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基于COMSOL Multiphysics软件的某地铁配电柜温湿度控制策略 被引量:1
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作者 邓雷 崔光磊 《城市轨道交通研究》 北大核心 2025年第4期71-77,共7页
[目的]运行在长江流域高温高湿环境中的配电柜,易受自然环境的影响发生内部凝露现象,引发设备受潮及故障。为避免凝露引发的配电柜故障,有必要分析凝露现象产生的机理,研究配电柜的温湿度控制策略。[方法]基于凝露引发的配电柜故障,分... [目的]运行在长江流域高温高湿环境中的配电柜,易受自然环境的影响发生内部凝露现象,引发设备受潮及故障。为避免凝露引发的配电柜故障,有必要分析凝露现象产生的机理,研究配电柜的温湿度控制策略。[方法]基于凝露引发的配电柜故障,分析了凝露现象产生的机理及主要影响因素。以中部某城市地铁配电间内配电柜为例,利用COMSOL Multiphysics仿真软件构建配电柜全尺寸多物理场耦合仿真模型。基于环境测控的历史数据进行仿真,分析配电柜内温度及湿度变化对柜内凝露现象的影响。基于2022年数据,统计自然状态下各月的凝露概率,结合仿真计算结果提出配电柜温湿度控制策略,并通过仿真计算对控制效果进行分析。[结果及结论]凝露现象同相对湿度和露点温度密切相关。6月和7月的凝露概率最高,入夜后凌晨至清晨最易发生凝露。提高配电间空调设置温度并降低环境相对湿度,可显著降低配电柜发生凝露的概率。具体控制策略为:在夏季空调制冷时,配电间内空调温度设置不宜低于26℃:在配电间增设除湿机,将环境相对湿度降低至75%及以下。经仿真结果验证,温湿度控制策略具有良好的防凝露效果。 展开更多
关键词 地铁 配电柜 多物理场 温湿度 凝露
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The noise analysis and multi-physical field coupling study of high-precision SERF atomic gyroscopes
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作者 Jiaxin Liu Xusheng Lei +3 位作者 Yu Yuan Yizhe Zhou Haoying Pang Zhihong Wu 《Defence Technology(防务技术)》 2025年第8期213-224,共12页
The spin-exchange relaxation-free atomic gyroscope,with its exceptionally high theoretical precision,demonstrates immense potential to become the next-generation strategic-grade gyroscope.However,due to technological ... The spin-exchange relaxation-free atomic gyroscope,with its exceptionally high theoretical precision,demonstrates immense potential to become the next-generation strategic-grade gyroscope.However,due to technological noise,there is still a significant gap between its actual precision and theoretical precision.This study identifies the key factor limiting the precision of the SERF gyroscope as coupling noise.By optimizing the detection loop structure,a distinction between the dual-axis signals'response to optical and magnetic fields was achieved-where the optical errors responded similarly,while the response to magnetic noise was opposite.Based on the differences in the optical-magnetic response of the dual-axis signals,empirical mode decomposition was used to decompose the dual-axis gyroscope signals into multiple intrinsic mode functions,and Allan deviation analysis was applied to analyze the noise characteristics of the intrinsic mode functions over various periods.This study successfully reveals that optical errors caused by thermal-optical coupling and long-period magnetic noise induced by thermal-magnetic coupling are the dominant factors limiting the long-term stability of the SERF gyroscope.Based on these analyses,the study concludes that to achieve strategic-grade precision for the SERF gyroscope,it is essential to effectively address the noise issues caused by multi-physical field couplings. 展开更多
关键词 SERF gyroscope Empirical mode decomposition Allan deviation Noise feature recognition multi physics field coupling
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Physical Simulation of Mold-Filling Processing of Thin-Walled Castings under Traveling Magnetic Field 被引量:7
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作者 YanqingSU TiejunZHANG +4 位作者 JingjieGUO HongshengDING WeishengBI JunJIA HengzhiFU 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第1期27-30,共4页
Mold-filling process of thin-walled castings under the condition of traveling magnetic field has been studied by physical simulation method using gallium melt and fast speed photography. Flow morphology and its format... Mold-filling process of thin-walled castings under the condition of traveling magnetic field has been studied by physical simulation method using gallium melt and fast speed photography. Flow morphology and its formation mechanism were obtained and discussed for thin-walled casting. The influences of magnetic field density on the filling ability, filling velocity and mold filling time have been studied. The differences in filling capability between gravity casting and casting under the traveling magnetic field have been compared. The results indicate that the mold filling ability of the gallium melt increases greatly under the condition of traveling magnetic field; the filling time is shortened from 18 s under gravity field to 3 s under the traveling magnetic field and average flow rate of the melt increases from 1.6 to 8.68 cm3/s; the change law of the cross-section morphology of the gallium melt during the mold filling is that at first, the cross-section area does not change, then it decreases gradually. When the front of the melt reaches the end of the mold cavity, the front melt will backfill the mold; the wider the width of mold cavity, the better the mold filling ability. The mold filling ability of gallium melt in mold with upper magnetic conductor is better than that without upper magnetic conductor. 展开更多
