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MOLECULAR DYNAMICS SIMULATIONS OF FILLED AND EMPTY CAGE-LIKE WATER CLUSTERS IN LIQUID WATER AND THEIR SIGNIFICANCE TO GAS HYDRATE FORMATION MECHANISMS
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作者 GUO Guangjun,ZHANG Yigang and ZHAO Yajuan Institute of Geology and Geophysics,Chinese Academy of sciences Beijing 100029,Chinese 《化工学报》 EI CAS CSCD 北大核心 2003年第z1期62-66,共5页
Molecular dynamics simulations are performed to observe the evolutions of 512 and 51262 cage-like water clusters filled with or without a methane molecule immersed in bulk liquid water at 250 K and 230 K. The lifetime... Molecular dynamics simulations are performed to observe the evolutions of 512 and 51262 cage-like water clusters filled with or without a methane molecule immersed in bulk liquid water at 250 K and 230 K. The lifetimes of these clusters are calculated according to their Lindemann index δ (t) using the criteria of δ≥0.07. For both the filled and empty clusters, we find the dynamics of bulk water determines the lifetimes of cage-like water clusters, and that the lifetime of 512 62 cage-like cluster is the same as that of 512 cage-like cluster. Although the methane molecule indeed makes the filled cage-like cluster more stable than the empty one, the empty cage-like cluster still has chance to be long-lived compared with the filled clusters. These observations support the labile cluster hypothesis on the formation mechanisms of gas hydrates. 展开更多
关键词 like in time that were MOLECULAR dynamics simulationS OF FILLED AND EMPTY CAGE-LIKE WATER CLUSTERS IN LIQUID WATER AND THEIR SIGNIFICANCE TO GAS HYDRATE FORMATION mechanismS of cage GAS
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Dynamic modelling and properties analysis of 3RSR parallel mechanism considering spherical joint clearance and wear 被引量:6
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作者 HOU Yu-lei DENG Yun-jiao ZENG Da-xing 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期712-727,共16页
The collision and wear caused by inevitable clearance in kinematic pair have an effect on the dynamic characteristics of the mechanism.Therefore,we established the dynamic model of a 3RSR(R is the revolute joint and S... The collision and wear caused by inevitable clearance in kinematic pair have an effect on the dynamic characteristics of the mechanism.Therefore,we established the dynamic model of a 3RSR(R is the revolute joint and S is the spherical joint)parallel mechanism with spherical joint clearance based on the modified Flores contact force model and the modified Coulomb friction model using Newton-Euler method.The standard quaternion was introduced in the constraint equation,and the four-order Runge-Kutta method was adopted to solve the 3RSR dynamic model.The simulation results were compared and analyzed with the numerical results.The geometrical parameters of the worn ball socket were solved based on the Archard wear model,and the geometrical reconstruction of the worn surface was carried out.The geometric reconstruction parameters were substituted into the dynamic model,which was to analyze the dynamic response of the 3RSR parallel mechanism with wear and spherical joint clearance.The simulation results show that the irregular wear occurs in the spherical joint with clearance under the presence of the impact and friction force.The long-term wear will increase the fluctuation of the contact force,thereby decreasing the movement stability of the mechanism. 展开更多
关键词 parallel mechanism dynamics spherical joint clearance WEAR Newton-Euler method
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A Class of Parallel Algorithms of Real-TimeNumerical Simulation for Stiff Dynamic System 被引量:2
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作者 Cao Xuenian Liu Degui Li Shoufu 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2000年第4期51-58,共8页
In this paper a class of real-time parallel modified Rosenbrock methods of numerical simulation is constructed for stiff dynamic systems on a multiprocessor system, and convergence and numerical stability of these met... In this paper a class of real-time parallel modified Rosenbrock methods of numerical simulation is constructed for stiff dynamic systems on a multiprocessor system, and convergence and numerical stability of these methods are discussed. A-stable real-time parallel formula of two-stage third-order and A(α)-stable real-time parallel formula with o ≈ 89.96° of three-stage fourth-order are particularly given. The numerical simulation experiments in parallel environment show that the class of algorithms is efficient and applicable, with greater speedup. 展开更多
关键词 dynamic system Real-time simulation parallel algorithms?
