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Dynamic Analysis of Geared Rotor System with Hybrid Uncertainties
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作者 Wei Feng Luji Wu +3 位作者 Yanxu Liu Baoguo Liu Zongyao Liu Kun Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第5期248-257,共10页
Current research on the dynamics and vibrations of geared rotor systems primarily focuses on deterministic models.However,uncertainties inevitably exist in the gear system,which cause uncertainties in system parameter... Current research on the dynamics and vibrations of geared rotor systems primarily focuses on deterministic models.However,uncertainties inevitably exist in the gear system,which cause uncertainties in system parameters and subsequently influence the accurate evaluation of system dynamic behavior.In this study,a dynamic model of a geared rotor system with mixed parameters and model uncertainties is proposed.Initially,the dynamic model of the geared rotor-bearing system with deterministic parameters is established using a finite element method.Subsequently,a nonparametric method is introduced to model the hybrid uncertainties in the dynamic model.Deviation coefficients and dispersion parameters are used to reflect the levels of parameter and model uncertainty.For example,the study evaluates the effects of uncertain bearing and mesh stiffness on the vibration responses of a geared rotor system.The results demonstrate that the influence of uncertainty varies among different model types.Model uncertainties have a more significant than parametric uncertainties,whereas hybrid uncertainties increase the nonlinearities and complexities of the system’s dynamic responses.These findings provide valuable insights into understanding the dynamic behavior of geared system with hybrid uncertainties. 展开更多
关键词 Geared rotor system Dynamic response Hybrid uncertainty Nonparametric modeling
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Modeling and Validation of Diamagnetic Rotor Levitated by Permanent Magnetics
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作者 Yuanping Xu Yue Zhang +1 位作者 Jin Zhou Chaowu Jin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第3期224-235,共12页
As an innovative,low-power consuming,and low-stiffness suspension approach,the diamagnetic levitation technique has attracted considerable interest because of its potential applicability in miniaturized mechanical sys... As an innovative,low-power consuming,and low-stiffness suspension approach,the diamagnetic levitation technique has attracted considerable interest because of its potential applicability in miniaturized mechanical systems.The foundation of a diamagnetic levitation system is mathematical modeling,which is essential for operating performance optimization and stability prediction.However,few studies on systematic mathematical modeling have been reported.In this study,a systematic mathematical model for a disc-shaped diamagnetically levitated rotor on a permanent magnet array is proposed.Based on the proposed model,the magnetic field distribution characteristics,diamagnetic levitation force characteristics(i.e.,levitation height and stiffness),and optimized theoretical conditions for realizing stable levitation are determined.Experiments are conducted to verify the feasibility of the proposed mathematical model.Theoretical predictions and experimental results indicate that increasing the levitation height enlarges the stable region.Moreover,with a further increase in the rotor radius,the stable regions of the rotor gradually diminish and even vanish.Thus,when the levitation height is fixed,a moderate rotor radius permits stable levitation.This study proposes a mathematical modeling method for a diamagnetic levitation system that has potential applications in miniaturized mechanical systems. 展开更多
