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磁短路环在永磁操动机构中的应用 被引量:4
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作者 李岩 徐建源 +1 位作者 林莘 王胜辉 《华通技术》 2005年第4期8-12,共5页
在对永磁机构进行电磁场计算和分析的基础上提出了一种基于磁分路原理的永磁机构磁短路环设计方案。分析了磁短路环的工作原理,给出了磁短路环设计中的结构参数和材料的选用原则。它适用于12 kV、40.5 kV户内外真空断路器用单稳态永磁... 在对永磁机构进行电磁场计算和分析的基础上提出了一种基于磁分路原理的永磁机构磁短路环设计方案。分析了磁短路环的工作原理,给出了磁短路环设计中的结构参数和材料的选用原则。它适用于12 kV、40.5 kV户内外真空断路器用单稳态永磁搡动机构的手动分闸设计。 展开更多
关键词 操动机构 真空断路器 磁短路
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机械结构引起的轴向磁轴承"磁短路"问题的探讨
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作者 肖定国 宋喜锋 《机械设计》 CSCD 北大核心 2004年第z1期282-283,共2页
本文对由主动磁悬浮轴承的机械结构设计不合理引起的轴向磁轴承的"磁短路"问题进行了详细分析,对不同"磁短路"现象的产生原因进行了具体分析,并提出了有效的解决办法.
关键词 磁短路 轴承 保护轴承
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磁短路式磁场整形在无线能量传输中的研究
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作者 王锦宜 张晓冬 +1 位作者 许逵炜 徐诗辉 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第8期1114-1118,1127,共6页
针对磁短路整形对载流线圈空间磁场分布特性的影响以及对磁耦合无线能量系统传输距离、功率、效率的改变问题,采用解析法和磁场仿真分析法研究磁场短路整形所引起的线圈间耦合磁场的变化,并通过试验验证了采用磁短路整形模式可以在磁耦... 针对磁短路整形对载流线圈空间磁场分布特性的影响以及对磁耦合无线能量系统传输距离、功率、效率的改变问题,采用解析法和磁场仿真分析法研究磁场短路整形所引起的线圈间耦合磁场的变化,并通过试验验证了采用磁短路整形模式可以在磁耦合式无线能量传输过程中提高系统的传输距离和功率,但同时降低了效率。研究证实了磁短路整形方式可以改进无线能量传输的性能。 展开更多
关键词 无线能量传输 场整形 磁短路
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12kV真空断路器双线圈单稳态永磁机构的设计 被引量:10
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作者 张杰 姜亚军 郭大庆 《高压电器》 CAS CSCD 北大核心 2010年第9期34-38,共5页
针对应用于12 kV真空断路器的单线圈单稳态永磁机构的分闸电流较大及分闸速度不易提高的问题,笔者提出一种双线圈单稳态永磁机构,其合、分闸操作各使用一个线圈,且设置有一个磁短路环,达到降低分闸电流及提高分闸速度的目的。应用磁场... 针对应用于12 kV真空断路器的单线圈单稳态永磁机构的分闸电流较大及分闸速度不易提高的问题,笔者提出一种双线圈单稳态永磁机构,其合、分闸操作各使用一个线圈,且设置有一个磁短路环,达到降低分闸电流及提高分闸速度的目的。应用磁场有限元分析方法对永磁机构进行优化设计,并给出了设计方案及样机测试结果。试验结果证明,该永磁机构各项技术参数达到了设计要求,同时也验证了该方法的可行性。 展开更多
关键词 机构 单稳态 双线圈 真空断路器 磁短路 有限元分析
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为提高分闸能力的永磁操动机构的研究与设计 被引量:15
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作者 朱学贵 王毅 《中国电机工程学报》 EI CSCD 北大核心 2006年第7期163-167,共5页
永磁操动机构具有零部件少,可靠性高,免维护,对真空断路器良好的出力特性等优点。传统的永磁机构分闸速度较低,分闸过程较长,分闸电流较大。基于电磁感应定律,椤次定律和安培定律的应用,在动铁心的分闸端安装两个磁短路环,可以在动铁心... 永磁操动机构具有零部件少,可靠性高,免维护,对真空断路器良好的出力特性等优点。传统的永磁机构分闸速度较低,分闸过程较长,分闸电流较大。基于电磁感应定律,椤次定律和安培定律的应用,在动铁心的分闸端安装两个磁短路环,可以在动铁心启动前大大地削弱合闸永磁保持力。配合好的加工工艺,短路环能够实现自动起动、复位,能够避免误动作。通过数学模型的建立和仿真分析,配有短路环的永磁机构具有更快的分闸速度和更小的分闸电流,达到电路的快速分断和熄弧,以及控制回路简单可靠的目的。高压永磁机构的行程长,传统的永磁机构所需操作电流很大,因此至今没能投入应用,而配用这种短路环后,可以显著降低线圈的始动电流,有望将高压永磁机构投入实际应用。 展开更多
关键词 操动机构 分闸特性 真空断路器 长行程磁短路 数值计算
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Influence analysis of local heat source on internal temperature distribution of power transformer 被引量:2
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作者 BAO Yanyan FENG Tingna +3 位作者 ZHANG Guangdong LIU Kang MA Jianqiao ZHOU Xiaodong 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2021年第2期218-225,共8页
Oil immersed power transformer is the main electrical equipment in power system.Its operation reliability has an important impact on the safe operation of power system.In the process of production,installation and ope... Oil immersed power transformer is the main electrical equipment in power system.Its operation reliability has an important impact on the safe operation of power system.In the process of production,installation and operation,its insulation structure may be damaged,resulting in partial discharge and even breakdown inside the transformer.In this paper,S9-M-100/10 oil immersed distribution transformer is taken as the research object,and the distribution laws of electromagnetic field and temperature field in transformer under normal operation,inter turn short circuit and inter layer short circuit are simulated and analyzed.The simulation results show that under normal conditions,the temperatures at the oil gap between the transformer core and the high and low voltage windings and the middle position of the high-voltage winding are high.When there are inter turn and inter layer short circuit faults,the electromagnetic loss of the fault part of the transformer increases,and the temperature rises suddenly.The influence of the two faults on the internal temperature field of the transformer is different,and the influence of the inter turn short circuit fault on the temperature nearby is obvious.The analysis results can provide reference for the thermal fault interpretation and fault classification of transformer. 展开更多
