李早陽

李早陽

李早陽,男,博士,西安交通大學能源與動力工程學院副教授。

基本介紹

  • 中文名:李早陽
  • 畢業院校:西安交通大學
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:晶體生長原理與技術、太陽能晶體矽製備與太陽能光伏發電技術
  • 任職院校:西安交通大學能源與動力工程學院
  • 職稱:副教授
研究方向,個人經歷,主講課程,榮譽獎項,學術成果,

研究方向

晶體生長原理與技術
太陽能晶體矽製備與太陽能光伏發電技術
計算傳熱學與計算流體動力學
磁流體力學實驗與模擬
流體機械內流理論與系統調控

個人經歷

2016.01-至今:西安交通大學,能源與動力工程學院,副教授
2013.04-2015.12:西安交通大學,能源與動力工程學院,講師
2014.10-2015.10:美國明尼蘇達大學,化學工程與材料科學系,訪問學者
2008.09-2013.03:西安交通大學,能源與動力工程學院,動力工程及工程熱物理專業,工學博士
2004.09-2008.07:西安交通大學,能源與動力工程學院,熱能與動力工程專業,工學學士

主講課程

《太陽能套用》、《太陽能光電技術》、《工程湍流》、《工程倫理》

榮譽獎項

節能減排大賽優秀指導老師,2019
優秀共產黨員,西安交通大學,2018
Best Poster Presentation at China PV Technology International Conference,2017
招生宣傳工作先進個人,西安交通大學,2016/2018
西安交通大學優秀博士學位論文,西安交通大學,2015