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Effects of tensile temperatures on phase transformations in zirconium by molecular dynamics simulations 被引量:1
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作者 AN Ke-ying OU Xiao-qin +3 位作者 AN Xing-long ZHANG Hao NI Song SONG Min 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期1932-1945,共14页
The effects of tensile temperatures ranging from 100 K to 900 K on the phase transition of hexagonal close-packed(HCP)zirconium were investigated by molecular dynamics simulations,which were combined with experimental... The effects of tensile temperatures ranging from 100 K to 900 K on the phase transition of hexagonal close-packed(HCP)zirconium were investigated by molecular dynamics simulations,which were combined with experimental observation under high resolution transmission electron microscopy.The results show that externally applied loading first induced the HCP to body-centered cubic(BCC)phase transition in the Pitsch-Schrader(PS)orientation relationship(OR).Then,the face-centered cubic(FCC)structure transformed from the BCC phase in the Bain path.However,the HCP-to-BCC transition was incomplete at 100 K and 300 K,resulting in a prismatic-type OR between the FCC and original HCP phase.Additionally,at the temperature ranging from 100 K to 600 K,the inverse BCC-to-HCP transition occurred locally following other variants of the PS OR,resulting in a basal-type relation between the newly generated HCP and FCC phases.A higher tensile temperature promoted the amount of FCC phase transforming into the BCC phase when the strain exceeded 45%.Besides,the crystal stretched at lower temperatures exhibits relatively higher strength but by the compromise of plasticity.This study reveals the deformation mechanisms in HCP-Zr at different temperatures,which may provide a better understanding of the deformation mechanism of zirconium alloys under different application environments. 展开更多
关键词 ZIRCONIUM phase transformation molecular dynamics simulation deformation mechanism tensile temperature
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Numerical simulation of dynamic fracture properties of rocks under different static stress conditions 被引量:8
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作者 LIANG Zheng-zhao QIAN Xi-kun +1 位作者 ZHANG Ya-fang LIAO Zhi-yi 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期624-644,共21页
When underground cavities are subjected to explosive stress waves,a uniquely damaged zone may appear due to the combined effect of dynamic loading and static pre-load stress.In this study,a rate-dependent two-dimensio... When underground cavities are subjected to explosive stress waves,a uniquely damaged zone may appear due to the combined effect of dynamic loading and static pre-load stress.In this study,a rate-dependent two-dimensional rock dynamic constitutive model was established to investigate the dynamic fractures of rocks under different static stress conditions.The effects of the loading rate and peak amplitude of the blasting wave under different confining pressures and the vertical compressive coefficient(K_(0))were considered.The numerical simulated results reproduced the initiation and further propagation of primary radial crack fractures,which were in agreement with the experimental results.The dynamic loading rate,peak amplitude,static vertical compressive coefficient(K_(0))and confining pressure affected the evolution of fractures around the borehole.The heterogeneity parameter(m)plays an important role in the evolution of fractures around the borehole.The crack propagation path became more discontinuous and rougher in a smallerheterogeneity parameter case. 展开更多