关键词 Diamagnetic levitation Magnetic levitation rotor MODELING VALIDATION STABILITY
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Open Winding-permanent Magnet/Magnet Reluctance Hybrid Rotor Double Stator Synchronous Motor SVPWM Control
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作者 Yufeng Pang Shi Jin +1 位作者 Wuhen Jin Siyang Yu 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第4期426-435,共10页
Coal mine conveyor belt and other low-speed large torque system,the torque density and torque stability of the motor requirements are higher,permanent magnet/magnet reluctance hybrid rotor double stator synchronous mo... Coal mine conveyor belt and other low-speed large torque system,the torque density and torque stability of the motor requirements are higher,permanent magnet/magnet reluctance hybrid rotor double stator synchronous motor(PM/MRHRDSSM)is just adapted to this requirement,however,the traditional close winding single inverter vector control system control PM/MRHRDSSM provides large torque ripple,high speed fluctuation and large total harmonic distortion(THD)of the current,difficult to be used in actual production and life,this paper proposes a large torque open winding-permanent magnet/magnet reluctance hybrid rotor double stator synchronous motor(OW-PM/MRHRDSSM)based on SVPWM dual inverter control strategy,and analysis of open winding double inverter structure,and its voltage vector mathematical model,using the existing two-level inverter as a basis,the bilateral inverter separately discussed its role and control method,as well as the decomposition method of synthetic voltage vector and the inverter device in the small sector on-time,the end of this paper through simulation to compare the traditional close winding single inverter vector control system control PM/MRHRDSSM and the large torque OW-PM/MRHRDSSM based on SVPWM dual inverter control strategy to prove the effectiveness of the proposed method in reducing torque ripple,speed fluctuation and THD of current during motor operation. 展开更多
关键词 SVPWM Dual stator motor Hybrid rotor Open winding motor
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A Blade Altering Toolbox for Automating Rotor Design Optimization
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作者 Akiva Wernick Jen-Ping Chen 《Communications on Applied Mathematics and Computation》 EI 2024年第1期688-704,共17页
The Blade Altering Toolbox(BAT)described in this paper is a tool designed for fast reconstruction of an altered blade geometry for design optimization purposes.The BAT algorithm is capable of twisting a given rotor’s... The Blade Altering Toolbox(BAT)described in this paper is a tool designed for fast reconstruction of an altered blade geometry for design optimization purposes.The BAT algorithm is capable of twisting a given rotor’s angle of attack and stretching the chord length along the span of the rotor.Several test cases were run using the BAT’s algorithm.The BAT code’s twisting,stretching,and mesh reconstruction capabilities proved to be able to handle reasonably large geometric alterations to a provided input rotor geometry.The test examples showed that the toolbox’s algorithm could handle any stretching of the blade’s chord as long as the blade remained within the original bounds of the unaltered mesh.The algorithm appears to fail when the net twist angle applied the geometry exceeds approximately 30 degrees,however this limitation is dependent on the initial geometry and other input parameters.Overall,the algorithm is a very powerful tool for automating a design optimization procedure. 展开更多
关键词 Mesh reconstruction Mesh alteration rotor alteration Design optimization
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Electromagnetic Performance Analysis of Variable Flux Memory Machines with Series-magnetic-circuit and Different Rotor Topologies
