個人經歷
(2)2011-2013,中國農業大學,流體機械及工程專業,碩士研究生。
(3)2013-2017,中國農業大學,
水利工程專業,博士研究生。
(4)2017-至今,揚州大學,熱能工程系,講師。
研究方向
(1)流體機械內部流動分析
(2)水力機械空化特性及研究
(3)計算流體動力學分析方法研究
學術成果
參加
國家自然科學基金項目、教育部高等學校博士學科點專項科研基金項目、完成水力發電設備單位的水輪機最佳化設計項目等近10項。在《RenewableEnergy》、《OceanEngineering》等高影響力的國際期刊發表論文3篇,多次參加國際學術交流會議,以第一作者發表論文如下:
(1)Guo Qiang, Zhou Lingjiu*, Wang Zhengwei,Liu Meng, Cheng Huan. Numerical simulation for the tip leakage vortex cavitation. Ocean Engineering,
(2) Guo Qiang, Zhou Lingjiu*, Wang Zhengwei. Numerical evaluation of the clearance geometries effect on the flow field and performance of a hydrofoil. Renewable Energy,
(3) Guo Qiang, Zhou Lingjiu*, Wang Zhengwei. Comparison of BEM-CFD and full rotor geometry simulations for the performance and flow field of a marine current turbine. Renewable Energy.
(4) Guo Qiang, HuangXianbei*, Yang Fan, Qiu Baoyun. The effect of the clearance geometries on the cavitating vortices near the foil tip, Asian Working Group- IAHR’s Symposium on Hydraulic Machinery and Systems(AWG-IAHR), Beijing, China,
(5) Guo Qiang, Zhou Lingjiu*, Wang Zhengwei, et al. Effect of the endwall motion on a hydrofoil with various widths of clearance. IOP Conference Series: Earth and Environmental Science,
(6) Guo Qiang, Zhou Lingjiu*, Wang Zhengwei, et al. Numerical simulation for the tip leakage vortex cavitation. The International Symposium of Cavitation and Multiphase Flow, Zhenjiang, China,
(7) 郭嬙,周凌九*. 軸流式轉子葉頂間隙流動分析. 中國水利學會泵及泵站專業委員會2016年學術年會, 北京, 中國,
(8) Guo Qiang, Zhou Lingjiu*, Wang Zhengwei. Numerical simulation of cavitation for a horizontal axis marine current turbine. IOP Conference Series: Materials Science and Engineering,
(9) Guo Qiang, Zhou Lingjiu*, Wang Zhengwei. Comparison of BEM-CFD and rotor model simulation for predicting the performance of marine current turbines with cascade solidity increased. The 27th IAHR Symposium on Hydraulic Machinery and Systems, Montreal, Canada,
(10) Guo Qiang, Zhou Lingjiu*, Xiao Yexiang, et al. Flow field characteristics analysis of a horizontal axis marine current turbine by large eddy simulation. IOP Conference Series: Materials Science and Engineering,