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Reliability analysis of aero-engine blades considering nonlinear strength degeneration 被引量:5
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作者 Lin Jiewei Zhang Junhong +1 位作者 Yang Shuo Bi Fengrong 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2013年第3期631-637,共7页
To comprehensively consider the effects of strength degeneration and failure correlation, an improved stress–strength interference (SSI) model is proposed to analyze the reliability of aeroengine blades with the fa... To comprehensively consider the effects of strength degeneration and failure correlation, an improved stress–strength interference (SSI) model is proposed to analyze the reliability of aeroengine blades with the fatigue failure mode. Two types of TC4 alloy experiments are conducted for the study on the damage accumulation law. All the parameters in the nonlinear damage model are obtained by the tension–compression fatigue tests, and the accuracy of the nonlinear damage model is verified by the damage tests. The strength degeneration model is put forward on the basis of the Chaboche nonlinear damage theory and the Griffith fracture criterion, and determined by measuring the fatigue toughness during the tests. From the comparison of two kinds of degeneration models based on the Miner’s linear law and the nonlinear damage model respectively, the nonlinear model has a significant advantage on prediction accuracy especially in the later period of life. A time-dependent SSI reliability model is established. By computing the stress distribution using the finite element (FE) technique, the reliability of a single blade during the whole service life is obtained. Considering the failure correlation of components, a modified reliability model of aero-engine blades with common cause failure (CCF) is presented. It shows a closer and more reasonable process with the actual working condition. The improved reliability model is illustrated to be applied to aero-engine blades well, and the approach purposed in this paper is suitable for any actual machinery component of aero-engine rotor systems. 展开更多
关键词 BLADE Fatigue nonlinear strength degeneration Reliability Stress–strength interference
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Modified Cam-Clay model incorporating unified nonlinear strength criterion 被引量:7
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作者 XIAO Yang LIU HanLong LIANG Robert Y 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第4期805-810,共6页
A unified nonlinear strength criterion(i.e UNS criterion) is proposed,for the sake of versatility,to capture the complex strength behaviors of frictional materials in geotechnical field.It covers wide ranges on the me... A unified nonlinear strength criterion(i.e UNS criterion) is proposed,for the sake of versatility,to capture the complex strength behaviors of frictional materials in geotechnical field.It covers wide ranges on the meridian and octahedral planes to describe nonlinear strength behaviors of soils.The Modified