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Dynamic hysteresis brittle behavior and temperature-strain rate-coupled damage modeling:A multiscale study of poly(phthalazinone ether sulfone ketone)under extreme service conditions
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作者 Liangliang Shen Shi Su +4 位作者 Wenhui Zhang Shilun Shi Xigao Jian Tianqi Zhu Jian Xu 《Defence Technology(防务技术)》 2025年第10期259-273,共15页
Poly(phthalazinone ether sulfone ketone)(PPESK)is a new-generation high-performance thermoplastic resin that exhibits excellent thermal stability and mechanical properties.However,its damage and failure mechanisms und... Poly(phthalazinone ether sulfone ketone)(PPESK)is a new-generation high-performance thermoplastic resin that exhibits excellent thermal stability and mechanical properties.However,its damage and failure mechanisms under high-temperature and high-strain-rate coupling conditions remain unclear,significantly limiting the engineering applications of PPESK-based composites in extreme environments such as aerospace.To address this issue,in this study,a temperature-controlled split Hopkinson pressure bar experimental platform was developed for dynamic tensile/compressive loading scenarios.Combined with scanning electron microscopy and molecular dynamics simulations,the thermomechanical behavior and failure mechanisms of PPESK were systematically investigated over the temperature range of 293-473 K.The study revealed a novel"dynamic hysteresis brittle behavior"and its underlying"segmental activation±response lag antagonistic mechanism".The results showed that the strain-rate-induced response lag of polymer chain segments significantly weakened the viscous dissipation capacity activated by thermal energy at elevated temperatures.Although high-strain-rate conditions led to notable enhancement in the dynamic strength of the material(with an increase of 8%-233%,reaching 130%-330%at elevated temperatures),the fracture surface morphology tended to become smoother,and brittle fracture characteristics became more pronounced.Based on these findings,a temperature±strain rate hysteresis antagonistic function was constructed,which effectively captured the competitive relationship between temperature-driven relaxation behavior and strain-rateinduced hysteresis in thermoplastic resins.A multiscale damage evolution constitutive model with temperature±rate coupling was subsequently established and numerically implemented via the VUMAT user subroutine.This study not only unveils the nonlinear damage mechanisms of PPESK under combined service temperatures and dynamic/static loading conditions,but also provides a strong theoretical foundation and engineering guidance for the constitutive modeling and parametric design of thermoplastic resin-based materials. 展开更多
关键词 PPESK dynamic damage evolution Temperature-strain rate coupling dynamic hysteresis embrittlement behavior Antagonistic mechanism
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Dynamics of electromagnetic slip coupling for hydraulic power steering application and its energy-saving characteristics 被引量:2
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作者 唐斌 江浩斌 +2 位作者 徐哲 耿国庆 徐兴 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第5期1994-2000,共7页