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作者 Qiang Wei Z.Q.Zhu +4 位作者 Yan Jia Jianghua Feng Shuying Guo Yifeng Li Shouzhi Feng 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第1期3-11,共9页
In this paper,the electromagnetic performance of variable flux memory(VFM)machines with series-magnetic-circuit is investigated and compared for different rotor topologies.Based on a V-type VFM machine,five topologies... In this paper,the electromagnetic performance of variable flux memory(VFM)machines with series-magnetic-circuit is investigated and compared for different rotor topologies.Based on a V-type VFM machine,five topologies with different interior permanent magnet(IPM)arrangements are evolved and optimized under same constrains.Based on two-dimensional(2-D)finite element(FE)method,their electromagnetic performance at magnetization and demagnetization states is evaluated.It reveals that the iron bridge and rotor lamination region between constant PM(CPM)and variable PM(VPM)play an important role in torque density and flux regulation(FR)capabilities.Besides,the global efficiency can be improved in VFM machines by adjusting magnetization state(MS)under different operating conditions. 展开更多
关键词 Memory machine Permanent magnet rotor topologies Series magnetic circuit Variable flux
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Transient Analysis of a Reactor Coolant Pump Rotor Seizure Nuclear Accident
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作者 Mengdong An Weiyuan Zhong +1 位作者 Wei Xu Xiuli Wang 《Fluid Dynamics & Materials Processing》 EI 2024年第6期1331-1349,共19页
The reactor coolant pump(RCP)rotor seizure accident is defined as a short-time seizure of the RCP rotor.This event typically leads to an abrupt flow decrease in the corresponding loop and an ensuing reactor and turbin... The reactor coolant pump(RCP)rotor seizure accident is defined as a short-time seizure of the RCP rotor.This event typically leads to an abrupt flow decrease in the corresponding loop and an ensuing reactor and turbine trip.The significant reduction of core coolant flow while the reactor is being operated at full load can have very negative consequences.This potentially dangerous event is typically characterized by a complex transient behavior in terms of flow conditions and energy transformation,which need to be analyzed and understood.This study constructed transient flow and rotational speed mathematical models under various degrees of rotor seizure using the test data collected from a dedicated transient rotor seizure test system.Then,bidirectional fluid-solid coupling simulations were conducted to investigate the flow evolution mechanism.It is found that the influence of the impeller structure size and transient braking acceleration on the unsteady head(Hu)is dominant in rotor seizure accident events.Moreover,the present results also show that the rotational acceleration additional head(Hu1)is much higher than the instantaneous head(Hu2). 展开更多
关键词 Reactor coolant pump bidirectional fluid-solid coupling rotor seizure nuclear accident
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A Modified Iterative Learning Control Approach for the Active Suppression of Rotor Vibration Induced by Coupled Unbalance and Misalignment
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作者 Yifan Bao Jianfei Yao +1 位作者 Fabrizio Scarpa Yan Li 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第1期242-253,共12页