Cam-Clay model,incorporating the unified nonlinear strength criterion,is employed as an example to derive working mathematical equations and to illustrate yielding surfaces in three-dimensional stress space for improving the model's predictive capability.The unified nonlinear strength criterion,demonstrated here,is capable of capturing the experimental results of different types of soils on the meridian and octahedral planes.In addition,the revised model,based on this unified nonlinear strength criterion,though very simple,is versatile to predict the true triaxial test results from literature when considering the influences of the intermediate principal stress on strength and deformation under complex stress conditions. 展开更多
关键词 nonlinear strength CRITERION FAILURE constitutive model complex stress condition
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Nonlinear criterion for strength mobilization in brittle failure of rock and its extension to the tunnel scale 被引量:5
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作者 Rodolfo Cabezas Javier Vallejos 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2022年第4期685-705,共21页
As underground excavations are getting deeper and field stresses increase, the behavior of intact rock blocks plays an increasingly important role in understanding and estimating the overall rock mass strength. To mod... As underground excavations are getting deeper and field stresses increase, the behavior of intact rock blocks plays an increasingly important role in understanding and estimating the overall rock mass strength. To model the brittle behavior of intact rock blocks, the stress–strain curve is usually idealized considering a linear strength mobilization approach(cohesion-weakening-friction-strengthening, CWFS),however, it is well recognized that rock presents a nonlinear behavior in terms of the confining stress.This study extends the strength mobilization in brittle failure of rock using nonlinear criteria. To determine the model parameters, a standard statistical method that uses the complete laboratory stress–strain curves of the intact rock is employed. Several hypotheses of linear and nonlinear models are statistically compared for different types of rock and confining stress levels. Results demonstrate that the best approach to model the brittle failure of rock is to consider a nonlinear strength envelope, such as the Hoek-Brown criterion assuming a residual uniaxial compressive strength different from zero and a mi parameter that increases, both with simultaneous mobilization. This model helps to recreate highconfining conditions and a more realistic transition between peak and post-peak strength. The obtained parameters are discussed and compared with literature values to verify the validity and to develop guidelines for the estimation of parameters, providing an objective mobilization criterion. Finally, the nonlinear model was applied to a finite element code and extended to a tunnel scale in the brittle rock under high-stress conditions. A reasonable fit between the simulations and the in-situ overbreak measurements was found. 展开更多