To improve high-speed road feel and enhance energetic efficiency of hydraulic power steering(HPS) system in heavy-duty vehicles, an electromagnetic slip coupling(ESC) was applied to the steering system, which regulate... To improve high-speed road feel and enhance energetic efficiency of hydraulic power steering(HPS) system in heavy-duty vehicles, an electromagnetic slip coupling(ESC) was applied to the steering system, which regulated discharge flow of steering pump to realize variable assist characteristic as well as uniquely transfer on-demand power from engine to steering pump. The model of ESC was established and the dynamic characteristics of ESC were presented by the way of simulation and experiment. Upon the layout of the assist characteristics, output torque of ESC was derived. Based on the ESC model, the output torque characteristics of ESC were simulated under steering situation and straight driving situation, respectively. The consistency of simulated ESC output torque and the one deduced from assist characteristics verifies the correctness of the ESC dynamic model. To illustrate energy saving characteristics of ESC-HPS, energy consumption comparison of ESC-HPS and conventional HPS was carried out qualitatively and quantitatively. It follows that the energy consumption of ESC-HPS decreases by 50% compared with that of HPS. 展开更多
关键词 heavy-duty vehicle hydraulic power steering system electromagnetic slip coupling dynamics energy saving
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Complete geometric nonlinear formulation for rigid-flexible coupling dynamics 被引量:4
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作者 刘铸永 洪嘉振 刘锦阳 《Journal of Central South University》 SCIE EI CAS 2009年第1期119-124,共6页
A complete geometric nonlinear formulation for rigid-flexible coupling dynamics of a flexible beam undergoing large overall motion was proposed based on virtual work principle, in which all the high-order terms relate... A complete geometric nonlinear formulation for rigid-flexible coupling dynamics of a flexible beam undergoing large overall motion was proposed based on virtual work principle, in which all the high-order terms related to coupling deformation were included in dynamic equations. Simulation examples of the flexible beam with prescribed rotation and free rotation were investigated. Numerical results show that the use of the first-order approximation coupling (FOAC) model may lead to a significant error when the flexible beam experiences large deformation or large deformation velocity. However, the correct solutions can always be obtained by using the present complete model. The difference in essence between this model and the FOAC model is revealed. These coupling high-order terms, which are ignored in FOAC model, have a remarkable effect on the dynamic behavior of the flexible body. Therefore, these terms should be included for the rigid-flexible dynamic modeling and analysis of flexible body undergoing motions with high speed. 展开更多
关键词 flexible beam rigid-flexible coupling dynamic modeling numerical simulation
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Uncertainty quantification of mechanism motion based on coupled mechanism—motor dynamic model for ammunition delivery system 被引量:1
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作者 Jinsong Tang Linfang Qian +3 位作者 Longmiao Chen Guangsong Chen Mingming Wang Guangzu Zhou 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期125-133,共9页