关键词 rock mechanics coupled static and dynamic loading numerical simulation rate-dependent damage constitutive model
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The reaction mechanism and interfacial crystallization of Al nanoparticle-embedded Ni under shock loading
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作者 Yifan Xie Jian-Li Shao +1 位作者 Rui Liu Pengwan Chen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期114-124,共11页
The shock-induced reaction mechanism and characteristics of Ni/Al system,considering an Al nanoparticle-embedded Ni single crystal,are investigated through molecular dynamics simulation.For the shock melting of Al nan... The shock-induced reaction mechanism and characteristics of Ni/Al system,considering an Al nanoparticle-embedded Ni single crystal,are investigated through molecular dynamics simulation.For the shock melting of Al nanoparticle,interfacial crystallization and dissolution are the main characteristics.The reaction degree of Al particle first increases linearly and then logarithmically with time driven by rapid mechanical mixing and following dissolution.The reaction rate increases with the decrease of particle diameter,however,the reaction is seriously hindered by interfacial crystallization when the diameter is lower than 9 nm in our simulations.Meanwhile,we found a negative exponential growth in the fraction of crystallized Al atoms,and the crystallinity of B2-NiAl(up to 20%)is positively correlated with the specific surface area of Al particle.This can be attributed to the formation mechanism of B2-NiAl by structural evolution of finite mixing layer near the collapsed interface.For shock melting of both Al particle and Ni matrix,the liquid-liquid phase inter-diffusion is the main reaction mechanism that can be enhanced by the formation of internal jet.In addition,the enhanced diffusion is manifested in the logarithmic growth law of mean square displacement,which results in an almost constant reaction rate similar to the mechanical mixing process. 展开更多
关键词 Shock-induced reaction Molecular dynamics simulations Interfacial crystallization Reaction mechanism
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Dynamic self-adaptive ANP algorithm and its application to electric field simulation of aluminum reduction cell 被引量:1
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作者 王雅琳 陈冬冬 +2 位作者 陈晓方 蔡国民 阳春华 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4731-4739,共9页