关键词 nonlinear strength strength mobilization Brittle failure Intact rock Scaling
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Ultimate end bearing capacity of rock-socketed pile based on generalized nonlinear unified strength criterion 被引量:7
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作者 章敏 王星华 汪优 《Journal of Central South University》 SCIE EI CAS 2011年第1期208-215,共8页
In order to study the mechanism of bearing behavior at the tip of a pile embedded in rock, the generalized nonlinear unified strength criterion and slip line principle for resolving the differential equation systems w... In order to study the mechanism of bearing behavior at the tip of a pile embedded in rock, the generalized nonlinear unified strength criterion and slip line principle for resolving the differential equation systems which govern the stress field were applied to derive the ultimate end beating capacity based on some reasonable hypothesis and failure plane model. Both numerical simulation and test results were compared with the theoretic solution. The results show good consistency with each other and verify the validity of the present approach. The depth effect with respective to embedment ratio and other influence factors like geological strength index, intermediate principal stress, overburden factor, and damage on end bearing capacity were discussed in the analytical solution. The results show that the proposed yield criterion can be much better for investigating the ultimate end bearing performance of rock-socketed pile. The end bearing capacity increases with embedment ratio and the increasing degree is influenced intensely by the above parameters. Furthermore, ignoring intermediate stress effect would underestimate the strength properties of the rock material and lead to a very conservative estimation value. 展开更多
关键词 rock-socketed pile generalized nonlinear unified strength criterion slip line principle embedment ratio damage endbearing capacity
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Elasto-plastic analysis of the surrounding rock mass in circular tunnel based on the generalized nonlinear unified strength theory 被引量:4
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作者 Huang Xiujie Zhang Jixun +2 位作者 Yang Ling Yang Shikou Wang Xingli 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第5期819-823,共5页
The present paper aims to establish a versatile strength theory suitable for elasto-plastic analysis of underground tunnel surrounding rock. In order to analyze the effects of intermediate principal stress and the roc... The present paper aims to establish a versatile strength theory suitable for elasto-plastic analysis of underground tunnel surrounding rock. In order to analyze the effects of intermediate principal stress and the rock properties on its deformation and failure of rock mass, the generalized nonlinear unified strength theory and elasto-plastic mechanics are used to deduce analytic solution of the radius and stress of tunnel