In this paper,a dynamic modeling method of motor driven electromechanical system is presented,and the uncertainty quantification of mechanism motion is investigated based on this method.The main contribution is to pro... In this paper,a dynamic modeling method of motor driven electromechanical system is presented,and the uncertainty quantification of mechanism motion is investigated based on this method.The main contribution is to propose a novel mechanism-motor coupling dynamic modeling method,in which the relationship between mechanism motion and motor rotation is established according to the geometric coordination of the system.The advantages of this include establishing intuitive coupling between the mechanism and motor,facilitating the discussion for the influence of both mechanical and electrical parameters on the mechanism,and enabling dynamic simulation with controller to take the randomness of the electric load into account.Dynamic simulation considering feedback control of ammunition delivery system is carried out,and the feasibility of the model is verified experimentally.Based on probability density evolution theory,we comprehensively discuss the effects of system parameters on mechanism motion from the perspective of uncertainty quantization.Our work can not only provide guidance for engineering design of ammunition delivery mechanism,but also provide theoretical support for modeling and uncertainty quantification research of mechatronics system. 展开更多
关键词 Ammunition delivery system Electromechanical coupling dynamics Uncertainty quantification Generalized probability density evolution
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Dynamic analysis of spatial parallel manipulator with rigid and flexible couplings 被引量:3
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作者 LIU Shan-zeng DAI Jian-sheng +4 位作者 SHEN Gang LI Ai-min CAO Guo-hua FENG Shi-zhe MENG De-yuan 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第4期840-853,共14页
The dynamics of spatial parallel manipulator with rigid and flexible links is explored. Firstly, a spatial beam element model for finite element analysis is established. Then, the differential equation of motion of be... The dynamics of spatial parallel manipulator with rigid and flexible links is explored. Firstly, a spatial beam element model for finite element analysis is established. Then, the differential equation of motion of beam element is derived based on finite element method. The kinematic constraints of parallel manipulator with rigid and flexible links are obtained by analyzing the motive parameters of moving platform and the relationships of movements of kinematic chains, and the overall kinetic equation of the parallel mechanism with rigid and flexible links is derived by assembling the differential equations of motion of components. On the basis of abovementioned analyses, the dynamic mechanical analysis of the spatial parallel manipulator with rigid and flexible links is conducted. After obtaining the method for force analysis and expressions for the calculation of dynamic stress of flexible components, the dynamic analysis and simulation of spatial parallel manipulator with rigid and flexible links is performed. The result shows that because of the elastic deformation of flexible components in the parallel mechanism with rigid and flexible links, the force on each component in the mechanism fluctuates sharply, and the change of normal stress at the root of drive components is also remarkable. This study provides references for further studies on the dynamic characteristics of parallel mechanisms with rigid and flexible links and for the optimization of the design of the mechanism. 展开更多