关键词 Traveling magnetic field Mould-filling Thin-walled casting physical simulation
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In-Situ Analysis of Bulk Solidifying the Hyper-Monotectic Alloy Under a Compound Electric-Magnetic Field by Physical Simulation
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作者 ZHONG Yun-bo WANG Jiang +3 位作者 ZHENG Tian-xiang LI Fu Yves Fautrelle REN Zhong-ming 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2012年第S1期345-350,共6页
A physical simulation was carried out to investigate the realistic experiment of bulk solidifying the Zn-Bi hyper-monotectic alloy under various compound electric-magnetic fields(CEMF).For this experiment,two crucial ... A physical simulation was carried out to investigate the realistic experiment of bulk solidifying the Zn-Bi hyper-monotectic alloy under various compound electric-magnetic fields(CEMF).For this experiment,two crucial parameters determinate the cast microstructure,the one is electric-magnetic force(EMF)and the other is the frequency of AC current.Results show that the minor phase could be mixed in the other phase from the initial layered structure when the EMF above a specific value under fixed frequency,and the average diameter of minor phase droplet decreases with increasing EMF.The evolution of the liquid phases structure is reasonable agree with the realistic experiment of Zn-Bi hyper-monotectic alloy,which suggests that the mechanism revealed by the physical simulation could represent the one in the realistic experiment. 展开更多
关键词 compound electric-magnetic field(CEMF) physical simulation hyper-monotectic alloy bulk solidification
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Physical Simulation of Nonmetallic Particle Movement in Al Melt under Electromagnetic Field
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作者 Tianxiao LI, Zhenming XU,Baode SUN,Da SHU and Yaohe ZHOU School of Materials Science and Engineering, Shanghai Jiaotong University, Shanghai 200030, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第4期463-465,共3页
Physical simulation is used to study the movement of nonmetallic particles in Al melt in electro- magnetic field. It is found that the terminal velocity of particles in different Reynolds number range has different fu... Physical simulation is used to study the movement of nonmetallic particles in Al melt in electro- magnetic field. It is found that the terminal velocity of particles in different Reynolds number range has different functions. By confirming drag force coefficient of nonmetallic particles with Reynolds number in the range of 0.2-10 and 10-25 respectively, two functions of terminal ve- locity for spherical nonmetallic particles have been got accordingly, which provide a theoretical basis for separating nonmetallic inclusions from Al melt in electromagnetic field. 展开更多
关键词 AL physical simulation of Nonmetallic Particle Movement in Al Melt under Electromagnetic field simulation
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基于COMSOL Multiphysics的煤层气对流热采分析 被引量:7
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作者 曹伟 康志勤 +2 位作者 吕义清 梁洁 王玮 《地下空间与工程学报》 CSCD 北大核心 2014年第5期1139-1145,共7页
COMSOL Multiphysics软件是一款以有限元法为基础,可以通过求解偏微分方程组来实现多物理场耦合计算的数值仿真软件。通过COMSOL Multiphysics软件,结合多孔介质弹性力学、渗流力学、热力学理论建立多物理场耦合模型,并借助前人成果,模... COMSOL Multiphysics软件是一款以有限元法为基础,可以通过求解偏微分方程组来实现多物理场耦合计算的数值仿真软件。通过COMSOL Multiphysics软件,结合多孔介质弹性力学、渗流力学、热力学理论建立多物理场耦合模型,并借助前人成果,模拟向煤层注入200℃的水,对煤层气进行热采,计算煤层的应力场、渗流场、温度场的耦合变化规律,以及煤层气的产出量。研究结果表明:向煤层注热水60 d后,煤层温度整体达到160℃以上,煤体的渗透率基本能提高到2.1×10-12m2附近,结果证明利用对流热采新技术开发煤层气是完全可行的,开采效率极高,值得进行商业推广开发。 展开更多
关键词 煤层气 渗透率 多物理场 COMSOL multiphysics
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Solving Strategy for Repetitious Simulation of Multi-domain Physical System Based on Modelica
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作者 JIANG Zhan-si WU Yi-zhong CHEN Li-ping 《Computer Aided Drafting,Design and Manufacturing》 2007年第2期58-70,共13页