plastic zone and the periphery displacement of tunnel under uniform ground stress field. The results show that: intermediate principal stress coefficient b has significant effect on the plastic range,the magnitude of stress and surrounding rock pressure. Then, the results are compared with the unified strength criterion solution and Mohr–Coulomb criterion solution, and concluded that the generalized nonlinear unified strength criterion is more applicable to elasto-plastic analysis of underground tunnel surrounding rock. 展开更多
关键词 Circular tunnel Generalized Hoek–Brown strength criterion Generalized nonlinear unified strength CRITERION Intermediate principal stress Elasto-plastic stress and displacement
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Critical embedment depth of a rigid retaining wall against overturning in unsaturated soils considering intermediate principal stress and strength nonlinearity 被引量:4
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作者 张常光 陈新栋 范文 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期944-954,共11页
The overturning stability is vital for the retaining wall design of foundation pits, where the surrounding soils are usually unsaturated due to water draining. Moreover, the intermediate principal stress does affect t... The overturning stability is vital for the retaining wall design of foundation pits, where the surrounding soils are usually unsaturated due to water draining. Moreover, the intermediate principal stress does affect the unsaturated soil strength; meanwhile, the relationship between the unsaturated soil strength and matric suction is nonlinear. This work is to present closed-form equations of critical embedment depth for a rigid retaining wall against overturning by means of moment equilibrium. Matric suction is considered to be distributed uniformly and linearly with depth. The unified shear strength formulation for unsaturated soils under the plane strain condition is adopted to characterize the intermediate principal stress effect, and strength nonlinearity is described by a hyperbolic model of suction angle. The result obtained is orderly series solutions rather than one specific answer; thus, it has wide theoretical significance and good applicability. The validity of this present work is demonstrated by comparing it with a lower bound solution. The traditional overturning designs for rigid retaining walls, in which the saturated soil mechanics neglecting matric suction or the unsaturated soil mechanics based on the Mohr-Coulomb criterion are employed, are special cases of the proposed result. Parametric studies about the intermediate principal stress, matric suction and its distributions along with two strength nonlinearity methods on a new defined critical buried coefficient are discussed. 展开更多
关键词 unsaturated soils retaining walls overturning stability critical embedment depth intermediate principal stress strength nonlinearity
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Relationships between femoral strength evaluated by nonlinear finite element analysis and BMD,material distribution and geometric morphology