关键词 RIGID and flexible couplingS parallel mechanism FINITE ELEMENT FORCE analysis dynamic stress
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Multi-degree-of-freedom coupling dynamic characteristic of TBM disc cutter under shock excitation 被引量:10
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作者 霍军周 孙晓龙 +2 位作者 李广庆 李涛 孙伟 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3326-3337,共12页
When the tunneling boring machine(TBM) cutterhead tunnels, the excessive vibration and damage are a severe engineering problem, thereby the anti-vibration design is a key technology in the disc cutter system. The stru... When the tunneling boring machine(TBM) cutterhead tunnels, the excessive vibration and damage are a severe engineering problem, thereby the anti-vibration design is a key technology in the disc cutter system. The structure of disc cutter contains many joint interfaces among cutter ring, cutter body, bearings and cutter shaft. On account of the coupling for dynamic contact and the transfer path among joint interface, mechanical behavior of disc cutter becomes extremely complex under the impact of heavy-duty, which puts forward higher requirements for disc cutter design. A multi-degree-of-freedom coupling dynamic model, which contains a cutter ring, a cutter body, two bearings and cutter shaft, is established, considering the external stochastic excitations, bearing nonlinear contact force, multidirectional mutual coupling vibration, etc. Based on the parameters of an actual project and the strong impact external excitations, the modal properties and dynamic responses are analyzed, as well as the cutter shaft and bearings' loads and load transmission law are obtained. Numerical results indicate the maximum radial and axial cutter ring amplitudes of dynamic responses are 0.568 mm and 0.112 mm; the maximum radial and axial vibration velocities are 41.1 mm/s and 38.9 mm/s; the maximum radial and axial vibration accelerations are 94.7 m/s2 and 58.6 m/s2; the maximum swing angle and angular velocity of cutter ring are 0.007° and 0.0074 rad/s, respectively. Finally, the maximum load of bearing roller is 40.3 k N. The proposed research lays a foundation for structure optimization design of disc cutter and cutter base, as well as model selection, modification and fatigue life of the cutter bearing. 展开更多
关键词 tunneling boring machine(TBM) disc cutter system joint interface coupled nonlinearity dynamical characteristics
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Coupling dynamic equations of motor-driven elastic linkage mechanism with links fabricated from three-dimensional braided composite materials 被引量:2
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作者 蔡敢为 王湘 +3 位作者 王汝贵 李兆军 张晓斌 常平平 《Journal of Central South University of Technology》 2005年第2期171-175,共5页