Region partition(RP) is the key technique to the finite element parallel computing(FEPC),and its performance has a decisive influence on the entire process of analysis and computation.The performance evaluation index ... Region partition(RP) is the key technique to the finite element parallel computing(FEPC),and its performance has a decisive influence on the entire process of analysis and computation.The performance evaluation index of RP method for the three-dimensional finite element model(FEM) has been given.By taking the electric field of aluminum reduction cell(ARC) as the research object,the performance of two classical RP methods,which are Al-NASRA and NGUYEN partition(ANP) algorithm and the multi-level partition(MLP) method,has been analyzed and compared.The comparison results indicate a sound performance of ANP algorithm,but to large-scale models,the computing time of ANP algorithm increases notably.This is because the ANP algorithm determines only one node based on the minimum weight and just adds the elements connected to the node into the sub-region during each iteration.To obtain the satisfied speed and the precision,an improved dynamic self-adaptive ANP(DSA-ANP) algorithm has been proposed.With consideration of model scale,complexity and sub-RP stage,the improved algorithm adaptively determines the number of nodes and selects those nodes with small enough weight,and then dynamically adds these connected elements.The proposed algorithm has been applied to the finite element analysis(FEA) of the electric field simulation of ARC.Compared with the traditional ANP algorithm,the computational efficiency of the proposed algorithm has been shortened approximately from 260 s to 13 s.This proves the superiority of the improved algorithm on computing time performance. 展开更多
关键词 finite element parallel computing(FEPC) region partition(RP) dynamic self-adaptive ANP(DSA-ANP) algorithm electric field simulation aluminum reduction cell(ARC)
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Analysis of stress and natural frequencies of high-speed spatial parallel mechanism
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作者 陈修龙 李文彬 +1 位作者 邓昱 李云峰 《Journal of Central South University》 SCIE EI CAS 2013年第10期2676-2684,共9页
In order to grasp the dynamic behaviors of 4-UPS-UPU high-speed spatial parallel mechanism, the stress of driving limbs and natural frequencies of parallel mechanism were investigated. Based on flexible multi-body dyn... In order to grasp the dynamic behaviors of 4-UPS-UPU high-speed spatial parallel mechanism, the stress of driving limbs and natural frequencies of parallel mechanism were investigated. Based on flexible multi-body dynamics theory, the dynamics model of 4-UPS-UPU high-speed spatial parallel mechanism without considering geometric nonlinearity was derived. The stress of driving limbs and natural frequencies of 4-UPS-UPU parallel mechanism with specific parameters were analyzed. The relationship between the basic parameters of parallel mechanism and its dynamic behaviors, such as stress of driving limbs and natural frequencies of parallel mechanism, were discussed. The numerical simulation results show that the stress and natural frequencies are relatively sensitive to the section parameters of driving limbs, the characteristic parameters of material on driving limbs, and the mass of moving platform. The researches can provide important theoretical base of the analysis of dynamic behaviors and optimal design for high-speed spatial parallel mechanism. 展开更多
关键词 HIGH-SPEED SPATIAL parallel mechanism STRESS NATURAL frequency driving LIMB dynamic behavior