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作者 He Gong1,Linwei Lv1,Rui Zhang1,Dong Zhu3,Ming Zhang2(1.Department of Engineering Mechanics,Jilin University,Changchun 130025,P.R.China 2.Department of Health Technology and Informatics,The Hong Kong Polytechnic University,Hong Kong,China 3.Department of Orthopedic Surgery,No.1 Hospital,Jilin University,Changchun 130021,China) 《医用生物力学》 EI CAS CSCD 2009年第S1期66-66,共1页
Precisely quantifying the strength of the proximal femur and accurately assessing hip fracture risk would enable those at high risk to be identified so that preventive interventions could be taken.Development of bette... Precisely quantifying the strength of the proximal femur and accurately assessing hip fracture risk would enable those at high risk to be identified so that preventive interventions could be taken.Development of better measures of femoral strength using the clinically 展开更多
关键词 BMD Relationships between femoral strength evaluated by nonlinear finite element analysis and BMD material distribution and geometric morphology FEA
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考虑水力效应的裂缝边坡稳定性非线性能耗分析 被引量:1
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作者 罗伟 卢茜 +2 位作者 徐长节 陈静瑜 陶智 《重庆交通大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第3期26-34,53,共10页
现有考虑水力效应的裂缝边坡稳定性分析大多基于线性破坏准则,而岩土体破坏往往呈现非线性特征,因此开展水力效应影响下的裂缝边坡稳定性非线性极限上限分析具有重要意义。基于极限分析上限定理及强度折减技术,结合“外切线法”非线性... 现有考虑水力效应的裂缝边坡稳定性分析大多基于线性破坏准则,而岩土体破坏往往呈现非线性特征,因此开展水力效应影响下的裂缝边坡稳定性非线性极限上限分析具有重要意义。基于极限分析上限定理及强度折减技术,结合“外切线法”非线性破坏准则,构建坡顶含竖直裂缝的边坡对数螺旋线破坏模式,根据虚功原理推导出裂缝边坡安全系数解析式,通过MATLAB优化计算,结合边坡工程实例探讨了典型因素对裂缝边坡稳定性、临界裂缝及滑动面位置的影响规律。研究结果表明:随着地下水位h的持续上升,边坡安全系数不断降低,临界裂缝深度逐渐增大且临界裂缝位置逐渐向坡顶缘偏移;非线性系数m明显影响边坡的稳定性,边坡安全系数随着非线性系数的增大显著减小,采用线性破坏准则会高估地下水位变化对边坡稳定性的影响;随着非线性系数的增大,临界裂缝深度随之增大,临界裂缝位置距离坡顶缘越来越远,滑坡体体积逐渐增大;裂缝与坡顶缘距离l m随着非线性系数m的增大而增大(当m增大0.2时,l m增大约1 m),且随着裂缝与坡顶缘距离的增大,边坡安全系数无明显变化,临界裂缝深度先逐渐减小后趋于稳定。 展开更多
关键词 岩土工程 稳定性分析 极限分析上限定理 安全系数 非线性破坏准则 强度折减技术
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非线性M-C强度准则下预应力锚索加固边坡时效稳定性分析M-P法
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作者 邓东平 杨春会 谢志军 《岩土力学》 EI CAS CSCD 北大核心 2024年第4期1051-1066,共16页
拓展传统极限平衡方法在复杂条件下边坡稳定性分析中的适用性一直是岩土工程界的研究热点。众所周知,边坡岩土体剪切失效一般服从于非线性强度准则,而传统极限平衡方法仅适用于线性强度准则下边坡稳定性分析。此外,预应力锚索作为一种... 拓展传统极限平衡方法在复杂条件下边坡稳定性分析中的适用性一直是岩土工程界的研究热点。众所周知,边坡岩土体剪切失效一般服从于非线性强度准则,而传统极限平衡方法仅适用于线性强度准则下边坡稳定性分析。此外,预应力锚索作为一种主动防护措施,可极大地即时提高边坡稳定性而被广泛应用于中、大型边坡工程加固。然而,在应力松弛、蠕变效应以及腐蚀环境影响下预应力锚索加固边坡稳定性时效特征往往被忽视。由此,基于Morgenstern-Price(M-P)法,嵌入非线性Mohr-Coulomb(M-C)强度准则,并融入应力松弛与蠕变效应下锚索预应力损失模型以及腐蚀环境下锚索性能劣化模型,从而,建立非线性强度准则下预应力锚索加固边坡安全系数时程表达式。进一步,为了解决非线性强度准则下隐式嵌套公式难以求解的问题,归零化条间法向力初始值,并应用迭代循环求解策略,在引入循环终止允许误差判别条件后,可实现边坡稳定性理论真实结果的逼近求解。经过后续算例对比分析,验证了所提方法的可行性和合理性,与此同时,还研究了不同预应力损失速率和不同锈蚀环境下预应力锚索加固边坡稳定性的时效变化规律。 展开更多
关键词 边坡 极限平衡M-P法 非线性M-C强度准则 预应力锚索加固 时效稳定性
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滑面极径-应力-强度耦合关联下非线性破坏特征边坡稳定性极限平衡分析方法
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作者 邓东平 彭一航 +1 位作者 柳梦琦 李媛媛 《岩土力学》 EI CAS CSCD 北大核心 2024年第11期3235-3258,共24页