This paper proposes a modified iterative learning control(MILC)periodical feedback-feedforward algorithm to reduce the vibration of a rotor caused by coupled unbalance and parallel misalignment.The control of the vibr... This paper proposes a modified iterative learning control(MILC)periodical feedback-feedforward algorithm to reduce the vibration of a rotor caused by coupled unbalance and parallel misalignment.The control of the vibration of the rotor is provided by an active magnetic actuator(AMA).The iterative gain of the MILC algorithm here presented has a self-adjustment based on the magnitude of the vibration.Notch filters are adopted to extract the synchronous(1×Ω)and twice rotational frequency(2×Ω)components of the rotor vibration.Both the notch frequency of the filter and the size of feedforward storage used during the experiment have a real-time adaptation to the rotational speed.The method proposed in this work can provide effective suppression of the vibration of the rotor in case of sudden changes or fluctuations of the rotor speed.Simulations and experiments using the MILC algorithm proposed here are carried out and give evidence to the feasibility and robustness of the technique proposed. 展开更多
关键词 rotor vibration suppression Modified iterative learning control UNBALANCE Parallel misalignment Active magnetic actuator
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Model-free Speed Control of Single-phase Flux Switching Motor with an Asymmetrical Rotor
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作者 Zongsheng Zhang Congcong Guo 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第3期255-263,共9页
This paper proposes and implements a model-free open-loop iterative learning control(ILC)strategy to realize the speed control of the single-phase flux switching motor(FSM)with an asymmetrical rotor.Base on the propos... This paper proposes and implements a model-free open-loop iterative learning control(ILC)strategy to realize the speed control of the single-phase flux switching motor(FSM)with an asymmetrical rotor.Base on the proposed winding control method,the asymmetrical rotor enables the motor to generate continuous positive torque for positive rotation,and relatively small resistance torque for negative rotation.An initial iteration coefficient and variable iteration coefficient optimized scheme was proposed based on the characteristics of the hardware circuit,thereby forming the model-free strategy.A series of prototype experiments was carried out.Experimental results verify the effectiveness and practicability of the proposed ILC strategy. 展开更多
关键词 Asymmetrical rotor Model-free iterative control Prototype experiments Single-phase flux switching motor
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不同裂纹参数下的转子系统振动特性试验
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作者 韩冰 刘占生 +1 位作者 何鹏 颜培刚 《振动工程学报》 北大核心 2025年第3期461-468,共8页
以具有相同结构尺寸的四根多盘转子作为研究对象,利用精密线切割的加工方式分别在四根转子的不同位置预制不同深度的横向裂纹。对裂纹参数发生改变的转子系统展开振动特性测试,并分析裂纹转子的动力学响应特征与裂纹位置和裂纹深度之间... 以具有相同结构尺寸的四根多盘转子作为研究对象,利用精密线切割的加工方式分别在四根转子的不同位置预制不同深度的横向裂纹。对裂纹参数发生改变的转子系统展开振动特性测试,并分析裂纹转子的动力学响应特征与裂纹位置和裂纹深度之间的关系。试验结果表明:1/2临界转速区的2×共振现象以及1/3临界转速区的3×共振现象是转轴裂纹故障的典型特征,其中2×共振峰值会在裂纹深度达到一个临界点后迅速增加;而区别于已有研究结果,3×共振峰值会在裂纹深度达到临界点后突降;同时,引发2×和3×共振峰值发生突变的临界深度与裂纹位置是否处于轮盘根部存在关联。 展开更多
关键词 转子动力学 振动特性试验 裂纹深度 裂纹位置 多盘转子系统
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Analysis of Rotor-Seizure-Induced Pressure Rise in a Nuclear Reactor Primary Cooling Loop
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作者 Haoyu Cui Congxin Yang +2 位作者 Yanlei Guo Tianzhi Lv Sen Zhao 《Fluid Dynamics & Materials Processing》 EI 2024年第12期2907-2926,共20页
Most of existing methods for the safety assessment of the primary cooling loop of nuclear reactors in conditions of reactor coolant pump(RCP)failure(rotor seizure accident)essentially rely on the combination of one-di... Most of existing methods for the safety assessment of the primary cooling loop of nuclear reactors in conditions of reactor coolant pump(RCP)failure(rotor seizure accident)essentially rely on the combination of one-dimensional theory and experience.This study introduces a novel three-dimensional model of the‘Hualong-1’(HPR1000)primary loop and uses the method of matching the resistance characteristics of the tube to ensure that the main pump operates at the rated operating condition.In particular,the three-dimensional unsteady numerical calculation of the RCP behavior in the rotor-seizure accident condition is carried out in the framework of the RNG k-εturbulence model.The related transient pressure surge law and hydraulic load response are obtained accordingly. 展开更多