Repetitious simulation after modifying parameters of multi-domain physical system based on Modelica often appears in model experiment and optimization design. At present, the solvers based on Modelica need calculate a... Repetitious simulation after modifying parameters of multi-domain physical system based on Modelica often appears in model experiment and optimization design. At present, the solvers based on Modelica need calculate all the coupled blocks during every simulation run after updating parameters. Based on discussing scale decomposition methods of simulation model, subdivision solving strategy and minimum solving strategy are put forward to improve the efficiency of repetitious simulation, by which the numerical solution of the simulation model can be achieved by only calculating the solving sequence influenced by altered parameters. A simplified model of aircraft is used to demonstrate the efficiency of the strategies presented. 展开更多
关键词 multi-domain physical system MODELICA simulation subdivision solving minimum solving strategy
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COMSOL Multiphysics在锂离子电池中的应用 被引量:4
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作者 李校磊 高健 +1 位作者 周伟东 李泓 《储能科学与技术》 CAS CSCD 北大核心 2024年第2期546-567,共22页
作为一种具有前景的能量存储系统,锂离子电池需要进一步提高能量密度、功率密度、可靠性和循环稳定性,以满足不断增长的大型能源存储、电动汽车和便携式电子设备需求。当前对锂离子电池的实验研究仍然面临多个挑战,这些挑战包括电解液... 作为一种具有前景的能量存储系统,锂离子电池需要进一步提高能量密度、功率密度、可靠性和循环稳定性,以满足不断增长的大型能源存储、电动汽车和便携式电子设备需求。当前对锂离子电池的实验研究仍然面临多个挑战,这些挑战包括电解液的导电性和安全性、高能量负极的沉积-剥离机制的优化、高能量正极的循环电压和容量维持、高电流条件下的界面极化和容量释放,以及在极端电流-温度-针刺条件下的热失控管理等问题。这些问题涉及到电-化-力-热等多个场的耦合作用,需要进行协同优化处理。COMSOL Multiphysics提供了一种可行的工具,通过求解多物理场耦合的连续方程,能够同时考虑载流子浓度、电流密度、电-化学势、温度、应力/应变和几何形态等综合信息的演化。本文概述了该工具在锂离子电池的电解液、负极和正极设计等方面的研究,并聚焦于多场耦合对电池性能的综合影响、多场耦合模拟方法以及理论模拟与实验表征的结合。最后,本文对理论与实验联合研究中的多场和多尺度问题进行了展望。 展开更多
关键词 COMSOL multiphysics 锂离子电池 多场耦合 模拟计算
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CFD prediction of physical field for multi-air channel pulverized coal burner in rotary kiln 被引量:8
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作者 马爱纯 周孑民 +1 位作者 欧俭平 李旺兴 《Journal of Central South University of Technology》 EI 2006年第1期75-79,共5页
A 3-D numerical simulation with CFX software on physical field of multi-air channel coal burner in rotary kiln was carried out. The effects of various operational and structural parameters on flame feature and tempera... A 3-D numerical simulation with CFX software on physical field of multi-air channel coal burner in rotary kiln was carried out. The effects of various operational and structural parameters on flame feature and temperature distribution were investigated. A thermal measurement was conducted on a rotary kiln (4.5m in diameter, 90m in length) with four-air channel coal burner to determine the boundary conditions and to verify the simulation results. The calculation result shows that the distribution of velocity near burner exit is saddle-like; recirculation zones near nozzle and wall are useful for mixture primary air with coal and high temperature fume. A little central airflow can avoid coal backing up and cool nozzle. Adjusting the ratio of internal airflow to outer airflow is an effective and major means to regulate flame and temperature distribution in sintering region. Large whirlcone angle can intensify disturbution range at flame root to accelerate ignition and mixture. Large coal size can reduce high temperature region and result in coal combusting insufficiently. Too much combustion air will lengthen flame and increase heat loss. 展开更多
关键词 CFD numerical simulation CFX physical field multi-air channel coal burner rotary kiln
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Force Feedback Coupling with Dynamics for Physical Simulation of Product Assembly and Operation Performance 被引量:2
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作者 LIU Zhenyu TAN Jianrong +1 位作者 DUAN Guifang FU Yun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第1期164-172,共9页
Most existing force feedback methods are still difficult to meet the requirements of real-time force calculation in virtual assembly and operation with complex objects. In addition, there is often an assumption that t... Most existing force feedback methods are still difficult to meet the requirements of real-time force calculation in virtual assembly and operation with complex objects. In addition, there is often an assumption that the controlled objects are completely flee and the target object is only completely fixed or flee, thus, the dynamics of the kinematic chain where the controlled objects are located are neglected during the physical simulation of the product manipulation with force feedback interaction. This paper proposes a physical simulation method of product assembly and operation manipulation based on statistically learned contact force prediction model and the coupling of