非线性强度准则下边坡破坏模式、滑面应力以及岩土剪切强度参数存在耦合关联,从而加大了边坡稳定性分析与最可能破坏模式揭示的难度。为此,以滑面应力计算模式代替条块划分下条间力假设模式,并嵌入非线性Mohr-Coulomb(简称M-C)强度准则... 非线性强度准则下边坡破坏模式、滑面应力以及岩土剪切强度参数存在耦合关联,从而加大了边坡稳定性分析与最可能破坏模式揭示的难度。为此,以滑面应力计算模式代替条块划分下条间力假设模式,并嵌入非线性Mohr-Coulomb(简称M-C)强度准则以及引入滑面端部应力约束条件。在此基础上,结合滑体整体力学平衡条件,建立滑面应力计算模式下非线性破坏特征边坡稳定性极限平衡解答。与此同时,依据现有滑面模型,将滑面概化为旋转中心点下极径与极角所表征的曲线,以此构建通用型滑面生成模型。进一步,针对分层边坡,提出合理的“应力连续+最不利剪切方向”层间滑面连接模式。随后,采取滑面极径-应力-强度联合迭代法,整合滑面应力计算模式下边坡稳定性极限平衡解答与通用滑面生成模型,实现非线性强度准则下边坡稳定性有效分析与最可能失效模式可靠揭示。通过多个边坡算例对比分析,此方法的可行性得以验证,而且当前研究工作将有利于进一步探明非线性强度准则下边坡破坏机制。 展开更多
关键词 边坡稳定性 极限平衡 非线性M-C强度准则 滑面极径-应力-强度耦合关联关系 通用型滑面模型 滑面应力函数
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基于非线性强度特征的深埋隧道围岩有限应变求解
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作者 陈嘉骏 路喆津 +2 位作者 孟超 胡世红 赵炼恒 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2024年第10期4148-4160,共13页
深埋隧道的围岩强度随着围压的增大而呈现出明显的非线性变化,且其具有高地应力这一显著特征使得准确评估隧道掘进过程中围岩的力学响应难以实现。引入岩石的非线性强度特征,建立深埋隧道围岩的对数应变方程,并考虑已有研究中大多忽略... 深埋隧道的围岩强度随着围压的增大而呈现出明显的非线性变化,且其具有高地应力这一显著特征使得准确评估隧道掘进过程中围岩的力学响应难以实现。引入岩石的非线性强度特征,建立深埋隧道围岩的对数应变方程,并考虑已有研究中大多忽略的岩石应变硬化特性,在有限差分循环迭代过程中使用当前节点的塑性剪切应变进行内部变量求解,提出基于统一应变硬化−应变软化本构模型和非线性剪胀模型的围岩弹塑性耦合有限应变解析方法。模型退化为小应变分析时,解析结果与经典理论解答基本一致,可以验证方法的有效性。影响参数分析表明:忽略岩石剪胀系数的非线性衰减将低估有限应变围岩的塑性区范围;随岩石剪胀特性的增强,洞壁位移、残余区半径和塑性区半径逐渐增加,且其增加幅度随围压减小而明显。岩石应变软化特性主要影响围岩残余区和软化区的占比,引起围岩位移的变化,其特性增强将显著减小塑性区半径。是否考虑岩石应变硬化特性对围岩塑性区范围的评估至关重要,但应变硬化特性的增强对塑性区的半径影响较小,其特性增强主要表现为对围岩软化区和硬化区占比的改变。采用该方法可有效评估深埋隧道有限应变围岩的塑性区范围,并为支护结构体系的设计提供理论指导。 展开更多
关键词 非线性强度特征 剪胀特性 应变硬化−应变软化 深埋隧道 有限应变
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扩展卡尔曼滤波的改进蛇定位算法在WSN中的应用
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作者 彭铎 刘明硕 谢堃 《无线电工程》 2024年第6期1489-1496,共8页
针对接收信号强度指示(Received Signal Strength Index,RSSI)定位易受到环境因素的影响,提出了一种基于RSSI扩展卡尔曼滤波的改进蛇定位算法(RSSI Extended Kalman Filter-based Improved Snake Optimization Localization Algorithm,R... 针对接收信号强度指示(Received Signal Strength Index,RSSI)定位易受到环境因素的影响,提出了一种基于RSSI扩展卡尔曼滤波的改进蛇定位算法(RSSI Extended Kalman Filter-based Improved Snake Optimization Localization Algorithm,RSSI-EISL)。该算法利用扩展卡尔曼滤波(Extended Kalman Filter,EKF)模型对RSSI信号值进行平滑处理,使其能够抑制噪声和异常值对估计结果的影响,从而提高测距的准确性和鲁棒性。通过引入Levy飞行和非线性收敛因子的改进蛇优化算法(Improved Snake Optimization Algorithm,ISO),提升了蛇优化算法(Snake Optimization Algorithm,SO)的寻优能力,使之能够更加准确地计算出待测节点的坐标。根据仿真结果显示,相较于基于RSSI最小二乘定位算法(RSSI Ordinary Least Squares Localization Algorithm,ROL)、基于RSSI EKF的灰狼定位算法(RSSI Extended Kalman Filter-based Grey Wolf Optimization Algorithm,REGL)和基于RSSI EKF的蛇定位算法(RSSI EKF-based Snake Optimization Localization Algorithm,RESL),RSSI-EISL的定位精度分别提高了26.4%、8.75%和5.6%,算法的收敛速度和全局搜索能力也有所提升。 展开更多
关键词 无线传感器网络 接收信号强度 蛇优化算法 扩展卡尔曼滤波 Levy飞行 非线性收敛因子
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石英砂岩三轴剪切力学特性及裂隙面形态特征
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作者 林志南 冯世宏 +2 位作者 王家全 张强 龙海锋 《工程科学与技术》 EI CAS CSCD 北大核心 2024年第4期161-172,共12页
