者 方理刚 许湘华 《Journal of Central South University》 SCIE EI CAS 2013年第3期799-811,共13页
Triaxial cyclic loading tests have been performed to assess the influence of plastic deformation on inelastic deformational properties of anisotropic argillite with bedding planes which is regarded as a kind of transv... Triaxial cyclic loading tests have been performed to assess the influence of plastic deformation on inelastic deformational properties of anisotropic argillite with bedding planes which is regarded as a kind of transversely isotropic media.Considering argillite's anisotropy and inelastic deformational properties,theoretical formulae for calculating oriented elastic parameters were deduced by the unloading curves,which can be better fitted for the description of its elasticity than loading curves.Test results indicate that with the growth of accumulated plastic,strain,the apparent elastic modulus of argillite decreases in a form of exponential decay function,whereas the apparent Poisson ratio increase in a form of power equation.A ratio of unloading recoverable strain to the total strain increment occurred during a loading cycle is defined to illustrate the characteristic relations between anisotropic coupled elasto-plastic deformation and plastic strain.It is significant to observe that high stress level and plastic history have an inhibiting effect on argillite anisotropy. 展开更多
关键词 anisotropic argillite coupled elasto-plasticity cyclic loading tests elastic parameters plastic strain
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风-震耦合作用下钢-预应力混凝土混合塔筒动力响应特征与结构优化 被引量:2
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作者 邢国华 任泽鹏 +2 位作者 苗鹏勇 葛一鸣 黄娇 《东南大学学报(自然科学版)》 北大核心 2025年第3期716-725,共10页
为探究风力发电塔筒结构在多种荷载作用下的响应特征,选取一座在役4.55 MW钢-预应力混凝土混合塔筒结构,基于Davenport谱生成顺风与侧向扰动脉动风荷载,并考虑典型地震动,通过Abaqus分析不同工况下的动力响应特征,明确结构薄弱部位,并... 为探究风力发电塔筒结构在多种荷载作用下的响应特征,选取一座在役4.55 MW钢-预应力混凝土混合塔筒结构,基于Davenport谱生成顺风与侧向扰动脉动风荷载,并考虑典型地震动,通过Abaqus分析不同工况下的动力响应特征,明确结构薄弱部位,并应用超高性能混凝土(UHPC)对其进行优化。结果表明:脉动风荷载作用下塔筒位移沿高度分布均匀,最大塔顶位移角仅1/635,地震及风-震耦合作用下,塔筒TD2~C1变截面薄弱段的加速度、位移响应骤增致结构破坏;顺风与地震耦合下塔顶位移是单独地震作用下的1.47~1.74倍,考虑侧向扰流后,塔顶位移增大55.8%~86.9%;采用UHPC对塔筒薄弱段进行优化可有效提高结构整体受力性能,避免或延缓结构薄弱区局部失效导致结构整体倒塌。 展开更多