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A Tentative Study on Dynamics of a New Parallel NC Machine Tool with Long Travel, Large Rotating Angle and High Moving Speed
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作者 ZHOU Kai, ZHAO Jing-shan (Department of Precision Instruments, Tsinghua University, Beijing 100 084, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期169-,共1页
In view of the structure of traditional five-coord in ate machine tool, the work-piece and machine tool often move along their respec tive guides simultaneously on the whole. In this kind of machine structure, the tot... In view of the structure of traditional five-coord in ate machine tool, the work-piece and machine tool often move along their respec tive guides simultaneously on the whole. In this kind of machine structure, the total mass of moving parts including work-pieces, fixtures, rotating table, wor king table and so on is often very large. Besides, the elastic reform of transmi ssion and the viscous friction force of the guide can not be ignored. As a resul t, the machine tool can not move with high velocity and acceleration, and can no t meet the needs of modern fast and efficient production. The emergence of virtual-axis machine tool has provided a new approach for the solution of the above problems. The kernel of the virtual-axis machine tool is the parallel mechanism. So far, research of parallel mechanism in the world has achieved many results and various applied equipments based on parallel mecha nism have been worked out, but the research generally focuses on the working spa ce and kinematics analysis, dynamics are rarely considered. To meet the requirements of the modern fast and efficient production, reduce the cost and promote the machine tool’s acceleration character, not only should we analyze the kinematics of machine tool, but also we should study its dynamics a nd optimize the structure on the basis of analysis. In this paper, the kinem atics and dynamics of a 5-DOF (degrees of freedom) machine tool with novel para llel mechanism that has three moving DOF and one rotating DOF are studied by Rob ot-Wittenberg method. The dynamics character of the parallel robotic machine is analyzed and used to guide the structure design of machine tool. At last, the c orrectness is verified through a numerical simulation of 5-DOF. Hence, the dyna mics model can generally solve the problems existing in the parallel and hybrid machine tools. The dynamics character of the parallel robotic machine is studied and analyzed in quantity. The dynamics equation of the system can be written as This is a set of differential equations of four DOF system. Theoretically, the c losed solution of the forward and inverse problems can be gained by solving the above equations. The system equations quite suit to program at the computer. Whe n the forces are given, the state variables’ numerical solution can be gain ed through integral; and when the dynamics parameters are given, the forces can also be solved. But the multiple valued phenomena can not be avoided. We have developed simulation software based on the dynamics model presented by t his paper. The different effects of the structure parameters can be given by numerical simulation. 展开更多