为研究3维压剪应力状态下岩质边坡中完整岩石的剪切损伤破坏特征,采用RockTop-50HT全应力多场耦合三轴试验系统,对成分简单、结构均质及饱和完整的细粒石英砂岩进行16组不同围压的三轴剪切试验,获得相应的三轴剪切应力-应变曲线和含有... 为研究3维压剪应力状态下岩质边坡中完整岩石的剪切损伤破坏特征,采用RockTop-50HT全应力多场耦合三轴试验系统,对成分简单、结构均质及饱和完整的细粒石英砂岩进行16组不同围压的三轴剪切试验,获得相应的三轴剪切应力-应变曲线和含有原岩屑碎片的剪切破坏裂隙面,分析三轴剪切应力作用下石英砂岩的非线性强度变化特征,探究石英砂岩的三轴剪切破坏模式和裂隙结构面形态粗糙特征。基于德洛内(delaunay)点云离散算法重构石英砂岩破坏裂隙结构面,分析剪切破坏结构面的潜在接触部分随着表面有效倾角门槛值的变化特征。结果表明:1)随着围压逐渐增大,石英砂岩的三轴剪切破坏模式先由脆性破坏转变为塑性破坏,再逐渐转变为塑形流动破坏;2)石英砂岩的三轴剪切强度随着围压的递增呈现出明显的非线性变化特征,可用幂函数描述,并采用摩尔-库仑准则(Mohr-Coulomb)对石英砂岩的三轴剪切强度进行分段线性拟合,可知随着围压的增大,黏聚力逐渐增大,内摩擦角逐渐减小;3)剪切破坏裂隙面3维粗糙特征可用传统的Grasselli模型评估,其非线θ_(max)^(*)性拟合参数和粗糙度参数c能充分描述三轴剪切破坏裂隙的粗糙度特征。研究成果对岩石在复杂应力状态下的三轴剪切强度评价、岩石工程中边坡的稳定性分析和支护设计方案优化具有重要意义。 展开更多
关键词 岩石力学 三轴剪切试验 破坏模式 非线性剪切强度 裂隙面形态特征
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天然气管网稳态运行优化模型的非线性界增强方法
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作者 张晴 陈亮 +1 位作者 艾文宝 寇彩霞 《运筹学学报(中英文)》 CSCD 北大核心 2024年第1期101-111,共11页
天然气管网稳态运行优化问题在提升能源使用效率、降低运行成本等多方面发挥着重要的作用。该问题由于网络结构复杂、规模大、非线性程度高,所以建模成的混合整数非线性规划模型求解难度非常大。本文基于混合整数线性规划的界增强方法,... 天然气管网稳态运行优化问题在提升能源使用效率、降低运行成本等多方面发挥着重要的作用。该问题由于网络结构复杂、规模大、非线性程度高,所以建模成的混合整数非线性规划模型求解难度非常大。本文基于混合整数线性规划的界增强方法,提出了适用于该问题结构的非线性界增强方法,能够缩紧变量的上下界,使得在线性化方法中更好地逼近原混合整数非线性规划模型。数值结果显示新的方法能够得到更优的可行解,并且加快了天然气管网稳态运行优化问题的求解。 展开更多
关键词 天然气管网运行优化 混合整数非线性规划 界增强方法
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用于抵抗扭转采取边缘弹性约束下的单轴压缩下板材极限强度:一种新的综合方法
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作者 V.Piscopo 《哈尔滨工程大学学报(英文版)》 CSCD 2024年第2期443-459,共17页
The ultimate strength of platings under compression is one of the most important factors to be addressed in the ship design.Current Rules for ship structural design generally provide explicit strength check criteria a... The ultimate strength of platings under compression is one of the most important factors to be addressed in the ship design.Current Rules for ship structural design generally provide explicit strength check criteria against buckling for simply supported and clamped platings.Nevertheless,ship platings generally exhibit an intermediate behaviour between the simple support and the clamped conditions,which implies that the torsional stiffness of supporting members should be duly considered.Hence,the main aim of this study is the development of new design formulas for the ultimate strength of platings under uniaxial compression,with short and/or long edges elastically restrained against torsion.In this respect,two benchmark studies are performed.The former is devoted to the development of new equations for the elastic buckling coefficients of platings with edges elastically restrained against torsion,based on the results of the eigenvalue buckling analysis,performed by Ansys Mechanical APDL.The latter investigates the ultimate strength of platings with elastically restrained edges,by systematically varying the plate slenderness ratio and the torsional stiffness of supporting members.Finally,the effectiveness of the new formulation is checked against a wide number of finite element(FE)simulations,to cover the entire design space of ship platings. 展开更多
关键词 Platings under compression Edges elastically restrained against torsion Torsional stiffness Supporting members Eigenvalue buckling analysis nonlinear ultimate strength analysis FE simulations
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基于非线性本构的织物膜材梯形撕裂数值分析
