期刊文献+

水轮发电机稳态运行时的阻尼绕组电流谐波研究 被引量:4

Research on harmonics of damper winding current in hydro generator operated in steady-state conditions
下载PDF
导出
摘要 针对水轮发电机在稳态运行时的阻尼绕组电流谐波问题,采用场路耦合法,建立用于计算阻尼绕组电流的水轮发电机数学模型,并通过试验对该模型进行验证。以此为基础,分别计算几种不同稳态运行工况下的阻尼绕组电流及其谐波,包括电机空载运行、额定对称负载运行以及电机稳态负序运行等工况。分别研究发电机内主磁场、电枢绕组正序磁场和负序磁场对阻尼绕组电流谐波所产生的影响。此外还对阻尼绕组电流内的各次谐波分布特点以及产生机理进行了分析。对水轮发电机阻尼绕组电流谐波的研究,有助于预测阻尼条的受力情况,从而避免水轮发电机由于阻尼条振动强烈而出现断条事故。 For the purpose of analyzing the harmonics of currents in damper windings of the hydro generator operated in static state,a mathematical model,which is proved to be reliable by the test,was built to calculate the damper winding current by field-circuit coupling method. And then,aiming at several steady-state operating conditions,including no-load operation,rated symmetrical load operation and steady state negative sequence load operation,the damper winding currents influenced by the excited field,the positive sequence field and the negative sequence field were analyzed respectively. Meantime the harmonics of the damper winding current was analyzed in detail,and the different harmonics influenced by different fields in the generator mentioned above was discussed. The research on the harmonics of the damper winding currents could contribute to predict the electromagnetic force on damper bars,and could prevent the broken bar accident consequently.
出处 《电机与控制学报》 EI CSCD 北大核心 2014年第11期37-44,共8页 Electric Machines and Control
基金 国家科技重大专项(2010ZX06004-01304) 国家科技支撑计划(2011BAF03B02)
关键词 水轮发电机 阻尼条电流 稳态运行 主磁场 正序磁场 负序磁场 hydro generators damper winding current steady-state performance excited field positive sequence field negative sequence field
  • 相关文献

参考文献20

  • 1李明哲,孙玉田,范吉松,等.大型水轮发电机稳态负序能力的研究[J].大电机技术,2011(7):59-62.
  • 2LIWSCHITZ-GARIK M M. Harmonies of the salient-pole synchro- nous machine and their effects part I. MMF harmonics produced by the armature and damper winding [ J]. AIEE Transactions, 1956,75:35 - 39.
  • 3BRUDERLINK R. Current distribution in the damper bars of syn- chronous machines [ J ]. Siemens-Zeitschrift, Erlangen, 1936, 16:133.
  • 4SCHUISKY W. Current distribution in the starting cage of the syn- chronous motor[ J]. Elektrotechnik und Maschinenbau, 1940,58: 93.
  • 5POELLOT 0 E. Current distribution in the damper bars of salient ole synchronous machines during starting[ J]. Arehiv fur Eleektro- technik, Berlin-eharlottenbug, 1942,60:656.
  • 6LIWSCHITZ-GARIK M M. Harmonics of the salient-pole synchro- nous machine and their effects part III. differential leakage of the damper winding with respect to the main wave. Current distribu- tion in the damper bars[ J]. Transactions on American Institute E- lectrical Engineering, Part III Power Application System, 1958,77 (3) :462 -469.
  • 7WALKER J H, KERRUISH N. Open circuit noise in synchronous machines [ J ]. Proceeding of the IEEE, 1960, 107 ( 36 ) : 505 -512.
  • 8FUCHS E F, ERDELYI E A. Determination of waterwheel alter- nator steady-state reactances from flux plots [ J]. IEEE Transac- tions on Power Apparatus and Systems, 1972, PAS - 91:2510 - 2527.
  • 9FUCHS E F, ERDELYI E A. Determination of waterwheel alter- nator transient reactances from flux plots [ J ]. IEEE Transactions on Power Apparatus and Systems, 1972,PAS - 91 : 1795 - 1802.
  • 10FUCHS E F, ERDELYI E A. Nonlinear salient pole alternator subtransient reactances and damper winding currents [ C ]//IEEE PES Winter Meeting, 1974, New York, USA. 1974:1871- 1878.

二级参考文献18

  • 1Liang Yanping, Sun Yutian, Yao Qingshuang, et al. Calculation of electromagnetic force on damper windings for 1 000 MW hydro-generator using time- stepping FEM[C]//Intemational Council on Large Electric Systems2012. Paris, France: CIGRE, 2012: A1-104.
  • 2Liwschitz-Garik M M. Harmonics of the salient-pole synchronous machine and their effects part Ⅲ. Differential leakage of the damper winding with respect to the main wave. Current distribution in the damper bars[J]. Transactions on American Institute Electrical Engineering, Part Ⅲ Power application System, 1958, 77(3): 462-469.
  • 3Canay I M. Calculation of negative-sequence losses and negative sequence resistance of turbogenerators[J]. IEEE Transactions Power Systems, 1975, 94(3): 764-773.
  • 4Bacher J, Koefler H. Determination of the damper current distributionin a turbo generator with a massive rotor by different measuring methods[C]//Proceedings of the 15th International Conference on Electrical Machines. Brugge, Belgium: ICEM, 2002: 164.
  • 5Matsuki J, Katagi T, Okada T. Slot ripples in the damper windings of a salient-pole synchronous generator[J]. IEEE Transactions on Energy Conversion, 1994, 9(1): 126-134.
  • 6Karmaker H, Knight A M. Fields, damper currents and losses in large salient-pole synchronous machines with skewed stator slots[C]//Proceedings of the 16th International Conference on Electrical Machines. Cracow, Poland: ICEM, 2004: 1-5.
  • 7Karmaker H, Knight A M. Investigation and simulation of fields in large salient-pole synchronous machines with skewed stator slots[J]. IEEE Transactions on Energy Conversion, 2005, 20(3): 604-610.
  • 8Knight A M, Karmaker H, Weeber K. Prediction of damper winding currents and force harmonic components in large synchronous machines[C]//Proceedings of the 15th International Conference on Electrical Machines. Brugge, Belgium: ICEM, 2002: 35.
  • 9Knight A M, Karmaker H, Weeber K. Use of a permeance model to predict force harmonic components and damper winding effects in salient-pole synchronous machines [J]. IEEE Transactions on Energy Conversion, 2002, 17(4): 478-484.
  • 10Vetter W, Reichert K. Determination of damper winding and rotor iron currents in converter and line-fed synchronous machines[J]. IEEE Transactions on Energy Conversion, 1994, 9(4): 709-716.

共引文献11

同被引文献36

引证文献4

二级引证文献16

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部