关键词 5-DOF machine tool parallel mechanism R-W met hod KINEMATICS dynamics
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Dynamic Simulation for Missile Erection System
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作者 姚晓光 郭晓松 +1 位作者 冯永保 高钦和 《Defence Technology(防务技术)》 SCIE EI CAS 2007年第4期262-267,共6页
In order to study the dynamic characteristics of the missile erection system,it can be considered as a rigid-flexible coupling multi-body system.Firstly,the actual system is abstracted as an equal and simplified one a... In order to study the dynamic characteristics of the missile erection system,it can be considered as a rigid-flexible coupling multi-body system.Firstly,the actual system is abstracted as an equal and simplified one and then the forces applied to it are analyzed.Secondly,the rigid-flexible coupling dynamic simulation for erection system is accomplished by use of the system simulation software,for example Pro/E,ADAMS,ANSYS,MATLAB/Simulink,etc.Finally,having the aid of simulation results,the kinetic and dynamic characteristics of the flexible bodies in erection system are analyzed.The simulation considering the erection system as a rigid-flexible coupling system can provide valuable results to the research of its kinetic,dynamic and vibrational characteristics. 展开更多
关键词 力学 导弹直立系统 刚柔耦合 系统模拟
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Analysis and discussion on launching mechanism and tactical electromagnetic railgun technology 被引量:13
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作者 Bao-ming Li Qing-hua Lin 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第5期484-495,共12页
This paper begins with a discussion on the significance of multi-physical fields in the research of railgun launching mechanism, followed by an introduction of research work about dynamic measurements and numerical si... This paper begins with a discussion on the significance of multi-physical fields in the research of railgun launching mechanism, followed by an introduction of research work about dynamic measurements and numerical simulations. The application of some measurement methods including the atomic emission spectrum, fiber-optic strain, optical level, pulsed X-ray, and high-speed video in observing the launching process was introduced. The models about the electromechanical dynamic processes and multi-physical fields in a railgun were developed. The mechanisms of the grooving, arc transition, and gouging were analyzed. These work provided a deeper understanding of launching mechanism of electromagnetic railgun. Some issues about the tactical railgun, such as the fiber composite overwrapped barrel, recoil,loading modes and eddy current loss were also discussed. Taking a medium-caliber launcher as an example, the basic process of design and analysis was introduced. 展开更多
关键词 RAILGUN LAUNCHING mechanism dynamic measurement NUMERICAL simulation
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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-domain modeling and simulation of proportional solenoid valve 被引量:3
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作者 刘艳芳 戴振坤 +1 位作者 徐向阳 田亮 《Journal of Central South University》 SCIE EI CAS 2011年第5期1589-1594,共6页