关键词 风力发电塔 钢-预应力混凝土塔筒 脉动风荷载 风-地震耦合 动力响应
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考虑水-力耦合的桩-非饱和黄土接触面荷载传递模型 被引量:1
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作者 李林 张等红 +2 位作者 张淼 顾晓强 徐龙飞 《岩土力学》 北大核心 2025年第5期1343-1355,1367,共14页
黄土因具有结构性强度和水敏性,桩-黄土接触面的剪切变形特性受水分影响显著,且剪切变形过程中因结构性强度退化而呈现出应变软化特性。根据桩-非饱和黄土接触面的水-力耦合特性,以有效饱和度和Bishop有效应力作为直接驱动变量反映饱和... 黄土因具有结构性强度和水敏性,桩-黄土接触面的剪切变形特性受水分影响显著,且剪切变形过程中因结构性强度退化而呈现出应变软化特性。根据桩-非饱和黄土接触面的水-力耦合特性,以有效饱和度和Bishop有效应力作为直接驱动变量反映饱和度对黄土结构性强度的影响。为考虑桩-非饱和黄土接触面剪切变形过程中结构性强度的退化特征,分别构建了接触面黏聚力、摩擦角和压缩指数的结构性参数,并建立了各结构性参数随塑性应变和土体有效饱和度的演化方程。在此基础上,通过等效侧限条件下非饱和结构性黄土与饱和无结构性黄土的塑性变形,在有效应力-有效饱和度空间建立了桩-非饱和黄土接触面的增湿屈服方程,进而耦合土-水特征曲线,提出了桩-非饱和黄土接触面的水-力耦合弹塑性本构模型。通过兰州非饱和结构性黄土的直剪试验数据和山西非饱和黄土桩的现场试桩数据对模型进行了验证与分析。结果表明,建立的桩-非饱和黄土接触面荷载传递模型可以描述桩-非饱和黄土接触面剪切变形的水-力耦合特性,体现桩-非饱和黄土接触面剪切强度随饱和度增加而减小的特征,且能够有效反映桩-土接触面应变软化特征随饱和度的变化规律。模型为非饱和黄土桩基灾变防控设计、计算和承载特性分析提供了有效途径。 展开更多
关键词 桩-黄土接触面 荷载传递 结构性强度 水-力耦合 应变软化
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基于PSO-SVR算法的钢板-混凝土组合连梁承载力预测 被引量:2
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作者 田建勃 闫靖帅 +2 位作者 王晓磊 赵勇 史庆轩 《振动与冲击》 北大核心 2025年第7期155-162,共8页
为准确预测钢板-混凝土组合(steel plate-RC composite,PRC)连梁承载力,本文分别通过支持向量机回归算法(support vector regression,SVR)、极端梯度提升算法(XGBoost)和粒子群优化的支持向量机回归(particle swarm optimization-suppor... 为准确预测钢板-混凝土组合(steel plate-RC composite,PRC)连梁承载力,本文分别通过支持向量机回归算法(support vector regression,SVR)、极端梯度提升算法(XGBoost)和粒子群优化的支持向量机回归(particle swarm optimization-support vector regression,PSO-SVR)算法进行了PRC连梁试验数据的回归训练,此外,通过使用Sobol敏感性分析方法分析了数据特征参数对PRC连梁承载力的影响。结果表明,基于SVR、极端梯度提升算法(extreme gradient boosting,XGBoost)和PSO-SVR的预测模型平均绝对百分比误差分别为5.48%、7.65%和4.80%,其中,基于PSO-SVR算法的承载力预测模型具有最高的预测精度,模型的鲁棒性和泛化能力更强。此外,特征参数钢板率(ρ_(p))、截面高度(h)和连梁跨高比(l_(n)/h)对PRC连梁承载力影响最大,三者全局影响指数总和超过0.75,其中,钢板率(ρ_(p))是对PRC连梁承载力影响最大的单一因素,一阶敏感性指数和全局敏感性指数分别为0.3423和0.3620,以期为PRC连梁在实际工程中的设计及应用提供参考。 展开更多
关键词 钢板-混凝土组合连梁 机器学习 粒子群优化的支持向量机回归(PSO-SVR)算法 承载力 敏感性分析
