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国家自然科学基金(s50588201)

作品数:4 被引量:16H指数:2
发文基金:国家自然科学基金国家教育部博士点基金国家高技术研究发展计划更多>>
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A novel method to calculate the thrust of linear induction motor based on instantaneous current value被引量:2
2012年
Because of the end effect, a linear induction motor (LIM) runs in an asymmetrical state even though the winding of each phase is symmetric. Based on the basic principle of the LIM, a new approach was proposed to calcu-late the thrust of the LIM using the instantaneous current value. A three-phase LIM model with 12 slots and a single-layer winding was designed to validate this method. The experiments show that when the current is small, the calculated results basically agree with the experiments. The agreement becomes worse with the increase of the current because of the saturation of the primary iron core. The proposed formula is suitable when the iron core of the LIM primary is in an unsaturated state.
Jiaqing MAYunpeng ZHUJing JIANG
关键词:直线感应电机电流值推力单层绕组
Vibration characteristics of a multi-block high-temperature superconducting maglev system被引量:1
2012年
The multi-block high-temperature superconducting (HTS) maglev system has more complicated dynamic characteristics than the single-block HTS maglev system. To study its vibration characteristics, we designed a maglev measurement system. The system responses at the excitation frequencies of 2, 3 and 15 Hz were examined. Results show that the responses under excitation frequencies of 2 and 3 Hz include a 6 Hz component, which means that the maglev system is a critical nonlinear system. Moreover, the 6 Hz component is much stronger than the 2 Hz or 3 Hz components in the response spectra. There is the interaction between excitation and response. Under an excitation fre-quency of 15 Hz, intensified low-frequency perturbations were observed.
Zhifang FULifeng ZHAOXing LIANG
关键词:高温超导激励频率非线性系统反应谱
Design consideration of a super-high speed high temperature superconductor maglev evacuated tube transport (I)被引量:4
2012年
The super-high speed high temperature superconductor (HTS) maglev evacuated tube transport (ETT) is a promising transport mode for the future. As a key component of the HTS maglev vehicle, the permanent magnet guide-ways (PMGs) with different geometrical configurations and iron yoke widths are analyzed by finite element method (FEM). The levitation force of a single onboard HTS maglev device over the designed PMG at different field cooling heights (FCH) is measured by magnetic levitation measurement system. Based on the designed PMG and experimental results, a preliminary scheme of subterranean super-high speed HTS maglev ETT is described in this paper. The HTS maglev ETT is mainly composed of an evacuated tube, HTS maglev vehicle, PMG, propulsion system, station, emergency rescue system, etc. In addition, a subterranean tube that consists of foundation tube and vacuum airproof layer is introduced. In order to convert the stress caused by the air pressure difference between inside and outside of the vehicle, a multi-circular vehicle body is designed. The vehicle is driven by a linear motor propulsion system under the control of a ground controlling system. The scheme of long-distance super-high speed passenger transportation is accomplished by the connection of different vehicles.
Jing JIANGXue BAILei WUYong ZHANG
关键词:高温超导运输方式永磁发电机
Aerodynamic simulation of evacuated tube maglev trains with different streamlined designs被引量:11
2012年
Based on the Navier-Stokes (N-S) equations of incompressible viscous fluids and the standard k-ε turbulence model with assumptions of steady state and two dimensional conditions, a simulation of the aerodynamic drag on a maglev train in an evacuated tube was made with ANSYS/FLOTRAN software under different vacuum pressures, blockage ratios, and shapes of train head and tail. The pressure flow fields of the evacuated tube maglev train under different vacuum pressures were analyzed, and then compared under the same blockage ratio condition. The results show that the environmental pressure of 1 000 Pa in the tube is the best to achieve the effect of aerodynamic drag reduction, and there are no obvious differences in the aerodynamic drag reduction among different streamline head shapes. Overall, the bluntshape tail and the blockage ratio of 0.25 are more efficient for drag reduction of the train at the tube pressure of 1 000 Pa.
Xuyong CHENLifeng ZHAOJiaqing MAYuansen LIU
关键词:磁悬浮列车真空管动力学模拟流线型设计NAVIER-STOKES不可压缩粘性流体
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