A multi-domain nonlinear dynamic model of a proportional solenoid valve was presented.The electro-magnetic,mechanical and fluid subsystems of the valve were investigated,including their interactions.Governing equation... A multi-domain nonlinear dynamic model of a proportional solenoid valve was presented.The electro-magnetic,mechanical and fluid subsystems of the valve were investigated,including their interactions.Governing equations of the valve were derived in the form of nonlinear state equations.By comparing the simulated and measured data,the simulation model is validated with a deviation less than 15%,which can be used for the structural design and control algorithm optimization of proportional solenoid valves. 展开更多
关键词 fluid mechanics proportional solenoid valve dynamic characteristic multi-domain modeling simulation
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一种球形机器人稳定平台的设计与分析
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作者 汪威 张伟伦 +2 位作者 黄旭东 曹金龙 胡新宇 《组合机床与自动化加工技术》 北大核心 2025年第7期78-82,88,共6页
为满足球形机器人在外部感知传感器稳定性方面的需求,提出了一种两轮驱动球形机器人方案,该方案搭载电磁驱动空间2自由度冗余驱动并联结构的平台。利用螺旋理论和改进的G-K公式对该并联机构的自由度进行了详细分析,确定了其绕万向副转... 为满足球形机器人在外部感知传感器稳定性方面的需求,提出了一种两轮驱动球形机器人方案,该方案搭载电磁驱动空间2自由度冗余驱动并联结构的平台。利用螺旋理论和改进的G-K公式对该并联机构的自由度进行了详细分析,确定了其绕万向副转动的运动特性。通过建立空间坐标系,进行了该并联机构的运动学建模,明确了驱动参数与末端位置之间的映射关系,并获得了工作空间模型。基于欧拉-拉格朗日方程建立了该并联机构的动力学模型。最终,通过力位混合控制策略,使用MATLAB和Adams进行了仿真实验。仿真结果验证了所提出的并联机构运动学模型和动力学模型的准确性,表明该机构能够满足球形机器人对稳定性的需求。本研究为球形机器人的稳定性提升提供了理论依据,并对相关应用具有参考价值。 展开更多
关键词 球形机器人 并联机构 运动学 动力学
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武陵山区旅游业促进共同富裕的政策仿真模拟 被引量:1
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作者 李会琴 候玉洁 +1 位作者 惠余杰 王金伟 《华中师范大学学报(自然科学版)》 北大核心 2025年第3期471-481,共11页
旅游业以其强大的综合带动作用和溢出效应成为新时代促进地区经济高质量发展的重要途径,也是欠发达地区加快实现共同富裕的主要业态之一.该研究结合武陵山区旅游业发展实际,借助Vensim系统动力学建模软件梳理了武陵山区旅游业驱动共同... 旅游业以其强大的综合带动作用和溢出效应成为新时代促进地区经济高质量发展的重要途径,也是欠发达地区加快实现共同富裕的主要业态之一.该研究结合武陵山区旅游业发展实际,借助Vensim系统动力学建模软件梳理了武陵山区旅游业驱动共同富裕的作用机制和因果关系.通过对经济增长、社会文化、生态环境三个子系统的主要参数进行调控,对旅游业促进共同富裕的影响效应进行仿真模拟,设置了5种不同情境下旅游业驱动共同富裕的发展模式,分别是自然演替模式、产业经济主导模式、社会文明驱动模式、资源环境绿色模式、全面协调发展模式.研究发现:1)武陵山区旅游业对共同富裕的驱动过程具有动态性和复杂性,实现共同富裕的可持续发展要综合考虑系统内部多个因素.2)大力实行产业经济主导模式能有效促进武陵山区物质富足效应最大化,到2035年,人均GDP增长7.22倍,人均可支配收入增长9.25倍,但该种模式容易致使环境污染加剧,不利于武陵山区绿色可持续发展.3)综合对比,经济、社会、生态三个层面协同发力的综合协调模式有利于地区公平、稳定和可持续增长,是武陵山区加速实现共同富裕的最佳发展模式.结合仿真模拟结果,提出了武陵山区以旅游业推进共同富裕的对策建议.该研究有助于进一步理解旅游业与共同富裕的多元内在关系,为我国以旅游为主导产业的地区实现共同富裕提供实践参考. 展开更多
关键词 旅游业 共同富裕 驱动机制 系统动力学 仿真模拟 武陵山区
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不同负温条件下模拟月壤动力学特性与能量耗散研究 被引量:1
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作者 马芹永 张波波 +2 位作者 简伟强 杨金辉 凌创宇 《振动与冲击》 北大核心 2025年第13期32-43,共12页
研究月球极区含冰月壤的动力学特性和能量耗散规律对探月工程四期任务中探测器的着陆冲击特性、极区含冰月壤的冲击钻进采样具有重要的参考意义。以玄武质模拟月壤制备的含冰月壤样本为研究对象,利用直径50 mm的分离式Hopkinson压杆测... 研究月球极区含冰月壤的动力学特性和能量耗散规律对探月工程四期任务中探测器的着陆冲击特性、极区含冰月壤的冲击钻进采样具有重要的参考意义。以玄武质模拟月壤制备的含冰月壤样本为研究对象,利用直径50 mm的分离式Hopkinson压杆测试装置,研究了不同负温、不同含水率在不同冲击荷载作用下模拟含冰月壤样本的动力学特性、动态破坏形态特征和能量耗散规律。结果表明:①当温度降低至-25℃、-45℃和-65℃,动应力-应变曲线初始增长时无压密阶段,负温对模拟月壤样本的变形特性有着显著影响;峰值动应力随温度的降低和冲击气压的增加而增大,表现出明显的温度效应和应变率效应;温度的降低使得冲击荷载所诱发的瞬态温升效应减弱;动态强度增长系数ηd和平均应变率保持着正相关关系,含水率对模拟含冰月壤ηd的影响较大。②在相同冲击荷载作用下,模拟含冰月壤的动态破坏机制主要为块状滑面粉碎破坏、脆性断裂破坏和剪切边界破坏。③模拟含冰月壤在冲击压缩破坏过程中入射能、反射能和吸收能均呈现先上升后不变的趋势,能量反射系数的增长变化与负温条件、冲击荷载大小有关,能量吸收率与平均应变率随破坏程度的增大而增大。 展开更多
关键词 模拟月壤 分离式HOPKINSON压杆 动力学特性 破坏机制 能量耗散
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3-PRS并联机构动力学解耦与控制研究