A motor-driven linkage system with links fabricated from 3-dimensional braided composite materials was studied. A group of coupling dynamic equations of the system, including composite materials parameters, electromag... A motor-driven linkage system with links fabricated from 3-dimensional braided composite materials was studied. A group of coupling dynamic equations of the system, including composite materials parameters, electromagnetism parameters of the motor and structural parameters of the link mechanism, were established by finite element method. Based on the air-gap field of non-uniform airspace of three-phase alternating current motor caused by the vibration eccentricity of rotor, the relation of electromechanical coupling at the actual running state was analyzed. And the motor element, which defines the transverse vibration and torsional vibration of the motor as its nodal displacement, was established. Then, based on the damping element model and the expression of energy dissipation of the 3-dimentional braided composite materials, the damping matrix of the system was established by calculating each order modal damping of the mechanism. 展开更多
关键词 elastic mechanism finite element composite material electromechanical coupling dynamic analysis
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Coupling Analysis of Moment of Inertia & Dynamic on Optoelectronic Tracking Turntable
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作者 Xu Xiaoming Liu Shuli Gu Guohua 《仪器仪表学报》 EI CAS CSCD 北大核心 2013年第S1期214-218,共5页
With photoelectric tracking system as the research object,based on the theorem of moment of momentum and Euler dynamic equation,Nonlinear biaxial coupling dynamic model of tracking turntable is established.Effects of ... With photoelectric tracking system as the research object,based on the theorem of moment of momentum and Euler dynamic equation,Nonlinear biaxial coupling dynamic model of tracking turntable is established.Effects of moment of inertia coupling,speed coupling and the dynamic coupling between tracking turntable shafts were studied,the analytical relation between them was given in theory.Verify the change trend of theoretical model.And it provides the theory reference and model base,for the future design of the high precision tracking controller And control parameter selection and optimization.In the end,specific measures are made for structure optimization. 展开更多
关键词 Opto-electronic TRACKING TURNTABLE MOMENT of INERTIA dynamics coupling modeling
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Dynamic Study on Rigid and Flexible Coupling System for Terminally Sensitive Submunition 被引量:1
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作者 郭锐 刘荣忠 《Defence Technology(防务技术)》 SCIE EI CAS 2007年第3期235-240,共6页
A kinetic model of the rigid and flexible coupling system for terminally sensitive submunition is set up with Kane's method. The parachute is considered as a flexible body, the flexible displacement is expressed w... A kinetic model of the rigid and flexible coupling system for terminally sensitive submunition is set up with Kane's method. The parachute is considered as a flexible body, the flexible displacement is expressed with modal spread method, the position of the parachute is expressed with a hybrid coordinate method, and the kinematics of the terminally sensitive submunition is analyzed. Ten generalized coordinates relative to the attitude of the terminally sensitive submunition are chosen, and the correlative generalized active forces, the generalized inertial forces, the generalized internal forces are calculated in turn. On the base of the Kane's method, the ten degrees of freedom dynamic equations for the coupled terminally sensitive submunition are finally set up. This model can be used to expediently simulate and analyze accurately the exterior ballistic trajectory of terminally sensitive submunition, and provide the overall design of the terminally sensitive submunition with some helpful references. 展开更多
