[1]
Weizao Gu, Jiarui Shen, Zhongfang Ma, et al. Beijing: Science Press, 1990 (in Chinese).
Google Scholar
[2]
Shiming Yang, Wenquan Tao. Beijing: Higher Education Press, 1998, 12-20 (in Chinese).
Google Scholar
[3]
Jiecheng Yu, Zhixin Li, et al. Journal of Engineering Thermophysics, 2006, 27(4), pp.670-672 (in Chinese).
Google Scholar
[4]
Xiaojing Ma, Weiliang Cheng, Chunhua Cui. Water power, 2011, 37(8), pp.90-93 (in Chinese).
Google Scholar
[5]
Shifeng Yan, Chunsen Cai, Shaodong Zhou, Guannan Xi. International Symposium on Heat and Energy Conservation, Dongguan, 2012 (in Chinese).
Google Scholar
[6]
Li Zhang, Songling Liu, Gaowen Liu. Journal of Propulsion Technology, 2004, 25(2) , pp.107-110 (in Chinese).
Google Scholar
[7]
Hua Dong, et al. Acta Energiae Solaris Sinica, 2002, 23(2): 246-251 (in Chinese).
Google Scholar
[8]
Chengfeng Yang, Jingzhou Zhang, Xiaoming Tan. Journal of Aerospace Power, 2004, 19(3), pp.361-365 (in Chinese).
Google Scholar
[9]
Fengming Wang, Jingzhou Zhang, Suofang Wang. Journal of Nanjing Normal University(Engineering and Technology), 2005, 5(2), pp.27-30 (in Chinese).
Google Scholar
[10]
Xueli Leng, Lin Cheng, Wenjing Du. Journal of Engineering Thermophysics, 2003, 24(2), pp.328-330 (in Chinese).
Google Scholar
[11]
Q Li. International Journal of Heat and Fluid Flow, 1998, 19, pp.245-250.
Google Scholar
[12]
Q Uzol, C Camci. ASME Paper 2001-GT-0180, (2001).
Google Scholar
[13]
Guolian Huang. Nanjing University of Aeronautics and Astronautics, 2006 (in Chinese).
Google Scholar
[14]
Daijun Wang, Honghu Ji, Baoguan Wang. International Symposium on Heat and Energy Conservation, Chongqing, 1997 (in Chinese).
Google Scholar
[15]
Ryosuke Matsumoto, Shinzo Kikkawa and Mamoru Senda. JSME International Journal, 1997, Series B. 40(1).
Google Scholar