force feedback and dynamics. In the proposed method, based on hidden Markov model (HMM) and local weighting learning (LWL), contact force prediction model is constructed, which can estimate the contact force in real time during interaction. Based on computational load balance model, the computing resources are dynamically assigned and the dynamics integral step is optimized. In addition, smoothing process is performed to the force feedback on the synchronization points. Consequently, we can solve the coupling and synchronization problems of high-frequency feedback force servo. low-frequency dynamics solver servo and scene rendering servo, and realize highly stable and accurate force feedback in the physical simulation of product assembly and operation manipulation. This research proposes a physical simulation method of product assembly and operation manipulation. 展开更多
关键词 contact force prediction force feedback multi-rate coupling physical simulation of manipulation virtual assembly
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基于COMSOL_Mutiphysics的高频电磁阀电磁力动态仿真 被引量:9
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作者 高元鑫 路勇 +2 位作者 苗立贤 李建 王正祎 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2021年第11期1641-1646,共6页
针对高频电磁阀动态电磁力仿真计算困难以及运动规律研究不充分的问题,本文利用多物理场仿真分析软件COMSOL;ultiphysics对一种高频电磁阀的动态性能规律探究。通过建模和仿真分析,得到了在设计选用材料和电流参数下的阀芯受电磁力随阀... 针对高频电磁阀动态电磁力仿真计算困难以及运动规律研究不充分的问题,本文利用多物理场仿真分析软件COMSOL;ultiphysics对一种高频电磁阀的动态性能规律探究。通过建模和仿真分析,得到了在设计选用材料和电流参数下的阀芯受电磁力随阀芯位移变化的动态规律,对动态电磁力的仿真结果进行分析,验证了电磁力的产生和端盖退磁的动态响应过程,仿真得到电磁阀的响应时间为3.984 ms,与实验结果误差为2%左右,为高频电磁阀的优化设计和应用提供了理论指导。 展开更多
关键词 高频电磁阀 COMS0L_multiphysics 多物理场 仿真研究 电磁力 软磁材料 剩磁 优化设计
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Selected topics of quantum computing for nuclear physics 被引量:1
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作者 Dan-Bo Zhang Hongxi Xing +2 位作者 Hui Yan Enke Wang Shi-Liang Zhu 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第2期23-34,共12页
Nuclear physics,whose underling theory is described by quantum gauge field coupled with matter,is fundamentally important and yet is formidably challenge for simulation with classical computers.Quantum computing provi... Nuclear physics,whose underling theory is described by quantum gauge field coupled with matter,is fundamentally important and yet is formidably challenge for simulation with classical computers.Quantum computing provides a perhaps transformative approach for studying and understanding nuclear physics.With rapid scaling-up of quantum processors as well as advances on quantum algorithms,the digital quantum simulation approach for simulating quantum gauge fields and nuclear physics has gained lots of attention.In this review,we aim to summarize recent efforts on solving nuclear physics with quantum computers.We first discuss a formulation of nuclear physics in the language of quantum computing.In particular,we review how quantum gauge fields(both Abelian and non-Abelian)and their coupling to matter field can be mapped and studied on a quantum computer.We then introduce related quantum algorithms for solving static properties and real-time evolution for quantum systems,and show their applications for a broad range of problems in nuclear physics,including simulation of lattice gauge field,solving nucleon and nuclear structures,quantum advantage for simulating scattering in quantum field theory,non-equilibrium dynamics,and so on.Finally,a short outlook on future work is given. 展开更多
关键词 quantum computing nuclear physics quantum field theory quantum simulation quantum algorithm
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Ion Flow Field Calculation of Multi-circuit DC Transmission Lines 被引量:14
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作者 LI Wei ZHANG Bo HE Jin-liang ZENG Rong CHEN Shui-ming 《高电压技术》 EI CAS CSCD 北大核心 2008年第12期2719-2725,共7页
An upwind finite element(FE)based algorithm to calculate the ion flow field in the vicinity of multi-circuit DC transmission lines is described.The initial value estimation and boundary condition are optimized,so deta... An upwind finite element(FE)based algorithm to calculate the ion flow field in the vicinity of multi-circuit DC transmission lines is described.The initial value estimation and boundary condition are optimized,so details of the transmission lines such as bundle conductors and ground wires can be taken into account in the simulation model.Comparison between measured and computed ground level total electrical field and ion current density shows satisfactory agreement.The ion flow field of a ±500 kV HVDC project with bipolar lines on the same tower is simulated.The total electrical field and ion current density on ground level are compared among different line arrangements. 展开更多