关键词 Axial-flow reactor coolant pump reactor primary loop rotor seizure accident condition pressure surge hydraulic load
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Analysis and Research on Aerodynamic Characteristics of Quad Tilt Rotor Aircraft
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作者 Jike Jia Xiaomei Ye +2 位作者 Guoyi He Qingjin Huang Zhile Hong 《Advances in Aerospace Science and Technology》 2024年第1期28-39,共12页
For the quad tilt rotor aircraft, a computational fluid dynamics method based on multiple reference frames (MRF) was used to analyze the influence of aerodynamic layout parameters on the aerodynamic characteristics of... For the quad tilt rotor aircraft, a computational fluid dynamics method based on multiple reference frames (MRF) was used to analyze the influence of aerodynamic layout parameters on the aerodynamic characteristics of the quad tilt rotor aircraft. Firstly, a numerical simulation method for the interference flow field of the quad tilt rotor aircraft is established. Based on this method, the aerodynamic characteristics of isolated rotors, rotor combinations at different lateral positions on the wing, and rotor rotation directions under different inflow velocities were calculated and analyzed, in order to grasp their aerodynamic interference laws and provide reference for the design and control theory research of such aircraft. 展开更多
关键词 Quad Tilt rotor Aircraft Analysis of Aerodynamic Characteristics CFD Method
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Optimization of the Gas Generator in Composite Power System with Tip-Jet Rotor
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作者 Jianxiang Tang Yifei Wu +1 位作者 Yun Wang Jinwu Wu 《Journal of Power and Energy Engineering》 2024年第3期60-74,共15页
The key and bottleneck of research on the tip-jet rotor compound helicopter lies in the power system. Computational Fluid Dynamics (CFD) was used to numerically simulate the gas generator and rotor inner passage of th... The key and bottleneck of research on the tip-jet rotor compound helicopter lies in the power system. Computational Fluid Dynamics (CFD) was used to numerically simulate the gas generator and rotor inner passage of the tip-jet rotor composite power system, studying the effects of intake mode, inner cavity structure, propellant components, and injection amount on the characteristics of the composite power system. The results show that when a single high-temperature exhaust gas enters, the gas generator outlet fluid is uneven and asymmetric;when two-way high-temperature exhaust gas enters, the outlet temperature of the gas generator with a tilted inlet is more uniform than that with a vertical inlet;adding an inner cavity improves the temperature and velocity distribution of the gas generator's internal flow field;increasing the energy of the propellant is beneficial for improving the available moment. 展开更多
关键词 Tip-Jet Driven rotor Composite Power System Gas Generator Optimization Hydrogen Peroxide Aerodynamic Characteristics Numerical Simulation
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Cooling and Optimization in the Groove of the Outer Rotor HubMotor
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作者 Zhuo Liu Yecui Yan 《Frontiers in Heat and Mass Transfer》 EI 2024年第5期1443-1460,共18页
