[1] Tang Shuangqing(汤双清). Flywheel Energy Storage Technology and Its Application[M]. Wuhan:Huazhong University of Science and Technology Press,2007. [2] Song Yiguo(宋以国),Li Chong(李翀),Li Wenyi(李文逸). Research progress on fabrication process of composite flywheel rotor[J]. Energy Storage Science and Technology (储能科学与技术),2014,3(5):509-512. [3] Dai Xingjian(戴兴建),Li Yiliang(李奕良),Yu Han(于涵). Design of high specific energy density flywheel[J]. Journal of Tsinghua University : Science and Technology (清华大学学报:自然科学版),2008,48(3):379-382. [4] Weissbach R S,Karady G G,Farmer R G. A combined uninterruptible power supply and dyna mic voltage compensator using a flywheel energy storage system[J]. Power Delivery , IEEE Transactions on ,2001,16(2):265-270. [5] Li Chong(李翀),Wang Shiyang(王诗阳),Zhao Jinlong(赵金龙). Flywheel based energy storage systems and their engineering applications[J]. Energy Storage Science and Technology (储能科学与技术),2013,2(3):276-280. [6] Dai Xingjian(戴兴建),Zhang Chaoping(张超平),Wang Shanming(王善铭), et al . Design and experimental test of 500 kW flywheel energy storage power system[J]. Chinese Journal of Power Sources (电源技术),2014,38(6):1123-1126. [7] Horner R E,Proud N J. The key factors in the design and construction of advanced flywheel energy storage systems and their application to improve telecommunication power back-up[C]// Telecommunications Energy Conference,18th International IEEE,1996:668-675. [8] Balikci A,Zabar Z,Czarkowski D, et al . Flywheel motor/generator set as an energy source for coil launchers[J]. Magnetics , IEEE Transactions on ,2001,37(1):280-283. [9] Yan Jiancheng(严建成),Liu Yong(刘永),Zhou Caipin(周才品), et al . Engineering development aspects of the HL-2A tokamak[J]. Nuclear Fusion and Plasma Physics (核聚变与等离子体物理),2004,24(4):241-247. [10] Dai Xingjian(戴兴建),Zhang Xiaozhang(张小章),Jiang Xinjian(姜新建), et al . Flywheel energy storage technology in Tsinghua University[J]. Energy Storage Science and Technology (储能科学与技术),2012,1(1):64-68. [11] 贾爱平,邓怡. 让我们的飞轮和陀螺旋转在世界前沿——记国家技术发明一等奖获得者, 北航先进惯性仪表与导航技术创新团队[J]. 中国高校科技与产业化,2008(3):18-21. [12] Dai Xingjian(戴兴建),Wang Yong(汪勇),Shen Zupei(沈祖培). Theoretical calculations and experimental validation of flywheel energy storage density[J]. Energy Storage Science and Technology (储能科学与技术),2014,3(4):312-315. [13] Yu Han(于涵),Xu Yang(徐旸),Dai Xingjian(戴兴建), et al . Creep characteristics and lifetime of aluminum alloy hubs in energy storage flywheels[J]. Journal of Tsinghua University : Science and Technology (清华大学学报:自然科学版),2005,45(6):803-805. [14] Tzeng J T,Moy P. Composite energy storage flywheel design for fatigue crack resistance[J]. Magnetics , IEEE Transactions on ,2009,45(1):480-484. [15] Metal fatigue and endurance[EB/OL]. [2008-04-18]. http://www. roymech.co.uk/Useful_Tables/Fatigue/Fatigue.html. [16] Li Yiliang(李奕良). Strength analysis of fiber-enforced flywheel and design of high effective PMB[D]. Beijing:Tsinghua University,2008. [17] Huang Qiulu(黄秋露). The stress analysis and optimization on the main part of the composite storage flywheel rotor[D]. Hangzhou:Zhejiang University,2012. |