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    					| 风电机组传动链动力响应特性与支撑系统影响 | 
  					 
  					  										
						白聪儿1,2( ),孙哲杰1,2,秦美娟1,2,王潇1,2,刘勇1,2 | 
					 
															
					1. 浙江运达风电股份有限公司,浙江 杭州 310012 2. 浙江省风力发电技术重点实验室,浙江 杭州 310012 | 
					 
										
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    					| Dynamic response characteristics of wind turbine drivetrain and influence of support system | 
  					 
  					  					  					
						Cong-er BAI1,2( ),Zhe-jie SUN1,2,Mei-juan QIN1,2,Xiao WANG1,2,Yong LIU1,2 | 
					 
															
						1. Zhejiang Windey Co., Ltd., Hangzhou 310012, China 2. Key Laboratory of Wind Power Technology of Zhejiang Province, Hangzhou 310012, China | 
					   
									 
				
				
					
						
							
								
									
									
									
									
									 
          
          
            
             
												
												
												
												
												
												引用本文: 
																													
																																白聪儿,孙哲杰,秦美娟,王潇,刘勇. 风电机组传动链动力响应特性与支撑系统影响[J]. 浙江大学学报(工学版), 2023, 57(6): 1165-1174.	
																															 
																																								     												                                                    																													
																																Cong-er BAI,Zhe-jie SUN,Mei-juan QIN,Xiao WANG,Yong LIU. Dynamic response characteristics of wind turbine drivetrain and influence of support system. Journal of ZheJiang University (Engineering Science), 2023, 57(6): 1165-1174.	
																															  
																																										链接本文: 
															
																
																	
																	https://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2023.06.012
																	   或   
																
																
																https://www.zjujournals.com/eng/CN/Y2023/V57/I6/1165
														    
																												   
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																| 1 | 
																 
															     李垚, 朱才朝, 陶友传, 等 风电机组可靠性研究现状与发展趋势[J]. 中国机械工程, 2017, 28 (9): 1125- 1133 LI Yao, ZHU Cai-chao, TAO You-chuan, et al Research status and development tendency of wind turbine reliability[J]. China Mechanical Engineering, 2017, 28 (9): 1125- 1133
															     																 | 
																	  
																																
																| 2 | 
																 
															     SCHLECHT B, SCHULZE T, DEMTRÖDER J. Multibody-system-simulation of drive trains of wind turbines [C]// 2002 AGMA Fall Technical Meeting. Alexandria: American Gear Manufacturers Association, 2002.
															     																 | 
																	  
																																
																| 3 | 
																 
															     Det Norske Veritas Group. Machinery for wind turbines: DNV-ST-0361 [S]. [S.l.]: DNV, 2016.
															     																 | 
																	  
																																
																| 4 | 
																 
															     BEASLEY N J. Effects of component model fidelity level on dynamic analysis accuracy of a multi-MW Wind turbine drivetrain [D]. Clemson: Clemson University, 2019.
															     																 | 
																	  
																																
																| 5 | 
																 
															     李辉, 仇世龙, 柴兆森, 等 计及齿轮全柔性的风电机组传动链有限元建模及扭振特性分析[J]. 太阳能学报, 2020, 41 (3): 80- 88 LI Hui, QIU Shi-long, CHAI Zhao-sen, et al Finite element modeling and torsional vibration analysis of wind turbine drivetrain considering full flexibility of gears[J]. Acta Energiae Solaris Sinica, 2020, 41 (3): 80- 88
															     																 | 
																	  
																																
																| 6 | 
																 
															     仇世龙. 双馈风电机组传动链建模与扭振疲劳损耗研究[D]. 石河子: 石河子大学, 2020. QIU Shi-long. Study on modeling and torsional fatigue loss of Doubly-fed wind turbine drivetrain [D]. Shihezi: Shihezi University, 2020.
															     																 | 
																	  
																																
																| 7 | 
																 
															     黄伟. 风电机组多体系统建模与动态特性仿真分析研究[D]. 重庆: 重庆大学, 2013. HUANG Wei. Multibody system modeling and simulation analysis and research on dynamic characteristic of wind turbine [D]. Chongqing: Chongqing University, 2013.
															     																 | 
																	  