关键词 多回直流输电线路 离子流场 计算方法 模拟 离子电流密度
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Comparison of structure and physical fields in 400 kA aluminum reduction cells 被引量:1
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作者 丁吉林 李劼 +3 位作者 张红亮 徐宇杰 杨帅 刘业翔 《Journal of Central South University》 SCIE EI CAS 2014年第11期4097-4103,共7页
To investigate the differences and the development trends of the 400 kA aluminum reduction cell, four representative cells were deeply analyzed. By using numerical simulation methods in ANSYS software, the structure p... To investigate the differences and the development trends of the 400 kA aluminum reduction cell, four representative cells were deeply analyzed. By using numerical simulation methods in ANSYS software, the structure parameters were firstly compared, and then three-dimensional models of electric-magnetic-flow field were built and solved with finite element method(FEM). The comparison of the structures reveals that the cell bodies are similar while the current flow path and distribution ratio of bus bars are different. It appears that most of the current(70%-80%) in side A are used as the magnetic field compensation current and flow through two ends. The numerical simulation results indicate that the distributions of magnetic fields are different but all satisfy with the magnetohydrodynamics(MHD) stabilization, and the flow patterns are all two or multi vortexes with appropriate velocities. The comparison shows that all studied cells can satisfy with the physical field requirement, and the commercial applications also verify that the 400 kA cells have become the product of the mature and world's leading technology. 展开更多
关键词 aluminum electrolysis numerical simulation bus structure physical field
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We Are Living in a Computer Simulation 被引量:1
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作者 Ding-Yu Chung 《Journal of Modern Physics》 2016年第10期1210-1227,共18页
This paper posits that we are living in a computer simulation to simulate physical reality which has the same computer simulation process as virtual reality (computer-simulated reality). The computer simulation proces... This paper posits that we are living in a computer simulation to simulate physical reality which has the same computer simulation process as virtual reality (computer-simulated reality). The computer simulation process involves the digital representation of data, the mathematical computation of the digitized data in geometric formation and transformation in space-time, and the selective retention of events in a narrative. Conventional physics cannot explain physical reality clearly, while computer-simulated physics can explain physical reality clearly by using the computer simulation process consisting of the digital representation component, the mathematical computation component, and the selective retention component. For the digital representation component, the three intrinsic data (properties) are rest mass-kinetic energy, electric charge, and spin which are represented by the digital space structure, the digital spin, and the digital electric charge, respectively. The digital representations of rest mass and kinetic energy are 1 as attachment space for the space of matter and 0 as detachment space for the zero-space of matter, respectively, to explain the Higgs field, the reverse Higgs field, quantum mechanics, special relativity, force fields, dark matter, and baryonic matter. The digital representations of the exclusive and the inclusive occupations of positions are 1/2 spin fermion and integer spin boson, respectively, to explain spatial translation by supersymmetry transformation and dark energy. The digital representations of the allowance and the disallowance of irreversible kinetic energy are integral electric charges and fractional electric charges, respectively, to explain the confinements of quarks and quasiparticles. For the mathematical computation component, the mathematical computation involves the reversible multiverse and oscillating M-theory as oscillating membrane-string-particle whose space-time dimension (D) number oscillates between 11D and 10D and between 10D and 4D to explain cosmology. For the selective retention component, gravity, the strong force, electromagnetism, and the weak force are the retained events during the reversible four-stage evolution of our universe, and are unified by the common narrative of the evolution. 展开更多