The external rotor hub motor adopts direct drive mode,no deceleration drive device,and has a compact structure.Its axial size is smaller than that of a deceleration-driven hub motor,which greatly reduces the weight of... The external rotor hub motor adopts direct drive mode,no deceleration drive device,and has a compact structure.Its axial size is smaller than that of a deceleration-driven hub motor,which greatly reduces the weight of the vehicle and increases the cruising range of the vehicle.Because of the limited special working environment and performance requirements,the hub motor has a small internal space and a large heat generation,so it puts forward higher requirements for heat dissipation capacity.For the external rotor hub motor,a new type of in-tank watercooled structure of hub motor was proposed to improve its cooling effect and performance.Firstly,the threedimensional finite element model of the motor is established to analyze the characteristics of motor loss and temperature field distribution.Secondly,the cooling performance of different cooling structures in the tank was studied.Finally,the thermal network model and three-dimensional finite element analysis were used to optimize the water-cooled structure in the tank,and the power density of themotor was improved by improving the cooling performance under the condition of volume limitation of the hub motor.The results show that the cooling effect of the proposed water-cooled structure in the tank is significant under the condition of constant power density.Compared to natural ventilation,the maximum temperature was reduced by 33.13°C and the cooling effect was increased by about 27.7%. 展开更多
关键词 Outer rotor hub motor temperature field water cooling in the tank motor loss thermal networks high torque density
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Dynamical Modeling and Dynamic Characteristics Analysisof a Coaxial Dual-Rotor System
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作者 Yubin Yue Hongjun Wang Shenglun Zhang 《Journal of Dynamics, Monitoring and Diagnostics》 2024年第2期99-111,共13页
The dual-rotor structure serves as the primary source of vibration in aero-engines. Understanding itsdynamical model and analyzing dynamic characteristics, such as critical speed and unbalanced response, arecrucial fo... The dual-rotor structure serves as the primary source of vibration in aero-engines. Understanding itsdynamical model and analyzing dynamic characteristics, such as critical speed and unbalanced response, arecrucial for rotor system dynamics. Previous work introduced a coaxial dual-rotor-support scheme for aeroengines,and a physical model featuring a high-speed flexible inner rotor with a substantial length-to-diameter ratiowas designed. Then a finite element (FE) dynamic model based on the Timoshenko beam elements and rigid bodykinematics of the dual-rotor system is modeled, with the Newmark method and Newton–Raphson method used forthe numerical calculation to study the dynamic characteristics of the system. Three different simulation models,including beam-based FE (1D) model, solid-based FE (3D) model, and transfer matrix model, were designed tostudy the characteristics of mode and the critical speed characteristic of the dual-rotor system. The unbalancedresponse of the dual-rotor system was analyzed to study the influence of mass unbalance on the rotor system. Theeffect of different disk unbalance phases and different speed ratios on the dynamic characteristics of the dual-rotorsystem was investigated in detail. The experimental result shows that the beam-based FE model is effective andsuitable for studying the dual-rotor system. 展开更多
关键词 coaxial dual-rotor system dynamical modeling dynamic characteristics analysis rotor dynamics
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基于麻雀算法优化神经网络的螺杆砂带磨削去除深度预测
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作者 杨赫然 张培杰 +3 位作者 孙兴伟 潘飞 董祉序 刘寅 《表面技术》 北大核心 2025年第2期182-190,共9页