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作者 马俊杰 陈建稳 《复合材料科学与工程》 CAS 北大核心 2024年第5期5-11,18,共8页
为提高针对织物复合膜材撕裂力学响应数值分析的精确性,本文基于连续损伤力学理论,建立了PVDF涂层织物膜材的非线性损伤本构模型。结合梯度为15°的偏轴拉伸试验,验证了非线性本构模型的精确性;并将非线性本构模型纳入数值分析,与... 为提高针对织物复合膜材撕裂力学响应数值分析的精确性,本文基于连续损伤力学理论,建立了PVDF涂层织物膜材的非线性损伤本构模型。结合梯度为15°的偏轴拉伸试验,验证了非线性本构模型的精确性;并将非线性本构模型纳入数值分析,与传统三折线本构模型及梯度为15°的梯形撕裂试验结果进行对比,验证非线性本构在撕裂力学响应方面的精确性。结果表明:非线性本构模型可有效跟踪膜材实际应力-应变曲线。在撕裂力学响应方面,两种模型均能体现系列参数变化对撕裂性能的影响规律及相应撕裂机理,但非线性本构模型在破坏形态上能更好地体现膜材撕裂过程中拉剪耦合复杂应力影响。 展开更多
关键词 经编织物 非线性 梯形撕裂 撕裂强度 偏轴角度 复合材料
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基于不同含水率下的船体支撑垫木力学特性研究
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作者 孙剑 董成前 +2 位作者 丁仕风 王庆丰 周利 《江苏科技大学学报(自然科学版)》 CAS 2024年第5期17-22,共6页
木材广泛应用于船舶建造中,由于露天存放,风吹日晒,含水率差异极大,对垫木的承载能力产生重要影响.文中分析了垫木支撑船体典型作用方式,设计垫木承载能力试验,采用微机控制电子万能试验机测试垫木的载荷-位移曲线.在此基础上,建立非线... 木材广泛应用于船舶建造中,由于露天存放,风吹日晒,含水率差异极大,对垫木的承载能力产生重要影响.文中分析了垫木支撑船体典型作用方式,设计垫木承载能力试验,采用微机控制电子万能试验机测试垫木的载荷-位移曲线.在此基础上,建立非线性动态有限元模型,模拟动载荷作用下垫木结构响应,与试验结果进行对比,得出不同含水率对垫木承载能力的影响,并提出应用建议,可作为船舶建造过程中应用支撑垫木的参考. 展开更多
关键词 支撑垫木 含水率 强度试验 非线性有限元分析
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陕西某黄土高边坡稳定性的数值模拟研究 被引量:2
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作者 柴卓 吴彪 +1 位作者 张海锋 谢春燕 《山西建筑》 2024年第7期70-73,共4页
结合陕西某煤矿黄土高边坡工程实例,在地质调查和试验分析基础上,采用强度折减法和非线性动力分析法,对天然工况和地震工况下的黄土高边坡稳定性进行数值模拟分析研究,得出以下主要结论:采用有限差分法(FLAC 3D)和有限元法(GTS)分析计... 结合陕西某煤矿黄土高边坡工程实例,在地质调查和试验分析基础上,采用强度折减法和非线性动力分析法,对天然工况和地震工况下的黄土高边坡稳定性进行数值模拟分析研究,得出以下主要结论:采用有限差分法(FLAC 3D)和有限元法(GTS)分析计算的边坡稳定系数基本吻合,潜在滑移面基本一致;数值模拟分析显示,地震作用下,黄土高边坡坡体应力和应变值均有提高,特别是坡脚处应力、应变变化显著,研究表明边坡应力、应变值随着地震动峰值加速度的增大、边坡坡度的增大,变化明显;非线性动力法能够更加直观地通过观测点的加速度、速度、位移曲线来判断黄土高边坡的稳定性。通过采用不同数值模拟方法对黄土高边坡稳定性进行分析,可为黄土高边坡优化设计提供参考依据。 展开更多
关键词 边坡稳定性 数值模拟 强度折减法 非线性动力分析法
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弓形梁非等高式滑橇起落架着陆性能研究
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作者 杨伟超 杨鹏飞 +2 位作者 刘淑彦 张宇航 霍桂臣 《机电工程技术》 2024年第8期76-78,96,共4页
弓形梁非等高式滑橇起落架前后弓形梁高度不同,无法通过理论分析方法准确获得其着陆性能。为了准确获得其着陆性能,使用仿真分析方法对具有不同着陆速度和壁厚的起落架着陆过程中的重心过载系数和剩余强度系数开展了研究,并结合试验和... 弓形梁非等高式滑橇起落架前后弓形梁高度不同,无法通过理论分析方法准确获得其着陆性能。为了准确获得其着陆性能,使用仿真分析方法对具有不同着陆速度和壁厚的起落架着陆过程中的重心过载系数和剩余强度系数开展了研究,并结合试验和理论分析验证了结果的准确性。首先,使用动力学方法,开展全机着陆冲击分析,得到了全机重心处着陆过载系数;结果表明,着陆速度较小时,随着着陆速度增加,重心处着陆过载系数几乎呈线性增加;而重心处过载系数随着壁厚增加几乎呈线性增加。随后,基于着陆过载系数,使用静力学分析方法,获得了起落架剩余强度系数,发现起落架壁厚存在最优值。最后,在此基础上,提出了在起落架弓形梁中嵌入内管进行变壁厚设计的方法,相比初始不满足强度要求的设计,该方法大幅提升起落架剩余强度系数至0.2;同时,该方法实现了均匀壁厚起落架不能实现的设计目标,拓展了起落架的设计边界。 展开更多
关键词 滑橇起落架 着陆过载 强度 非线性 优化设计
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碱激发矿渣-粉煤灰胶凝材料力学性能影响因素分析
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作者 孙开强 刘琳 郑蕻陈 《硅酸盐通报》 CAS 北大核心 2024年第9期3313-3319,共7页
为解决多因素共同作用下单个控制因素对碱激发矿渣-粉煤灰胶凝材料力学性能的影响显著性问题,本文研究了粉煤灰掺量、水胶比、碱掺量和碳酸钠掺量对碱激发矿渣-粉煤灰胶凝材料抗压强度的影响,并利用灰色关联分析和基于正交试验设计的单... 为解决多因素共同作用下单个控制因素对碱激发矿渣-粉煤灰胶凝材料力学性能的影响显著性问题,本文研究了粉煤灰掺量、水胶比、碱掺量和碳酸钠掺量对碱激发矿渣-粉煤灰胶凝材料抗压强度的影响,并利用灰色关联分析和基于正交试验设计的单变量方差分析、极差分析评价上述因素对力学性能的影响程度。结果表明:在NaOH/Na_(2)SiO_(3)激发矿渣-粉煤灰胶凝材料体系中,粉煤灰掺量对抗压强度起主要影响作用;此外,建立了粉煤灰掺量、水胶比、碱掺量、碳酸钠掺量与抗压强度之间的预测公式,预测结果与试验结果相对误差基本控制在±10%以内。 展开更多
关键词 碱激发 胶凝材料 抗压强度 影响程度分析 多元非线性回归
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