关键词 Computer simulation physical Reality Virtual Reality Digital Computer Computer-simulated physics Digital Representation Selective Retention M-THEORY Space Structure Higgs field Reverse Higgs field Fractional Electric Charge Spin multiVERSE COSMOLOGY Force fields Cyclic Universe
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Shafting Alignment Based on Hydrodynamics Simulation Under Larger Rudder Corner Conditions 被引量:2
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作者 杨勇 马捷 +2 位作者 唐文勇 车驰东 张桂臣 《Journal of Shanghai Jiaotong university(Science)》 EI 2012年第4期427-435,共9页
With the rudder angles getting larger and larger,the moment and force on propeller shafts,which are caused by complex flowing field,become more and more.They influence the shafting alignment greatly.Stress analysis of... With the rudder angles getting larger and larger,the moment and force on propeller shafts,which are caused by complex flowing field,become more and more.They influence the shafting alignment greatly.Stress analysis of propeller shafts has been done under increasing rudder corner conditions with complex hydrodynamics simulation for a great domestic liquified natural gas(LNG) vessel,which is with dual propulsion systems.The improved three-moment equation is adopted in the process of dual propulsive shafting alignment.The calculated results show that the propeller hydrodynamic characteristics,which affect dual propulsive shafting alignment greatly,must be considered under large rudder angle conditions.Shafting accidents of Korean LNG vessels are interpreted reasonably.At the same time,salutary lessons and references are afforded to the marine multi-propulsion shafting alignment in the future. 展开更多
关键词 shafting alignment improved three-moment equation flowing field simulation HYDRODYNAMICS rudder corner multi-propulsion system
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Simulation Monitoring for Rainfall Infiltration in Soil Based on High Density Electrical Method
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作者 Shanshan Lv Dengke He 《Journal of Geoscience and Environment Protection》 2021年第5期1-7,共7页
<div style="text-align:justify;"> Rainfall infiltration is a porous medium flow problem with variable saturation. Based on the theoretical analysis of the flow field, electrical conductivity of rocks, ... <div style="text-align:justify;"> Rainfall infiltration is a porous medium flow problem with variable saturation. Based on the theoretical analysis of the flow field, electrical conductivity of rocks, the electrical field, the paper simulates the coupling relationship between the water saturation in soil and the apparent resistivity distribution. It combines the Richards equation, the Archie formula and the Laplace equation. The experiment simulates the potential field data by the Wenner setting in electrical exploration on a two-layer geologic model with continuous rainfall during 5 days, which shows that the effective saturation in soil is increasing with the rainfall time, while the apparent resistivity is decreasing. This can provide a theoretical basis for the analyzing the rainfall infiltration and porosity of the soil by using high-density electrical method in the future. </div> 展开更多
关键词 Rainfall Infiltration multi physical field Coupling Numerical simulation High Density Electrical Method
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Numerical Simulation for Induction Refining Process of Metallurgical-Grade Silicon in Vacuum Furnace
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作者 L Guo-qiang MA Wen-hui +2 位作者 WANG Hua YU Wen-zhou YANG Xi 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2012年第S1期77-81,共5页
The temperature and velocity distribution of melting pool fields is very important effect to the silicon purification in vacuum induction furnace.A numerical model for the electromagnetic-thermal-hydrodynamic coupling... The temperature and velocity distribution of melting pool fields is very important effect to the silicon purification in vacuum induction furnace.A numerical model for the electromagnetic-thermal-hydrodynamic coupling fields have been developed by using the finite element method(FEM)and a 2D numerical simulation for electromagnetic、 temperature and velocity fields of metallurgical-grade silicon melting in vacuum induction furnace were performed with a software Multi-physics Comsol 3.5a in this paper.The results showed that the temperature field was dependent observably on input power of coils and induction heating times and the maximum temperature gradient in melting pool was 215K in holding time.With the silicon molted gradually a clockwise vortex was come into being for electromagnetic stirring in the smelting poor.The variation of velocity field in melting silicon is mainly influenced with the change of the current intensity and power frequency.The numerical predications of temperature distribution are in good agreement with experiments. 展开更多