关键词 力学 刚柔耦合系统 动力模式 凯恩方法
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Investigation of flight stability for fixed canard dual-spin projectile via CFD/RBD coupled method
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作者 Gang Wang Tengyue Zhang +2 位作者 Tianyu Lin Haizhen Lin Ke Xi 《Defence Technology(防务技术)》 2025年第11期1-18,共18页
In this paper,a high-fidelity computational fluid dynamics(CFD)and rigid body dynamics(RBD)coupled platform for virtual flight simulation is developed to investigate the flight stability of fixed canard dual-spin proj... In this paper,a high-fidelity computational fluid dynamics(CFD)and rigid body dynamics(RBD)coupled platform for virtual flight simulation is developed to investigate the flight stability of fixed canard dual-spin projectile.The platform's reliability is validated by reproducing the characteristic resonance instability of such projectiles.By coupling the solution of the Unsteady Reynolds-Averaged Navier-Stokes equations and the seven-degree-of-freedom RBD equations,the virtual flight simulations of fixed canard dual-spin projectiles at various curvature trajectories are achieved,and the dynamic mechanism of the trajectory following process is analyzed.The instability mechanism of the dynamic instability during trajectory following process of the fixed canard dual-spin projectile is elucidated by simulating the rolling/coning coupled forced motion,and subsequently validated through virtual flight simulations.The findings suggest that an appropriate yaw moment can drive the projectile axis to precession in the tangential direction of the trajectory,thereby enhancing the trajectory following stability.However,the damping of the projectile attains its minimum value when the forward body equilibrium rotational speed(-128 rad/s)is equal to the negative of the fast mode frequency of the projectile.Insufficient damping leads to the fixed canard dual-spin projectile exiting the dynamic stability domain during the trajectory following,resulting in weakly damped instability.Keeping the forward body not rotating or increasing the spin rates to-192 rad/s can enhance the projectile's damping,thereby improving its dynamic stability. 展开更多
关键词 Fixed canard dual-spin projectile CFD/RBD coupled method Virtualflight simulation Following stability dynamic stability
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Mechanical properties and failure behavior of rock with different flaw inclinations under coupled static and dynamic loads 被引量:30
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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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基于一般性动力学建模的多电机复合同步控制 被引量:2
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作者 谢斌 雷力 +1 位作者 王在相 李叶松 《中国电机工程学报》 北大核心 2025年第7期2821-2831,I0033,共12页
多电机同步系统广泛应用于精密制造领域,但是多样化系统结构与差异化同步控制需求,为高通用性同步控制策略设计带来了困难。为克服这些问题,该文建立多电机同步系统的一般性动力学模型,以统一形式的数学模型描述多样化同步控制问题;通... 多电机同步系统广泛应用于精密制造领域,但是多样化系统结构与差异化同步控制需求,为高通用性同步控制策略设计带来了困难。为克服这些问题,该文建立多电机同步系统的一般性动力学模型,以统一形式的数学模型描述多样化同步控制问题;通过基于运动学的坐标变换,揭示动力学模型内部复杂耦合关系及在耦合效应影响下的同步误差形成机理;通过提出运动解耦设计方法,精确补偿驱动轴与同步轴之间动力学特性差异,并实现系统解耦;基于已解耦系统设计反馈形式的运动跟踪控制器提升系统实时同步性能。仿真与实验结果表明,依据一般性动力学建模分析提出的复合同步控制策略具有明确的可解释性,能够有效提高多电机同步控制性能。 展开更多