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作者 黄俊杰 皇甫晨豪 +5 位作者 张家齐 蔡江坤 李世锴 刘志忠 闫勇刚 陈国强 《农业机械学报》 北大核心 2025年第6期735-744,共10页
针对3-PRS并联机构耦合性强、干扰难以控制等问题,对该机构进行动力学解耦与控制。首先建立机构逆向运动学模型,推导出末端动平台位姿与输入滑块高度间的运动方程;分析机构中各运动构件动能和势能,得出机构拉格朗日动力学方程,分析在无... 针对3-PRS并联机构耦合性强、干扰难以控制等问题,对该机构进行动力学解耦与控制。首先建立机构逆向运动学模型,推导出末端动平台位姿与输入滑块高度间的运动方程;分析机构中各运动构件动能和势能,得出机构拉格朗日动力学方程,分析在无重力环境以及正常重力环境中驱动力对末端动平台位姿的影响,并进行理论模型与数值仿真对比,其结果验证了动力学模型一致性和正确性;构建面向逆向动力学模型状态空间方程,研究3-PRS并联机构李导数表达式,实现状态空间方程反馈线性化解耦,并对状态空间解耦模型进行仿真,搭建3-PRS并联机构实验平台,验证了提出方法的有效性;基于完全解耦与积分滑模设计3-PRS并联机构控制器,仿真实验验证了该控制器的有效性。结果表明,设计的控制器不仅能够解耦其动力学模型,且在干扰、输入驱动力为时变情况下能够跟踪预期轨迹,具有较强的鲁棒性。 展开更多
关键词 3-PRS并联机构 逆向动力学 反馈线性化 积分滑模
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煤炭充填开采技术扩散动力机制研究——基于三方演化博弈视角
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作者 张伟 王森 +2 位作者 邹绍辉 许建 杨晴 《西安科技大学学报》 北大核心 2025年第4期815-825,共11页
为探究充填开采技术扩散动力机制,构建地方政府、煤炭企业和科研机构为参与方的三方演化博弈模型,建立复制动态方程分析博弈方策略选择,运用李雅普诺夫稳定性理论和雅克比矩阵分析三方动态博弈均衡稳定性,通过系统动力学仿真分析关键参... 为探究充填开采技术扩散动力机制,构建地方政府、煤炭企业和科研机构为参与方的三方演化博弈模型,建立复制动态方程分析博弈方策略选择,运用李雅普诺夫稳定性理论和雅克比矩阵分析三方动态博弈均衡稳定性,通过系统动力学仿真分析关键参数对三方博弈均衡的影响。结果表明:在现行政策条件下,三方演化博弈收敛于非理想解;以支付型激励为主导的政策工具,将增加地方政府激励成本,并在长期内会抑制政府激励意愿,无法取得长期政策效果;更多地使用非支付型激励政策,有利于维护政府持续激励的积极性;加大煤炭企业生态成本内部化力度,有利于博弈结果向理想结果演化;激励科研机构加大研发力度从而降低充填开采成本,对博弈收敛于理想结果具有至关重要的作用;当技术需求不足时,为促使科研机构积极研发,政府激励必须能够全部弥补其研发费用;单一政策难以使三方博弈向理想结果演化,必须通过多元政策工具的有机组合,才能取得预期的政策效果。研究结果揭示了煤炭充填开采技术扩散相关政策的作用机理及效应,对促进该技术产业化具有重要的应用价值。 展开更多
关键词 充填开采 技术扩散 动力机制 三方演化博弈 复制动态方程 系统动力学仿真
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郑庄区块岩石力学特征对压裂的影响及开发对策
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作者 张聪 赵立平 +6 位作者 杨瑞强 王琪 桑广杰 李可心 王玉婷 贾慧敏 李俊 《煤炭科学技术》 北大核心 2025年第3期315-327,共13页
煤储层岩石力学特征对天然裂缝的形成演化及人工裂缝的扩展规律具有重要控制作用,是影响煤储层压裂改造的关键因素。为明确郑庄区块岩石力学特征和压裂裂缝发育规律,实现煤储层高效改造和开发,利用阵列声波测井资料建立纵横波转换模型,... 煤储层岩石力学特征对天然裂缝的形成演化及人工裂缝的扩展规律具有重要控制作用,是影响煤储层压裂改造的关键因素。为明确郑庄区块岩石力学特征和压裂裂缝发育规律,实现煤储层高效改造和开发,利用阵列声波测井资料建立纵横波转换模型,基于岩石力学参数试验和测井计算建立动静态岩石力学参数转换模型,利用声波时差、密度等常规测井数据,计算得到郑庄区块岩石力学参数分布规律。在此基础上,利用FrSmart压裂模拟软件建立郑庄区块不同井区水平井的地质力学模型,开展压裂模拟探究岩石力学参数和压裂规模对压裂裂缝形态的影响,并针对不同井区提出差异化开发对策。结果表明:郑庄区块静态弹性模量在0.28~1.45 GPa,平均为0.95 GPa,静态泊松比为0.31~0.34,平均为0.32,整体呈不均匀分布。随着煤储层弹性模量的不断增大和泊松比的减小,压裂缝长和单缝宽均有逐渐减小的趋势。压裂缝长和单缝宽与压裂规模有正相关关系,增加压裂液量和砂量可以有效增加压裂缝长和单缝宽,提高裂缝体积。增大施工排量,压裂缝长、单缝宽、裂缝体积均大幅度增加。在郑庄区块北部开展大规模大排量压裂先导试验,裂缝监测结果显示:平均压裂缝长超400 m,缝宽在40 m以上,平均单段储层改造体积170×10^(4) m^(3),改造效果较以往提升580%。在后续开发过程中,郑庄区块北部井区建议采用大规模大排量压裂,最佳井距为320 m;中北部井区建议采用中等压裂规模进行改造,最佳井距为300 m;西南部井区建议采用中等规模压裂,最佳井距为260 m。 展开更多
关键词 沁水盆地 郑庄区块 岩石力学参数 动静态转换模型 压裂模拟
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农业工程领域耦合仿真技术应用现状与展望
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作者 张青松 郑中原 +3 位作者 廖庆喜 于良航 廖宜涛 万星宇 《农业机械学报》 北大核心 2025年第7期20-37,149,共19页
耦合仿真技术作为一种先进的数值仿真方法,能将多个独立的物理场或物理现象的仿真模型结合,实现不同领域或不同物理学模型的数值仿真方法相互结合,彼此交换信息并相互影响,在农业工程领域展现出广阔的应用前景,为现代农业装备的数字化... 耦合仿真技术作为一种先进的数值仿真方法,能将多个独立的物理场或物理现象的仿真模型结合,实现不同领域或不同物理学模型的数值仿真方法相互结合,彼此交换信息并相互影响,在农业工程领域展现出广阔的应用前景,为现代农业装备的数字化与智能化设计提供了新途径。为了系统总结耦合仿真技术在农业工程领域的应用现状和分析该技术的未来发展趋势,概述了耦合仿真技术的基本原理、仿真流程与类型以及相关数值模拟技术与软件,梳理了离散元-结构有限元耦合、离散元-计算流体力学耦合、离散元-多体动力学耦合、连续介质流固耦合以及刚柔耦合在农业工程领域的应用实例。同时,结合耦合仿真技术的应用现状,分析了目前该技术在模型构建与精确性、算法与计算资源、数据集成与处理、仿真软件设计和标准化等方面存在的问题,提出了耦合仿真技术应用发展趋势:多尺度建模与智能验证体系、高性能算法与算力、数据治理与交互模式智能化、标准化建设以及智能融合与场景扩展等,为耦合仿真技术在农业工程领域进一步应用发展提供参考。 展开更多
关键词 耦合仿真 离散元 结构有限元 计算流体力学 计算固体力学 多体动力学
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