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不同振动谱下动力电池箱损伤对比研究
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作者 赵礼辉 潘羽 +2 位作者 冯金芝 郑松林 张东东 《机械强度》 北大核心 2025年第7期14-23,共10页
针对电动汽车电池箱的振动疲劳问题,以实车试验场测试载荷为基础,基于单轴和多轴(顺序加载、耦合加载)振动载荷,对比分析电池箱疲劳性能。首先,在试验场采集电池箱上敏感点处的三向加速度载荷,对不同测点载荷同一方向的功率谱密度分别... 针对电动汽车电池箱的振动疲劳问题,以实车试验场测试载荷为基础,基于单轴和多轴(顺序加载、耦合加载)振动载荷,对比分析电池箱疲劳性能。首先,在试验场采集电池箱上敏感点处的三向加速度载荷,对不同测点载荷同一方向的功率谱密度分别进行拟合与对比分析,并通过频域损伤等效方法对功率谱密度进行加速处理,获得试验场规范下的随机振动三向加速度功率谱密度分布特征。其次,基于随机振动疲劳分析理论,构建了电池箱的多轴顺序激励、多轴耦合激励;基于疲劳损伤等效,构建了单轴强化谱激励。最后,数值仿真对比分析了三种激励下电池箱的疲劳损伤。结果表明,三种激励下电池箱的损伤位置一致,多轴耦合激励损伤大于多轴顺序激励,单轴强化谱对多轴耦合损伤的复现效果较好。这可为基于单轴强化载荷谱开展电池箱的振动疲劳快速试验提供指导。 展开更多
关键词 强化载荷谱 多轴耦合 加速试验 疲劳损伤 电池箱
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复合负载激励下齿辊破碎机系统弯扭耦合振动分析
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作者 李建刚 高仲杰 +5 位作者 陈璇 关晓伟 陈善靖 王鑫 卢万杰 付雄 《振动与冲击》 北大核心 2025年第18期226-240,共15页
鉴于破碎齿辊弯曲振动模型和破碎机系统扭转振动模型的局限性,为探究冲击-破碎复合负载激励对齿辊和破碎机系统振动特性的影响规律,利用冲击动力学方法和能量法通过Lagrange方程推导出齿辊承受复合负载激励条件下破碎机系统的弯扭耦合... 鉴于破碎齿辊弯曲振动模型和破碎机系统扭转振动模型的局限性,为探究冲击-破碎复合负载激励对齿辊和破碎机系统振动特性的影响规律,利用冲击动力学方法和能量法通过Lagrange方程推导出齿辊承受复合负载激励条件下破碎机系统的弯扭耦合动力学方程,并基于Runge-Kutta方法进行数值仿真,分析五种负载激励下破碎齿辊的弯曲振动响应和破碎机系统的扭转振动响应。仿真结果表明:相较于恒定负载激励,扰动冲击负载使齿辊沿负载方向的弯曲振幅增加了87.79%;扰动破碎负载使齿辊在x向和y向的弯曲振幅分别增加了29.36%和29.61%,其扭振角也出现了0.0037 rad的增幅;复合负载激励导致齿辊产生0.006 m的弯曲振动响应和0.023 rad的扭振响应,将加速齿辊和传动设备的疲劳损坏,影响破碎机系统的高效作业和可靠运行。研究结果为揭示高能频繁冲击等复合负载激励下齿辊和传动设备的结构动态特性及损伤机理提供了一定的参考。 展开更多
关键词 齿辊破碎机 复合负载激励 弯扭耦合 振动特性 力学模型
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深部多层坚硬顶板动−静载耦合致灾机制与监测
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作者 付兴 李英豪 +4 位作者 张宏伟 荣海 宋健康 杨振华 王玉柱 《工矿自动化》 北大核心 2025年第10期131-141,150,共12页
因地质赋存、采掘布局等存在差异,冲击地压机制需要结合矿井和工作面的具体条件进行针对性研究。以河南大有能源股份有限公司耿村煤矿12240工作面为研究对象,从微震能量事件、工作面前方动静载能量叠加致灾和坚硬顶板应力在线监测的角... 因地质赋存、采掘布局等存在差异,冲击地压机制需要结合矿井和工作面的具体条件进行针对性研究。以河南大有能源股份有限公司耿村煤矿12240工作面为研究对象,从微震能量事件、工作面前方动静载能量叠加致灾和坚硬顶板应力在线监测的角度确定了上覆坚硬顶板对工作面冲击地压的影响。通过微震能量事件分布特征确定了坚硬顶板失稳活动的时空规律;建立了充分采动条件下工作面超前支承压力力学模型,提出了基于能量叠加原理的动静载耦合分析方法,计算了上覆各坚硬岩层破断传递至工作面的能量叠加;建立了坚硬岩层活动在线监测方案,通过锚索监测数据,定量揭示了工作面开采过程中煤岩体应力动态演化规律。研究结果表明:低位坚硬岩层、中位坚硬岩层1和中位坚硬岩层2协同破断传递至工作面的叠加能量达1.22×10^(4)J,显著超过耿村煤矿冲击地压临界能量;锚索监测数据显示,测点在距开切眼132~143 m区间出现显著应力增幅异常,该异常区与微震能量事件时空演化具有高度相关性,确定为冲击地压产生的主要诱因;基于锚索应力动态响应特征,将工作面推进过程中前方煤岩体活动特征划分为缓慢影响阶段、显著影响阶段和影响急速下降阶段3个典型阶段。 展开更多