关键词 oil immersed power transformer finite element method electromagnetic field short circuit fault temperature field
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Analysis of Short Circuit Faults in a System Fed by Wind Turbine
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作者 Ahmet Nayir Eugeniusz Rosolowski Leszek Jedut 《Journal of Energy and Power Engineering》 2013年第9期1809-1815,共7页
Short circuit and ground failures that are quite common in power transmission lines are investigated. These failures are designed considering a system that is supplied by this wind system, and analyses are interpreted... Short circuit and ground failures that are quite common in power transmission lines are investigated. These failures are designed considering a system that is supplied by this wind system, and analyses are interpreted. In the study, a system is set up and it is fed by the wind turbine. Furthermore, the mathematical model of wind turbine and generator is prepared and the results obtained from the simulation are evaluated. The short circuit and ground fault analyzes were performed separately for each of the three phases. ATP (alternative transient program)-EMTP (electromagnetic transients program) program is used in the analysis and the results obtained were found to be quite compatible. 展开更多
关键词 FAILURES GENERATOR wind system wind turbine power transmission lines.
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Simplified mathematical model of inter-turn short circuit of field windings in hydro-generators and its application 被引量:5
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作者 HAO LiangLiang WU JunYong +1 位作者 SUN YuGuang WANG XiangHeng 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第4期898-909,共12页
Inter-turn short circuit of field windings is a common electrical fault of generators.Simulation is an important method of investigating the fault and providing data support for fault monitoring.However,huge numbers o... Inter-turn short circuit of field windings is a common electrical fault of generators.Simulation is an important method of investigating the fault and providing data support for fault monitoring.However,huge numbers of pole pairs and damper loops in large hydro-generators would lead to lengthy calculation time,hindering scientific research and engineering application.To deal with this problem,we analyze a theoretical basis for a damper winding simplified model and then propose an equivalent treatment method.Through the analysis of steady-state current harmonic characteristics of generators with different stator winding configurations during the fault,the simplified models suitable for steady-state calculation are derived from two aspects,namely,additional rotor harmonic current frequency characteristics and the relationship of the amplitude as well as the phase of each branch current of the stator.The calculation and experimental results of the two simplified models are then compared to verify the models' correctness.A calculation example of the Three Gorges left bank VGS generator shows few deviations between the calculation results of the simplified model and the original model.Moreover,the calculation time using the simplified model is 1/1500 that using the original model,which provides a more effective tool for on-line fault monitoring.Finally,the sensitivity-verification application of the fault-monitoring scheme based on the stator steady-state unbalanced current RMS is depicted.The result shows that the scheme can monitor two-turn short circuits of field windings in the Three Gorges generator and provide high sensitivity. 展开更多
关键词 HYDRO-GENERATOR field windings inter-turn short circuit simplified model on-line monitoring
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