关键词 多电机同步 动力学建模 耦合系统 同步控制 解耦控制
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复杂地质动力环境下冲击地压的影响因素与分布特征 被引量:2
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作者 荣海 魏世龙 +2 位作者 张宏伟 陈林林 李南南 《煤炭科学技术》 北大核心 2025年第3期423-434,共12页
冲击地压是多项因素耦合作用的结果。冲击地压的发生不仅与开采工程效应有关,还与矿井所处的地质动力环境紧密相关,特别是在复杂地质动力环境下,冲击地压的发生更加频繁。为研究复杂地质动力环境下冲击地压的影响因素,采用理论分析、微... 冲击地压是多项因素耦合作用的结果。冲击地压的发生不仅与开采工程效应有关,还与矿井所处的地质动力环境紧密相关,特别是在复杂地质动力环境下,冲击地压的发生更加频繁。为研究复杂地质动力环境下冲击地压的影响因素,采用理论分析、微震监测分析、地质勘探等方法,以耿村煤矿12240工作面作为研究对象,分析耿村煤矿地质动力环境特征,评判耿村煤矿发生冲击地压的危险性。计算12240工作面冲击地压发生的临界深度,采用已发生冲击地压和大能量微震事件对临界深度进行验证,揭示冲击地压发生震源深度的关系。采用“冲击地压的三条件准则”对微震事件的发生频次、能量,以及空间位置的分布规律进行分析。通过分析12240工作面顶板预裂爆破前后的微震事件频次及能量的变化规律,以及顶板预裂爆破后孔壁的窥视结果,对12240工作面采取的远场解危措施的效果性进行验证。结果表明:耿村煤矿具备中等矿井动力灾害的地质动力环境,属于严重冲击地压矿井。耿村煤矿冲击地压发生的临界深度为标高−545.79 m,12240工作面埋深已临近冲击地压发生临界深度,具备冲击地压发生危险。F16断层作为耿村煤矿的主要地质构造因素,是地质动力环境的重要构成,为大能量冲击地压的孕育和发生提供了能量基础;采动效应是冲击地压发生的充分条件,对12240工作面初采期间冲击地压的影响较小;解危措施是控制条件,有效降低了12240工作面冲击地压发生的危险。研究成果可为防治复杂地质动力环境下冲击地压等矿井动力灾害提供依据和参考。 展开更多
关键词 地质动力区划 冲击地压 微震事件 多因素耦合 复杂地质条件
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碳交易耦合下现货电能量市场日前出清方法 被引量:6
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作者 崔杨 徐扬 +3 位作者 刘新元 程雪婷 程丁然 朱晗 《中国电机工程学报》 北大核心 2025年第1期66-79,I0006,共15页
为实现现货电能量市场和碳交易市场的有效协同,从电力交易中心把控系统碳排放的角度出发,构建一种电-碳耦合市场运营机制,并提出考虑动态碳排放强度的电-碳耦合市场日前出清模型。首先,在现有的电力市场运行规则基础上将碳交易市场进行... 为实现现货电能量市场和碳交易市场的有效协同,从电力交易中心把控系统碳排放的角度出发,构建一种电-碳耦合市场运营机制,并提出考虑动态碳排放强度的电-碳耦合市场日前出清模型。首先,在现有的电力市场运行规则基础上将碳交易市场进行嵌入,构建电-碳耦合市场联合运行机制;其次,基于边际发电成本特性和单调非递减阶梯式报价规则,构建传统能源发电商和碳捕集电厂的分段报价曲线;再次,推导传统能源发电商和碳捕集电厂的动态碳排放强度模型,并基于等面积原则构建二者的阶梯式动态碳排放强度曲线;然后,考虑阶梯式报价曲线和动态碳排放强度,以综合成本最小为目标兼顾电网运行和物理约束,构建电-碳耦合市场日前出清模型。最后,在PJM-5节点和IEEE-39节点电力系统进行算例仿真分析,通过设置不同的场景验证所提电-碳耦合市场日前出清模型的有效性。 展开更多
关键词 电-碳耦合市场 动态碳排放强度 日前市场出清 碳捕集电厂
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工业母机正向设计技术研究进展 被引量:2
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作者 陈传海 宋晋奇 +4 位作者 刘志峰 郭劲言 赵永胜 刘洪强 王军见 《机床与液压》 北大核心 2025年第13期1-10,共10页
工业母机作为现代制造业的核心装备,其发展水平直接决定国家制造业的整体竞争力。长期以来,我国高端机床装备的研发主要采用跟随仿制策略,导致所研制产品在功能和性能上不及仿制对象,因此同期国产机床装备远落后于国际先进产品。为满足... 工业母机作为现代制造业的核心装备,其发展水平直接决定国家制造业的整体竞争力。长期以来,我国高端机床装备的研发主要采用跟随仿制策略,导致所研制产品在功能和性能上不及仿制对象,因此同期国产机床装备远落后于国际先进产品。为满足机床装备向高端化、自主化发展的迫切需求,亟须开展机床正向设计技术研究,系统性地指导机床的结构优化与创新,突破传统设计方法中“试错迭代”的局限,实现机床性能设计的自主可控。从工业母机运动链设计、静动刚度设计、热平衡设计、机电耦合设计和几何精度设计等方面,综述有关工业母机正向设计技术的国内外研究现状,分析指出正向设计技术存在的不足,并展望工业母机正向设计技术的发展动态。 展开更多
关键词 工业母机 运动链设计 静动刚度设计 热平衡设计 机电耦合设计 几何精度设计
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漂浮式光伏混合式系泊系统对极浅水大潮差环境的适用性研究 被引量:1
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作者 蒋习民 魏宇豪 +3 位作者 刘锦昆 王树青 宋宪仓 王霄 《海洋工程》 北大核心 2025年第1期48-61,共14页
漂浮式光伏作业海域水深浅、潮差大的特征显著,极浅水条件下潮位的变化将对漂浮式光伏系泊系统的定位能力产生显著的影响,传统系泊方案无法满足漂浮式光伏极浅水、大潮差长期稳定系泊定位的需求。在传统浅水悬链线系泊系统的基础上,通... 漂浮式光伏作业海域水深浅、潮差大的特征显著,极浅水条件下潮位的变化将对漂浮式光伏系泊系统的定位能力产生显著的影响,传统系泊方案无法满足漂浮式光伏极浅水、大潮差长期稳定系泊定位的需求。在传统浅水悬链线系泊系统的基础上,通过在系缆不同位置处布置系列重物块来改变不同水深条件下系缆的空间构型和水平回复力特性,提出了一种改进混合式系泊系统以满足漂浮式光伏结构不同潮位下的系泊定位需求。以1 MW漂浮式光伏方阵为例,对混合式系泊系统在不同水位和荷载方向下的适用性进行了数值研究。结果表明,不同水位下漂浮式光伏模块运动响应幅值差异不超过14%,高水位下系缆张力响应明显大于低水位下系缆张力响应,其张力响应幅值差异不超过268%,表明文中提出的混合式系泊系统对极浅水、大潮差漂浮式光伏结构具有较好的系泊定位性能。 展开更多
关键词 漂浮式光伏结构 极浅水大潮差 混合式系泊系统 耦合动力分析 系统动力响应
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基于刚柔耦合模型的地铁啸叫研究 被引量:1
