1 |
A novel nanosilica-enhanced phase change material with anti-leakage and anti-volume-changes properties for battery thermal management Lv YF, Situ WF, Yang XQ, Zhang GQ, Wang ZY Energy Conversion and Management, 163, 250, 2018 |
2 |
Experimental examination of large capacity liFePO(4) battery pack at high temperature and rapid discharge using novel liquid cooling strategy Wang C, Zhang GQ, Li XX, Huang J, Wang ZY, Lv YF, Meng LK, Situ WF, Rao MM International Journal of Energy Research, 42(3), 1172, 2018 |
3 |
A thermal management system for rectangular LiFePO4 battery module using novel double copper mesh-enhanced phase change material plates Situ WF, Zhang GQ, Li XX, Yang XQ, Wei C, Rao MM, Wang ZY, Wang C, Wu WX Energy, 141, 613, 2017 |
4 |
Liquid cooling based on thermal silica plate for battery thermal management system Wang C, Zhang GQ, Meng LK, Li XX, Situ WF, Lv YF, Rao M International Journal of Energy Research, 41(15), 2468, 2017 |
5 |
Effect of high temperature environment on the performance of LiNi0.5Co0.2Mn0.3O2 battery Situ WF, Yang XQ, Li XX, Zhang GQ, Rao MM, Wei C, Huang Z International Journal of Heat and Mass Transfer, 104, 743, 2017 |
6 |
An experimental study of thermal management system using copper mesh-enhanced composite phase change materials for power battery pack Wu WX, Yang XQ, Zhang GQ, Ke XF, Wang ZY, Situ WF, Li XX, Zhang JY Energy, 113, 909, 2016 |