學術成果

Chengcheng Le, Zaoyang Li, Wenxiang Mu, Zhitai Jia, Lijun Liu, 3D numerical design of the thermal field before seeding in an edge-defined film-fed growth system for β-Ga2O3 ribbon crystals, Journal of Crystal Growth
Qinghua Yu, Lijun Liu, Zaoyang Li, Yue Shao, Parameter study of traveling magnetic field for control of melt convection in directional solidification of crystalline silicon ingots, International Journal of Heat and Fluid Flow
Zaoyang Li, Xiaofang Qi, Lijun Liu, Genshu Zhou, Numerical study of melt flow under the influence of heater-generating magnetic field during directional solidification of silicon ingots, Journal of Crystal Growth
Lijun Liu, Wencheng Ma, Xiaofang Qi, Zaoyang Li, Yunfeng Zhang, Global simulation of coupled oxygen and carbon transport in an industrial directional solidification furnace for crystalline silicon ingots: Effect of crucible cover coating, International Journal of Heat and Mass Transfer
Zaoyang Li, Jeffrey H. Peterson, Andrew Yeckel, Jeffrey J. Derby, Analysis of the effects of a rotating magnetic field on the growth of cadmium zinc telluride by the traveling heater method under microgravity condition, Journal of Crystal Growth
Zaoyang Li,Lijun Liu, Yunfeng Zhang, Genshu Zhou, Influence of crucible thermal conductivity on crystal growth in an industrial directional solidification process for silicon ingots, International Journal of Photoenergy
Lijun Liu, Xiaofang Qi, Wencheng Ma, Zaoyang Li and Yunfeng Zhang, Control of the gas flow in an industrial directional solidification furnace for production of high purity multi-crystalline silicon ingots, International Journal of Photoenergy
Zaoyang Li, Lijun Liu, Genshu Zhou, Reusability of contaminated seed crystal for cast quasi-single crystalline silicon ingots, Journal of Crystal Growth
Yunfeng Zhang, Zaoyang Li, QingchaoMeng, Zhiyan Hu, Lijun Liu, Distribution and propagation of dislocation defects in quasi-single crystalline silicon ingots cast by the directional solidification method, Solar Energy Materials and Solar Cells
Zaoyang Li, Yunfeng Zhang, Zhiyan Hu, Genshu Zhou, Lijun Liu, Numerical investigation of the effect of a crucible cover on crystal growth in the industrial directional solidification process for silicon ingots, Journal of Crystal Growth
Zaoyang Li, Lijun Liu, Genshu Zhou, Iron contamination in cast quasi-single crystalline silicon ingots, Journal of Applied Physics
Zaoyang Li, Lijun Liu, Xin Liu, Yunfeng Zhang, JingfengXiong, Heat transfer in an industrial directional solidification furnace with multi-heaters for silicon ingots, Journal of Crystal Growth
Qinghua Yu, Lijun Liu, Zaoyang Li, Peng Su, Global simulations of heat transfer in directional solidification of multi-crystalline silicon ingots under a traveling magnetic field, 2013, Journal of Crystal Growth
Qinghua Yu, Lijun Liu, A'nanGeng, Biwen Jiang, Zaoyang Li, Yangyi Xu, Kangmei Xue, 3D numerical investigation and improvement to the design of the thermal field before seeding in a multi-die edge-defined film-fed growth system for sapphire ribbon crystals,Journal of Crystal Growth
Zaoyang Li, Lijun Liu,Yunfeng Zhang, QingchaoMeng, Zhiyan Hu, Genshu Zhou, Preservation of seed crystals in feedstock melting for cast quasi-single crystalline silicon ingots, International Journal of Photoenergy
Zaoyang Li, Lijun Liu, Xin Liu, Yunfeng Zhang, JingfengXiong, Effects of argon flow on melt convection and interface shape in a directional solidification process for an industrial-size solar silicon ingot, Journal of Crystal Growth
Zaoyang Li, Lijun Liu,Xiaohong Nan, KoichiKakimoto, Role of marangoni tension effects on the melt convection in directional solidification process for multi-crystalline silicon ingots, Journal of Crystal Growth
HaoWang, Lijun Liu, Xin Liu, Zaoyang Li, Control of oxygen transport in the melt of a CZ-Si crystal growth, Journal of Enhanced Heat Transfer
Xin Liu, Lijun Liu, Zaoyang Li, Yuan Wang, Effects of static magnetic fields on thermal fluctuations in the melt of an industrial CZ-Si crystal growth, Journal of Crystal Growth
Xin Liu, Lijun Liu, Zaoyang Li, Yuan Wang. Effects of cusp-shapedmagnetic fields on melt convection and oxygen transport in an industrial CZ-Si crystal growth,Journal of Crystal Growth
ZaoyangLi, Lijun Liu, Wencheng Ma, Koichi Kakimoto, Effects of argon flow on heat transfer in a directional solidification process for silicon solar cells,Journal of Crystal Growth
ZaoyangLi, Lijun Liu, Wencheng Ma, Koichi Kakimoto, Effects of argon flow on impurities transport in a directional solidification furnace for silicon solar cells,Journal of Crystal Growth
Zaoyang Li, Lijun Liu, Koichi Kakimoto, Development and application of a structured/unstructured combined mesh scheme for global modeling of a directional solidification process of silicon, ECS Transactions
Lijun Liu, Xin Liu, Zaoyang Li, Koichi Kakimoto, Computer modeling of crystal growth of silicon for solar cells,Frontiers in Energy
Lijun Liu, Hiroaki Miyazawa,Satoshi Nakano, Xin Liu, ZaoyangLi,Koichi Kakimoto, Modeling and simulation of Si crystal growth from melt, Physica Status Solidi (c)
Xin Liu, Lijun Liu, Zaoyang Li, Yuan Wang, Koichi Kakimoto, Prediction of melt-crystal interface and melt convection in a large-scale CZ-Si growth system using RANS and LES methods in global simulation, ECS Transactions
李早陽, 劉立軍, 邵玥, 周根樹, 多晶矽鑄錠過程中行波磁場作用下的傳熱流動特性, 工程熱物理學報
李早陽,劉立軍,馬文成,餘慶華,氬氣流量對多晶矽定向凝固爐熱場的影響, 工程熱物理學報

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