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作者 刘洋 李午垚 江晓禹 《铁道标准设计》 北大核心 2025年第4期205-213,共9页
地铁在通过狭窄的曲线轨道时经常会产生严重的啸叫噪声,严重影响人们的出行体验,故建立动力学模型研究地铁车辆在曲线段产生啸叫现象的机理。为使高频范围内的动力学仿真结果更加准确,在动力学模型中引入柔性轮对组成动力学刚柔耦合系统... 地铁在通过狭窄的曲线轨道时经常会产生严重的啸叫噪声,严重影响人们的出行体验,故建立动力学模型研究地铁车辆在曲线段产生啸叫现象的机理。为使高频范围内的动力学仿真结果更加准确,在动力学模型中引入柔性轮对组成动力学刚柔耦合系统,模型采用三维滚动接触方法模拟轮轨间的弹性接触,在计算切向力时使用迭代算法并在此基础上引入下落摩擦机制。针对我国地铁运行的速度和曲线半径,设计了5个研究工况,在动力学系统中对不同工况下车辆通过曲线时的蠕滑率和接触力进行研究,并将接触力的计算结果导入边界元模型中,分析不同工况下车轮的振动响应和约束阻尼层的降噪效果。研究结果表明:由弹性轮对组成的动力学刚柔耦合系统在曲线段的垂向振动加速度和垂向力均大于刚性轮对;引入下落摩擦机制后,当曲线半径分别为200 m和300 m时,轮轨接触力会出现振荡且轮轨间发生两点接触,容易产生啸叫噪声,当曲线半径为400 m时,接触力没有出现振荡且轮轨间主要是踏面接触;车轮在曲线段的振动主要是轴向振动;在相同曲线半径下,列车通过曲线时轮轨间产生的接触力会随列车速度的增大而增大,且当速度较大时轮轨间更容易发生两点接触;车轮添加约束阻尼层后,在相同激振力的作用下,阻尼车轮在测点的总声压级均小于标准车轮的总声压级,最大声压级下降21 dB。 展开更多
关键词 地铁 啸叫 数值模拟 刚柔耦合 降噪 动力学系统
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基于遗传算法的重载车轨耦合动力学模型校正 被引量:1
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作者 曹源 王雯婧 +3 位作者 宿帅 孙永奎 王峰 王文昆 《铁道科学与工程学报》 北大核心 2025年第8期3481-3492,共12页
重载铁路在现代交通运输中承担着不可替代的作用。车辆−轨道耦合动力学模型是重载列车运行过程中轮轨相互作用机制刻画的重要工具,为重载钢轨病害的产生和演化机理的分析提供依据。然而,现有研究大多依赖人工手动调优的方式来实现车辆−... 重载铁路在现代交通运输中承担着不可替代的作用。车辆−轨道耦合动力学模型是重载列车运行过程中轮轨相互作用机制刻画的重要工具,为重载钢轨病害的产生和演化机理的分析提供依据。然而,现有研究大多依赖人工手动调优的方式来实现车辆−轨道耦合动力学模型的校正,此方式工作量大、效率低且难以保证仿真模型与实际场景的一致性。针对该问题,提出一种基于遗传算法的车辆−轨道耦合动力学模型校正方法,实现模型的自适应校正,为轮轨相互作用机制和钢轨病害的分析奠定基础。首先,基于Universal Mechanism(UM)软件建立车辆-轨道耦合动力学模型,并设计相应的Matlab接口,为优化算法在迭代过程中修正模型参数和运行模型仿真提供基础;其次,引入Morris筛选法对模型参数的敏感性进行分析,筛选出高敏感车辆参数,用于车辆−轨道耦合动力学模型校正;然后,考虑仿真模型与实际车轨相互作用的一致性,设计基于遗传算法的模型校正方法,实现车辆−轨道耦合动力学模型的自适应校正;最后,利用真实线路小半径曲线的监测数据对提出的算法的敏感参数筛选和矫正效果进行验证。研究结果表明,提出的方法不仅可有效筛选出高敏感性车辆参数,还能实现车辆−轨道耦合动力学模型的准确校正。研究成果优化了车辆−轨道耦合动力学模型参数的自适应调整技术,能有效提升车辆−轨道耦合动力学模型的分析精度,进而为重载线路智能运维提供技术支撑。 展开更多
关键词 重载铁路 车轨耦合 动力学模型 遗传算法 模型校正
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一种兼顾仿真效率和精度的车辆-轨道非线性空间耦合动力学模型 被引量:1
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作者 王伟 雷晓燕 +1 位作者 罗锟 陈鹏 《振动与冲击》 北大核心 2025年第4期10-20,共11页
车辆-轨道非线性空间耦合动力学精细化模型常常需要耗费更多的机时,如何解决分析精度与计算效率的矛盾,是车辆-轨道非线性空间耦合动力学数值分析中的难点。首先,建立了精细化的车辆-轨道非线性空间耦合动力学模型,构建了在用迹线法搜... 车辆-轨道非线性空间耦合动力学精细化模型常常需要耗费更多的机时,如何解决分析精度与计算效率的矛盾,是车辆-轨道非线性空间耦合动力学数值分析中的难点。首先,建立了精细化的车辆-轨道非线性空间耦合动力学模型,构建了在用迹线法搜索轮轨空间接触点中引入轮轨准弹性修正的、更为精细的轮轨接触几何关系,并将迹线法融入到交叉迭代中求解车辆-轨道非线性空间耦合动力学方程,实现了同步进行轮轨接触点搜索与车辆-轨道非线性空间耦合动力学方程求解,提高了模型分析精度和数值计算效率;然后,为验证理论模型的正确性,与相关文献结果进行了对比计算,验证了模型和算法的有效性;最后,分析了模型的四类简化形式对系统响应的影响。研究表明:采用集中支撑的弹性元件模拟钢轨扣件,无法真实反映两侧扣件对钢轨侧滚振动的协同约束作用,将导致计算结果失真,采用分离支撑的弹性元件模拟钢轨扣件更为合理;轨道结构底座板参振对系统响应的影响显著,在模型中应给予考虑;底座板超出轨道板的部分对系统响应的影响较小,所产生的误差在可接受范围内;轨道子系统模型A能兼顾仿真效率和计算精度,适合用作车辆-三层轨道非线性空间耦合系统振动精细化分析模型。 展开更多
关键词 车辆-轨道非线性空间耦合动力学 高速铁路 交叉迭代 准弹性修正 有限元模型
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电场耦合电动车动态无线充电系统及耦合机构设计方法 被引量:3
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作者 苏玉刚 檀竹斌 +2 位作者 胡宏晟 陈丰伟 邓仁为 《中国电机工程学报》 北大核心 2025年第4期1599-1609,I0031,共12页
电场耦合无线电能传输(electric-field coupled wireless power transfer,EC-WPT)系统具有耦合机构轻薄且成本低、对耦合机构之间或周围导体产生的涡流损耗小等优点,适用于电动车动态无线充电应用。该文构建一种基于分段式耦合机构的动... 电场耦合无线电能传输(electric-field coupled wireless power transfer,EC-WPT)系统具有耦合机构轻薄且成本低、对耦合机构之间或周围导体产生的涡流损耗小等优点,适用于电动车动态无线充电应用。该文构建一种基于分段式耦合机构的动态EC-WPT系统,以双边LC补偿的动态EC-WPT系统为对象建立系统的数学模型,对系统的接收极板在分段式导轨上方移动时系统的输出特性进行理论推导;给出一种分段式导轨的供电切换策略;以提升系统传输性能及耦合机构抗横向偏移能力等为目标,给出一种分段式耦合机构的参数设计方法;建立系统的仿真模型对接收极板运动过程中系统的输出功率进行分析;搭建一套实验装置对所设计系统及参数设计方法的合理性进行验证。仿真和实验结果表明,接收极板在相邻两段导轨过渡区域时系统的输出功率变化趋势与理论结果一致。 展开更多
关键词 动态无线充电 电场耦合 分段式导轨 输出功率波动 耦合机构参数设计
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