关键词 metallurgical-grade silicon vacuum induction refining multi-fields coupling numerical simulation
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Ontology-Based Semantic Multi-agent Framework for Micro-grids with Cyber Physical Concept
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作者 许少伦 冯冬涵 +3 位作者 孙弢 白荣静 赵静波 雷金勇 《Journal of Donghua University(English Edition)》 EI CAS 2015年第2期203-208,共6页
The distributed hierarchical control based on multi-agent system(MAS) is the main control method of micro-grids.By allowing more flexible interactions between computing components and their physical environments,cyber... The distributed hierarchical control based on multi-agent system(MAS) is the main control method of micro-grids.By allowing more flexible interactions between computing components and their physical environments,cyber physical system(CPS) presents a new approach for the distributed hierarchical engineering system,with micro-grids included.The object of this paper is to integrate the CPS concept with MAS technology and propose a new control framework for micro-grids.With the analysis of the operating mode and control method of micro-grids,the cyber physical control concepts of ontologybased semantic agent are discussed.Then an MAS-based architecture of cyber physical micro-grid system and an intelligent electronic device(IED) function structure are proposed.Finally,in order to operate and test the cyber physical micro-grid concept,an integrated simulation model is presented. 展开更多
关键词 hierarchical semantic intelligent integrate environments connected ontology quickly hardware operate
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Multi-physics metasurface with reduced characteristic scales simultaneously for microwave,infrared,and acoustic compatibility
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作者 HUITING SUN PEIZHOU HU +10 位作者 JUN WANG JINGBO ZHAO RUICHAO ZHU CHANG DING JIE ZHANG ZHAOTANG LIU ZUNTIAN CHU YINA CUI FAN WU SHAOBO QU JIAFU WANG 《Photonics Research》 2025年第2期263-273,共11页
Devices supporting work in multi-physical environments present new challenges for material design.Due to the wavelength difference,waves from multi-field are difficult to modulate simultaneously,limiting the multi-fie... Devices supporting work in multi-physical environments present new challenges for material design.Due to the wavelength difference,waves from multi-field are difficult to modulate simultaneously,limiting the multi-field functions integration.Inspired by characteristic scale analysis,in this work,a devisable metasurface with characteristic scale compatibility is proposed.Under the reduced characteristic scale,waves in microwave,infrared,and acoustic fields can be modulated simultaneously,which can realize the multi-physics functions compatibility.In the microwave field,the far-field performance can be modulated by designing wavefront phase distribution.In the infrared field,the infrared radiation characteristic can be spatially modulated through noninvasive insetting of infrared devices in the microwave layer.In the acoustic field,the sound wave entering the metasurface can realize high-efficiency loss under the action of the Helmholtz cavity.To verify the design method,a functional sample is simulated and experimented.Three typical functions are effectively verified,which can realize 10 dB backward scattering reduction at 8-10 GHz,digital infrared camouflage with infrared emissivity modulation from 0.4 to 0.8 at 3-14μm,and sound absorptivity of more than 60%at 160-410 Hz,respectively.The comparable characteristic scale design method paves a new way for individually devisable metasurfaces in multi-physical field integration. 展开更多
关键词 characteristic scale analysisin material designdue reduced characteristic scalewaves acoustic compatibility reduced characteristic scale multi field modulation INFRARED multi physics metasurface
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