| 
					
						| 
								
									| 能源工程 |  |     |  |  
    					|  |  
    					| Taconis热声振荡的数值模拟 |  
						| 郭轶楠1, 雷刚2, 王天祥2, 王凯1, 孙大明1 |  
					| 1浙江大学 制冷与低温研究所,浙江 杭州,310027;2航天低温推进剂技术国家重点实验室,北京,100028 |  
						|  |  
    					| Numerical simulation of Taconis thermoacoustic oscillation |  
						| GUO Yi-nan1, LEI Gang2, WANG Tian-xiang2, WANG Kai1, SUN Da-ming1* |  
						| 1. Institute of Refrigeration and Cryogenics, Zhejiang University, Hangzhou 310027, China; 2. State Key Laboratory of Technologies in Space Cryogenic Propellants, Beijing 100028, China
 |  
					
						| 
								
									|  
          
          
            
             
												
												
												| 
												
												引用本文:
																																郭轶楠, 雷刚, 王天祥, 王凯, 孙大明. Taconis热声振荡的数值模拟[J]. J4, 2014, 48(2): 327-333.	
																															 
																																GUO Yi-nan, LEI Gang, WANG Tian-xiang, WANG Kai, SUN Da-ming. Numerical simulation of Taconis thermoacoustic oscillation. J4, 2014, 48(2): 327-333.	
																															 链接本文: 
																																	
																	http://www.zjujournals.com/eng/CN/10.3785/j.issn.1008-973X.2014.02.021
																	   或   
																																
																http://www.zjujournals.com/eng/CN/Y2014/V48/I2/327
														    |  
            
									            
									                
																														  
																| [1] LUCK H, TREPP C. Thermoacoustic oscillations in cryogenics. Part 2: applications [J].Cryogenics, 1992, 32(8): 698702.[2] QIU L M, LOU P, WANG K, et al. Characteristics of onset and damping in a standing-wave thermoacoustic engine driven by liquid nitrogen [J]. Chinese Science Bulletin, 2012, 57: 1-4.
 [3] WANG K, QIU L M,WANG B, et al. A standing-wave thermoacoustic engine driven by liquid nitrogen [C]∥ AIP Conference Proceedings. Spokane: American Institute of Physics, 2012, 1434(57):351-358.[4] TACONIS K W, BEENAKKER J J M, NIER A O C, et al. Measurements concerning the vapour-liquid equilibrium of solutions of He3 in He4 below 2.19 °K [J]. Physical Amsterdam, 1949, 15: 733-739.
 [5] ROTT N. Damped and thermally driven acoustic oscillations in wide and narrow tubes [J]. Zeitschrift für Angewandte Mathematik und Physik (ZAMP), 1969, 20: 230-243.
 [6] ROTT N. Thermally driven acoustic oscillations. Part II: Stability limit for helium [J]. Zeitschrift für Angewandte Mathematik und Physik (ZAMP), 1973, 24: 54.
 [7] ROTT N. Thermally driven acoustic oscillations. part Ш: second-order heat flux [J]. Zeitschrift für Angewandte Mathematik und Physik (ZAMP), 1975, 26: 43-49.
 [8] YAZAKI T, TOMINAGA A, NARAHARA Y. Experiments on thermally driven acoustic oscillations of gaseous helium [J]. Journal of Low Temperature Physics, 1987, 41: 45-60.
 [9] SUGIMOTO N, SHIMIZU D. Boundary-layer theory for Taconis oscillations in a helium-filled tube [J]. Physics Of Fluids, 2008, 20(10), 10410210410211.
 [10] SHIMIZU D, SUGIMOTO N. Physical Mechanisms of Thermoacoustic Taconis Oscillations [J]. Journal of the Physical Society of Japan, 2009, 78(9), 0944010944016
 [11] SHIMIZU D, SUGIMOTO N. Numerical study of thermoacoustic Taconis oscillations [J]. Journal Of Applied Physics, 2010, 107(3), 03491003491011
 [12] 余国瑶. 热声发动机自激振荡过程及热声转换特性研究 [D].北京:中国科学院理化技术研究所, 2008.
 YU Guo-yao. Study of spontaneous oscillation and thermoacoustic conversion characteristics of thermoacoustic heat engines [D]. Beijing: Chinese Academy of Sciences :Technical Institute of Physics and Chemistry, 2008.
 |  
             
												
											    	
											        	|  | Viewed |  
											        	|  |  |  
												        |  | Full text 
 | 
 
 |  
												        |  |  |  
												        |  | Abstract 
 | 
 |  
												        |  |  |  
												        |  | Cited |  |  
												        |  |  |  |  
													    |  | Shared |  |  
													    |  |  |  |  
													    |  | Discussed |  |  |  |  |