																																
																| 8 | 
																 
															     杜静, 秦月, 李成武 风力发电机组传动链动力学建模与仿真分析[J]. 太阳能学报, 2014, 35 (10): 1950- 1957 DU Jing, QIN Yue, LI Cheng-wu Dynamics modeling and simulation analysis of wind turbine drive train[J]. Acta Energiae Solaris Sinica, 2014, 35 (10): 1950- 1957
															     																 | 
																	  
																																
																| 9 | 
																 
															     刘桦, 邓良, 阳小林 兆瓦级风电机组传动链动力学建模及仿真方法研究[J]. 东方汽轮机, 2016, (2): 51- 63 LIU Hua, DENG Liang, YANG Xiao-lin Research on dynamics modeling and simulation method of drive train for mega-watts wind turbine[J]. Dongfang Turbine, 2016, (2): 51- 63
															     																 | 
																	  
																																
																| 10 | 
																 
															     赵榕梅. 基于多柔体建模的风电机组传动链动态设计评估方法[D]. 北京: 华北电力大学, 2020. ZHAO Rong-mei. Dynamic design evaluation method of wind turbine drive train based on multi-flexible body modeling [D]. Beijing: North China Electric Power University, 2020.
															     																 | 
																	  
																																
																| 11 | 
																 
															     谭建军, 朱才朝, 宋朝省, 等 风电机组传动链刚柔耦合动态特性分析[J]. 太阳能学报, 2020, 41 (7): 341- 351 TAN Jian-jun, ZHU Cai-chao, SONG Chao-sheng, et al Dynamic characteristics analysis of wind turbine drivetrain with rigid-flexible coupling[J]. Acta Energiae Solaris Sinica, 2020, 41 (7): 341- 351
															     																 | 
																	  
																																
																| 12 | 
																 
															     TAN J J, ZHU C C, SONG C S, et al Dynamic modeling and analysis of wind turbine drivetrain considering platform motion[J]. Mechanism and Machine Theory, 2019, 140: 781- 808 
															     															     	 
															     																     		doi: 10.1016/j.mechmachtheory.2019.06.026
															     																     																     																 | 
																	  
																																
																| 13 | 
																 
															     ZHANG S L, ZHU C C, SONG C S, et al Natural characteristic analysis of wind turbine drivetrain considering flexible supporting[J]. Journal of Mechanical Engineering Science, 2018, 232 (5): 842- 856 
															     															     	 
															     																     		doi: 10.1177/0954406217692006
															     																     																     																 | 
																	  
																																
																| 14 | 
																 
															     许亚能. 基于柔性支撑的大兆瓦风力发电机组动力学建模与仿真分析[D]. 重庆: 重庆大学, 2019. XU Ya-neng. Dynamic modeling and simulation analysis of large MW wind turbine based on flexible support [D]. Chongqing: Chongqing University, 2019.
															     																 | 
																	  
																																
																| 15 | 
																 
															     马德福. 风电机组主轴承的刚柔耦合建模与动态响应研究[D]. 兰州: 兰州理工大学, 2018. MA De-fu. Study on rigid-flexible coupling modeling and dynamic response of main bearings of wind turbine [D]. Lanzhou: Lanzhou University of Technology, 2018.
															     																 | 
																	  
																																
																| 16 | 
																 
															     CRAIG JR R R, BAMPTON M C C Coupling of substructures for dynamic analyses[J]. AIAA Journal, 1968, 6 (7): 1313- 1319 
															     															     	 
															     																     		doi: 10.2514/3.4741
															     																     																     																 | 
																	  
																																
																| 17 | 
																 
															     李梦雪. 旋转机械金属橡胶基础隔振试验与仿真研究[D]. 大庆: 东北石油大学, 2018. LI Meng-xue. Experimental and simulation study on vibration isolation system of rotating machinery [D]. Daqing: Northeast Petroleum University, 2018.
															     																 | 
																	  
																																
																| 18 | 
																 
															     Dassault Systèmes Simulia Corporation. Bearing modules [Z].[2022-03-15]. https://www.3ds.com/products-services/simulia/products/simpack/product-modules/bearing-modules.
															     																 | 
																	  
																																
																| 19 | 
																 
															     The Association of German Engineer (VDI). Measurement and evaluation of the mechanical vibration of wind turbines and their components: wind turbines with gearbox: VDI 3834 part 1 [S]. [S.l.]: VDI-GPP, 2015.
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