关键词 冲击地压 多层坚硬顶板 动静载耦合 微震能量事件 深部开采 应力监测
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考虑不同级配影响的填石路基压实质量评价研究
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作者 卢正 李梦威 +4 位作者 唐楚轩 胡智 赵阳 则志辉 姚海林 《岩土力学》 北大核心 2025年第11期3346-3354,共9页
如何对填石路基的压实质量进行快速、准确的评价,是公路工程中一项亟待解决的难题。为此,建立了模拟填石路基在冲击载荷下响应的离散元-有限差分耦合模型,采用室内大型三轴试验标定了模型主要参数,通过计算数据与现场试验的对比验证了... 如何对填石路基的压实质量进行快速、准确的评价,是公路工程中一项亟待解决的难题。为此,建立了模拟填石路基在冲击载荷下响应的离散元-有限差分耦合模型,采用室内大型三轴试验标定了模型主要参数,通过计算数据与现场试验的对比验证了模型的正确性。进一步深入分析了5种常见级配填石路基在不同压实状态下的动力响应结果,讨论了级配分维度、孔隙率等对路基响应特征的影响。研究结果表明:(1)填石路基孔隙率与回弹模量之间具备良好的指数关系,在此基础上提出了沉降比的概念,并且发现了沉降比与路基孔隙率之间的线性关系,建议评价路基压实质量时同时将沉降比与回弹模量作为控制指标。(2)建立了考虑填料级配与孔隙率的填石路基回弹模量预测模型,发现填料级配对回弹模量影响显著,且级配分维度越接近2.31,回弹模量随孔隙率的降低速度越快。(3)沉降比为0时对应路基理想压实状态,在此基础上建立了考虑填料级配的路基理想状态临界回弹模量预测模型,发现临界模量随着填料分维度D的增加先增大后减小,在D=2.34时出现极大值。上述研究可为公路填石路基压实质量控制和评价提供科学依据。 展开更多
关键词 填石路基 冲击荷载 离散元-有限差分耦合 压实质量 颗粒级配
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多载荷耦合的特高压井口法兰力学响应特性分析
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作者 胥志雄 冯少波 +4 位作者 王春生 魏军会 李滨 武胜男 谢俊峰 《石油与天然气化工》 北大核心 2025年第5期74-81,共8页
目的针对特高压井口法兰在轴向力−内压−力矩多载荷耦合作用下的力学行为不明确问题,提出一种基于变形量的力矩计算方法,为175 MPa级非标法兰设计提供理论支撑。方法结合有限元仿真与复合加载试验,建立了法兰偏转角度–力矩计算模型。通... 目的针对特高压井口法兰在轴向力−内压−力矩多载荷耦合作用下的力学行为不明确问题,提出一种基于变形量的力矩计算方法,为175 MPa级非标法兰设计提供理论支撑。方法结合有限元仿真与复合加载试验,建立了法兰偏转角度–力矩计算模型。通过应变片监测法兰在加载过程中的应力分布,并将仿真结果与试验数据进行对比分析,从而验证了所建模型的精度与适用性。结果所建模型的力矩计算相对误差不超过15%,在C8工况下法兰中部内侧应力达471.69 MPa,其为外侧的2.1倍,但仍低于材料屈服强度,且当轴向力增至18000 kN,时弹性系数提升了5.63倍。结论所提方法可精准量化多载荷耦合下的法兰力矩,揭示轴向力主导弹性系数变化规律,为特高压法兰安全设计提供新思路。 展开更多
关键词 特高压法兰 多载荷耦合 力矩计算方法 弹性系数演化 有限元−试验协同分析
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负载敏感多路阀阀芯节流槽热变形分析及其参数优化
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作者 陈远玲 廖国陆 +3 位作者 王宜前 欧阳崇钦 李固 任晓智 《机床与液压》 北大核心 2025年第11期150-157,共8页
