1 |
李鑫, 莫言青, 邱亚 . VRB仿真模型综述[J]. 机械设计与制造工程, 2017, 46(11): 1-7.
|
|
LI Xin , MO Yanqing , QIU Ya . VRB simulation model review[J]. Mechane Design and Manufacturing Engineering, 2017, 46 (11): 1-7.
|
2 |
TANG A , BAO J , SKYLLAS-KAZACOS M . Dynamic modelling of the effects of ion diffusion and side reactions on the capacity loss for vanadium redox flow battery[J]. Journal of Power Sources, 2011, 196(24): 10737-10747.
|
3 |
TANG A , BAO J , SKYLLAS-KAZACOS M . Thermal modelling of battery configuration and self-discharge reactions in vanadium redox flow battery[J]. Journal of Power Sources, 2012, 216: 489-501.
|
4 |
SKYLLAS-KAZACOS M , MENICTAS C . The vanadium redox battery for emergency back-up applications[C]//International Telecommunications Energy Conference, 1997.
|
5 |
CHAHWAN J , ABBEY C , JOOS G . VRB modelling for the study of output terminal voltages , internal losses and performance[C]//Electrical Power Conference, IEEE, 2007.
|
6 |
SHAH A A , WATT-SMITHM J , WALSH F C . A dynamic performance model for redox-flow batteries involving soluble species[J]. Electrochimica Acta, 2008, 53(27): 8087-8100.
|
7 |
周正, 殷聪, 房红琳 . VRB电化学极化理论研究[J]. 东方电气评论, 2014, 28(2): 1-7.
|
|
ZHOU Zheng , YIN Cong , FANG Honglin . Theoretical study on VRB electrochemical polarization[J]. Dongfang Electric Review, 2014, 28 (2): 1-7.
|
8 |
田野, 刘建国, 彭海泉 . 三维非恒温的钒电池流场模型[J]. 电源技术, 2012, 36(2): 201-203.
|
|
TIAN Ye , LIU Jianguo , PENG Haiquan . Three dimensional non isothermal flow field model of vanadium battery[J]. Chinese Journal of Powe Source, 2012, 36 (2): 201-203.
|
9 |
CHAHWAN J A . Vanadium-redox flow and lithium-ion battery modelling and performance in wind energy applications[D]. Montreal: McGill University, 2007.
|
10 |
姚敦平 . 钒电池快速充电方法及钒电池光伏储能系统建模研究[D]. 衡阳: 南华大学, 2012.
|
|
YAO Dunping . Fast charging method of vanadium batteries and modeling of photovoltaic energy storage system of vanadium battery [D]. Hengyang: Nanhua University, 2012.
|
11 |
王湘明, 李庆磊, 郭雨梅 . 基于Matlab/SimulinkVRB的建模研究[J]. 电源技术, 2013, 37(2): 234-237.
|
|
WANG Xiangming , LI Qinglei , GUO Yumei . Modeling research based on MATLAB/Simulink VRB [J]. Chinese Journal of Power Sources, 2013, 37(2): 234-237.
|
12 |
雷加智, 李勋, 朱敬峰 . VRB模型及其充放电控制[J]. 电源技术, 2013, 37(9): 1574-1576.
|
|
LEI Jiazhi , LI Xun , ZHU Jingfeng . VRB model and charge and discharge control [J]. Chinese Journal of Power Sources, 2013, 37 (9): 1574-1576.
|
13 |
沈洁, 李广凯, 侯耀飞 . 钒液流电池建模及充放电效率分析[J]. 电源技术, 2013, 37(6): 1001-1003.
|
|
SHEN Jie , LI Guangkai , HOU Yaofei . Modeling and charging and discharging efficiency analysis of vanadium liquid flow batteries[J]. Chinese Journal of Power Sources, 2013, 37 (6): 1001-1003.
|
14 |
彭亚凯, 刘飞, 李爱魁 . VRB电气模型建模与验证[J]. 水电能源科学, 2012(5): 188-190.
|
|
PENG Yakai , LIU Fei , LI Aikui . VRB electrical model modeling and verification[J]. Hydropower Energy Science, 2012 (5): 188-190.
|
15 |
迟晓妮, 朱敏刚, 吴秋轩 . 基于等效模型的全钒液流电池运行优化控制研究[J]. 储能科学与技术, 2018, 7(3): 530-538.
|
|
CHI Xiaoni , ZHU Mingang , WU Qiuxuan . Operational optimization control of all vanadium liquid flow battery based on equivalent model[J]. Energy Storage Science and Technology, 2018, 7 (3): 530-538.
|
16 |
刘记 . 全钒液流电池双极板流道的优化及流量控制研究[D]. 长春: 吉林大学, 2011.
|
|
LIU Ji . Study on optimization and flow control of bipolar plate runner for all-vanadium liquid flow battery [D]. Changchun: Jilin University, 2011.
|
17 |
BLANC C , RUFER A . Multiphysics and energetic modeling of a vanadium redox flow battery[C]// IEEE International Conference on Sustainable Energy Technologies, 2008.
|
18 |
BLANC C . Multiphysics and energetic modeling of a vanadium redox flow battery electricity storage system[D]. Proc. Int. Conf. on Sustainable Energy Technologies (ICSET), doi: 10.1109/ICSET.2008.4747096, 2008.
|