目的准确获得螺杆转子砂带磨削材料去除深度,探究工艺参数对材料去除深度的影响。方法通过分析螺杆转子砂带磨削去除机理,确定材料去除深度影响因素。提出一种基于麻雀算法优化长短时记忆网络-卷积神经网络模型(SSA-CNN-LSTM),对螺杆转... 目的准确获得螺杆转子砂带磨削材料去除深度,探究工艺参数对材料去除深度的影响。方法通过分析螺杆转子砂带磨削去除机理,确定材料去除深度影响因素。提出一种基于麻雀算法优化长短时记忆网络-卷积神经网络模型(SSA-CNN-LSTM),对螺杆转子砂带磨削加工中的材料去除深度进行预测。以磨削中影响材料去除深度的因素为输入,磨削深度为输出,构建利用SSA对CNN-LSTM超参数进行寻优的预测模型,并且与CNN-LSTM、LSTM、PSO-BP、RBF以及随机森林预测方法进行对比。结果所提预测方法平均绝对百分比误差MAPE可达0.0461,均方根差RMSE为9.261,平均绝对误差MAE达7.836,确定系数R^(2)为0.9974,相比于未优化CNN-LSTM网络和其他经典网络模型,预测精度更高,能够有效预测螺杆转子磨削材料去除深度。利用提出的模型探究了磨削工艺参数对材料去除深度MRD和材料去除一致性的影响。由预测结果可知,螺杆转子砂带磨削材料去除深度随法向压力、砂带线速度增加而增大,随进给速度、砂带目数增加而减小,且受法向压力影响最明显。通过对磨削前后工件廓形进行分析可知,材料去除深度随磨削区域受到的法向压力呈现中间磨削深度大、两侧逐渐减小的趋势。结论提出的预测模型预测效果显著,分析了工艺参数对磨削材料去除深度和去除一致性的影响规律,可为其他类型的加工轮廓预测提供参考。 展开更多
关键词 材料去除深度 砂带磨削 预测 螺杆转子
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转子尖部角区分离对高负荷压气机性能影响的实验与数值研究
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作者 于贤君 侯景韬 +1 位作者 安广丰 刘宝杰 《推进技术》 北大核心 2025年第2期67-78,共12页
为了探究转子尖部角区分离对高负荷压气机性能及内部流场的影响,以设计负荷系数为0.46的单级高负荷压气机为研究对象,通过实验与数值计算研究了转子叶尖间隙为0.6%与1.3%叶高的两种情况下高负荷压气机级特性与内部流场细节,分析了转子... 为了探究转子尖部角区分离对高负荷压气机性能及内部流场的影响,以设计负荷系数为0.46的单级高负荷压气机为研究对象,通过实验与数值计算研究了转子叶尖间隙为0.6%与1.3%叶高的两种情况下高负荷压气机级特性与内部流场细节,分析了转子尖部角区分离对于高负荷压气机性能的影响规律及其流动机制。结果表明,转子叶尖间隙为0.6%叶高时,小流量工况下转子尖部吸力面出现了明显的角区分离;而转子叶尖间隙为1.3%叶高时,小流量工况下转子尖部流动由泄漏流主导。随着小间隙下转子尖部角区分离的增强,转子尖部堵塞与损失剧烈增长;同时,由于转子吸力面径向迁移的增强,小流量工况下转子近轮毂区域损失降低、负荷升高。相应地,压气机级总压升随流量减小表现出“先平缓,再升高,最后快速下降”的特点,级效率随着小流量工况总压升的进一步升高快速下降。 展开更多
关键词 高负荷压气机 角区分离 转子 实验研究 数值模拟
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计及功率指令和积分周期优化的风电机组转子动能功率平滑控制
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作者 朱瑛 李斌 +1 位作者 孔旻昊 卫志农 《电工技术学报》 北大核心 2025年第4期1063-1077,共15页
对风电功率进行平滑处理能够有效降低风电波动对电网造成的负面影响。相较于其他方法,通过转子动能平滑风电功率,具有成本低、响应快的优势。该文提出一种计及功率指令和积分周期优化的新型风电机组转子动能功率平滑方法。首先,从风电... 对风电功率进行平滑处理能够有效降低风电波动对电网造成的负面影响。相较于其他方法,通过转子动能平滑风电功率,具有成本低、响应快的优势。该文提出一种计及功率指令和积分周期优化的新型风电机组转子动能功率平滑方法。首先,从风电机组的传递函数出发,推导出新型平滑参考功率,通过改变参数,能够实现对该功率指令平滑程度和波动均值大小的解耦调节。其次,通过转速闭环控制实现对功率指令的间接精准跟踪,分析了其中的关键参数积分周期Δt对功率跟踪效果产生影响的数学机理,并提出了Δt的优化整定方法。最后,以永磁直驱风电机组为研究对象,通过建立仿真模型及搭建实验平台,验证了所提新型功率平滑控制策略的可行性及有效性。 展开更多
关键词 风电机组 功率平滑 转子动能 积分周期 小扰动线性化
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智能无人机巡线机器人复合系统关键技术研究
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作者 鲁杰 张兆广 +1 位作者 宋新利 侯力枫 《机械设计与制造》 北大核心 2025年第3期320-324,共5页
这里结合巡线机器人物理、机械、电气特性,研究适于搭载的多旋翼无人机平台,并结合巡线机器人的放置和回收特征,研究自动识别与自动对接、自动放置和自动回收方案。开发了一套复杂的一体化智能系统,在整个研发过程中,对无人机机载AI前... 这里结合巡线机器人物理、机械、电气特性,研究适于搭载的多旋翼无人机平台,并结合巡线机器人的放置和回收特征,研究自动识别与自动对接、自动放置和自动回收方案。开发了一套复杂的一体化智能系统,在整个研发过程中,对无人机机载AI前端自动识别与控制、导航与精确定位、无人机平台搭载接口、巡线机器人结构模块、巡视扫描装置、任务自主规划等部分进行优化和改进,并且在结构与功能之间保证了很好的协调性和适用性,适应未来输电线路智能巡检趋势的要求。 展开更多
关键词 巡线机器人 多旋翼无人机 放置和回收 智能系统 识别与控制
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不平衡电压下励磁绕组匝间短路对同步调相机磁场及转子振动特性的影响
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作者 李俊卿 张承志 +2 位作者 何玉灵 胡晓东 刘若尧 《电工电能新技术》 北大核心 2025年第1期33-44,共12页
随着新一代同步调相机的大量使用,调相机的安全性问题日益突出。励磁绕组匝间短路是一种常见的故障,直接影响到调相机的正常工作。本文以电网电压不平衡状态下调相机发生励磁绕组匝间短路的故障特征分析为目标,建立了电网电压平衡状态... 随着新一代同步调相机的大量使用,调相机的安全性问题日益突出。励磁绕组匝间短路是一种常见的故障,直接影响到调相机的正常工作。本文以电网电压不平衡状态下调相机发生励磁绕组匝间短路的故障特征分析为目标,建立了电网电压平衡状态下调相机正常运行与发生励磁绕组匝间短路故障、不平衡电压下调相机未发生故障以及发生励磁绕组匝间短路故障四种工况下气隙磁通密度、转子不平衡磁拉力的统一数学表征,分析了不同工况下调相机的转子振动特性,并从谐波含量、谐波幅值等多方面进行了对比分析,揭示了调相机故障机理。基于某场站TTS-300-2型新型同步调相机建立了四种工况下的有限元仿真模型,并在动态模拟实验室中,以MJF-30-6型故障模拟同步电机模拟调相机运行进行了实验验证。结果表明,在不平衡电压下发生故障时气隙磁通密度产生衰减,转子不平衡磁拉力出现三次谐波分量。通过仿真分析与实验验证,理论研究成果的准确性得到了充分证实,为调相机故障诊断工作奠定了坚实的理论基础。 展开更多
关键词 同步调相机 不平衡电压 励磁绕组匝间短路 转子振动 有限元
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风电场参与电网一次调频的功率分配策略
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作者 张小莲 孙啊传 +2 位作者 陈冲 郝思鹏 许乐妍 《电气工程学报》 北大核心 2025年第1期309-316,共8页
针对不同风况下运行的风电场调频能力差异性的问题,提出一种多风电场参与电网一次调频的调频功率协同分配策略,并对风电场的调频能力评估方法进行了改进。该策略提出风电场调频功率协同控制方法,该方法建立在风电场各台机组的一次调频... 针对不同风况下运行的风电场调频能力差异性的问题,提出一种多风电场参与电网一次调频的调频功率协同分配策略,并对风电场的调频能力评估方法进行了改进。该策略提出风电场调频功率协同控制方法,该方法建立在风电场各台机组的一次调频控制策略采用惯量控制和下垂控制的基础上,旨在根据风电场转子动能实现按能力分配调频功率,从而有效改善风电场在频率支撑过程中的调频功率响应特性。通过仿真分析,改进后的风电场调频能力评估方法能够针对不同风况下运行的风电场,有效评估其调频能力大小;采用改进后风电场协同控制策略,风电场之间的调频功率能够实现按能力分配,调频功率得到充分利用,相较于传统协同控制,系统频率响应有明显改善。 展开更多
关键词 转子动能 风电场一次调频 协同控制 功率分配
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