针对多路阀中阀芯磨损和卡滞问题,基于流固热耦合分析,对小型挖掘机回转联阀芯节流槽参数进行优化。基于ANSYS Workbench平台,对不同开度下的多路阀模型进行流固热耦合仿真。当阀口压差为2 MPa时,分析对比三角+U形节流槽不同开度下多路... 针对多路阀中阀芯磨损和卡滞问题,基于流固热耦合分析,对小型挖掘机回转联阀芯节流槽参数进行优化。基于ANSYS Workbench平台,对不同开度下的多路阀模型进行流固热耦合仿真。当阀口压差为2 MPa时,分析对比三角+U形节流槽不同开度下多路阀内部速度场、温度场及结构场。以阀口开度为2 mm的模型为研究对象,通过正交试验获得不同节流槽结构参数下的阀芯最大变形量数据库,并采用BP神经网络建立代理模型,结合牛顿-拉夫逊优化算法(NRBO)获得最优节流槽参数组合。最后,通过台架试验对仿真模型进行验证。结果表明:随着阀口开度增加,节流槽处的油液最大速度呈整体下降趋势,阀芯最高温度呈先上升后下降趋势,温升区域逐渐扩大,开度为2 mm时局部温度和变形均达到峰值,分别为116.3℃和4.43μm;优化后阀芯的最大变形下降了35.65%;回转联P-LS和P-LS-A流道在额定流量下的压力损失分别为1.78、2.14 MPa,与仿真结果基本一致。 展开更多
关键词 负载敏感多路阀 节流槽 热变形 流固热耦合
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电气耦合能源系统负荷承载碳排放强度及其极限机理研究
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作者 张帅 王丹 +4 位作者 刘浩 贾宏杰 周天烁 窦真兰 陈洪银 《电网技术》 北大核心 2025年第10期4245-4254,I0062-I0069,共18页
能源系统的安全、高效、清洁是当今研究领域关注的重点,传统考虑安全约束的能源系统分析多从能量流的角度开展研究。众所周知,能量流与碳排放流密切相关,以碳排放流的视角对系统的安全监视是一种全新的尝试。鉴于碳流分摊的复杂性,将负... 能源系统的安全、高效、清洁是当今研究领域关注的重点,传统考虑安全约束的能源系统分析多从能量流的角度开展研究。众所周知,能量流与碳排放流密切相关,以碳排放流的视角对系统的安全监视是一种全新的尝试。鉴于碳流分摊的复杂性,将负荷分摊或承载的碳排放量作为安全监视的重点。考虑到能源系统安全分析中不能仅关注碳排放量或者能量变化,两者的结合研究是非常有必要的。上述研究前提需要了解能源系统负荷承载碳排放强度(total load-side carbon emission intensity,TLCE)及其极限的变化规律和内在机理。该文以电-气耦合能源系统为研究对象,首先,建立电-气耦合能源系统能流及碳流模型,明确TLCE计算原则;然后,提出系统TLCE及TLCE极限的概念,在系统安全约束下建立了系统TLCE极限模型与计算方法;之后,为完整刻画系统TLCE的变化情况,建立了TLCE曲线模型;最后,设置算例进行仿真分析,验证了所提模型和方法的有效性,并结合算例提出了低碳供能能力、高供能负荷承担碳排放强度的概念与计算模型。 展开更多
关键词 电-气耦合能源系统 能量流 碳排放流 负荷承载碳排放强度 极限 曲线
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考虑快速变负荷和灵活性供需匹配的耦合系统优化调度
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作者 周念成 戴旭晖 +2 位作者 池源 徐飞 常东锋 《电力系统自动化》 北大核心 2025年第1期117-127,共11页
可再生能源与快速变负荷改造的火电机组在同一并网点对外形成耦合系统,是提升沙漠、戈壁、荒漠等灵活性发电资源缺乏而可再生能源比例较高地区灵活性的有效手段。为了挖掘火电机组改造后的耦合系统经济性与灵活性,文中提出一种风光火耦... 可再生能源与快速变负荷改造的火电机组在同一并网点对外形成耦合系统,是提升沙漠、戈壁、荒漠等灵活性发电资源缺乏而可再生能源比例较高地区灵活性的有效手段。为了挖掘火电机组改造后的耦合系统经济性与灵活性,文中提出一种风光火耦合系统多目标优化调度方法。首先,根据实际测算的火电机组灵活性改造后的运行煤耗数据,拟合了机组爬坡过程的煤耗计算公式,并分析了火电快速变负荷能力提高对耦合系统经济性和灵活性的影响。在此基础上,将日综合运行收益与灵活性供需匹配度作为目标函数,考虑包括阶梯式爬坡率在内的系统运行约束,构建多目标优化调度模型。通过在优化算法中使用分组关联多项式变异算子,提高了算法对维度较高、约束较复杂的电力系统多目标优化调度问题的求解能力。最后,以某地区耦合系统为例进行了优化调度仿真。结果表明,文中所述方法能够获得综合经济性与灵活性相对更优的耦合系统优化调度方案。 展开更多
关键词 耦合系统 调峰 快速变负荷 阶梯式爬坡率 灵活性供需匹配 多目标优化调度
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