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热物理系

李逍霄

2018-09-03 12:14  点击:[]

[中文版]

姓名

李逍霄

性别

所在部门

热物理系

职称

讲师

职务

教师

联系电话

13658396160

邮箱

Xiao.l@cqu.edu.cn

 

*个人简介:

四川乐山人,工学博士。2018年获澳大利亚昆士兰大学博士学位并于同年进入重庆大学工作。在昆士兰大学期间,师从著名科学家、澳大利亚地热能协会主席、美国能源学会学部委员Hal Gurgenci 教授。参与了澳大利亚最大的太阳能热发电项目ASTRI国家分布式973项目以及自然科学基金重点项目等多个国内外能源项目。近年来发表高水平论文十余篇,并担任Applied Energy Applied Thermal Engineering等多个期刊审稿人。

 

教育经历:

20079-20117         北京化工大学    化学工程与工艺      学士

20119-20147         北京化工大学    化学工程            硕士

201410月至今                昆士兰大学     能源与工程热物理    博士

 

*研究方向:

低品位热能的有效利用、超临界二氧化碳能量循环、塔式太阳能热发电系统、自然通风空冷塔的设计与优化及超临界二氧化碳空冷换热器的设计等

 

研究生培养:

 

 

 

在研科研项目:

 

 

 

已结题科研项目:

 

Australia Solar Thermal Research Initiative2014-2018, 参研

 

动力余热驱动的循环耦合和功冷并供(2010CB227304),2011-2014,参研

 

HFCs/HCs+吸收剂工质对物理化学行为与吸收式动力循环特性51276010),2011-2014, 参研

 

 

*发表论文:

X. Li*, H. Gurgenci, Z. Guan, X.Wang, S. Duniam, Measurements of Crosswind Influence on a Natural Draft Dry Cooling Tower for a Solar Thermal Power Plant, Applied Energy 206 (2017) 1169-1183

X. Li*, S. Duniam, H. Gurgenci, Z. Guan, A. Veeraragavan, Full scale experimental study of a small natural draft dry cooling tower for concentrating solar thermal power plant, Applied Energy 193 (2017) 15-27.

X. Li*, L. Xia, H. Gurgenci, Z. Guan, Performance enhancement for the natural draft dry cooling tower under crosswind condition by optimizing the water distribution, International Journal of Heat and Mass Transfer 107 (2017) 271-280

X. Li*, H. Gurgenci, Z. Guan, Y. Sun, Experimental Study of Cold Inflow Effect on a Small Natural Draft Dry Cooling Tower, Applied Thermal Engineering 128 (2017) 762-771.

X. Li*, Z. Guan, H. Gurgenci, Y. Lu, S. He, Simulation of the UQ Gatton natural draft dry cooling tower, Applied Thermal Engineering 105 (2016) 1013-1020.

QLiu,  L. Xia*,  M. Hu,  X. Li*, Z. Mi, J. Jia, Positive impact of a tower inlet cover on natural draft dry cooling towers under crosswind conditions, Applied Thermal Engineering 139 (2018) 283-294.  

X. Li, D. Zheng*, M. Zhang, L. Dong, Vapor–liquid equilibrium measurement of 1,1,1,3,3-pentafluoropropane+N,N-dimethylformamide/diethylene glycol dimethyl ether/N-methyl-2-pyrrolidone working fluids for absorption power cycle, Fluid Phase Equilibria 366 (2014) 1-8.

Y. Sun*, Z. Guan, H. Gurgenci, K. Hooman, X. Li,, L. Xia, Investigation on the influence of injection direction on the spray cooling performance in natural draft dry cooling tower, International Journal of Heat and Mass Transfer 110 (2017) 113-131

Z. Zou*, H. Gong, X. Lie, X. Li,, Y. Yang, Numerical investigation of the crosswind effects on the performance of a hybrid cooling-tower-solar-chimney system, Applied Thermal Engineering 126 (2017) 661-669.

Y. Sun*, Z. Guan, H. Gurgenci, K. Hooman, X. Li,, L. Xia, Investigation on the influence of injection direction on the spray cooling performance in natural draft dry cooling tower, International Journal of Heat and Mass Transfer 110 (2017) 113-131

Y. Sun*, Z. Guan, H. Gurgenci, X. Li, K. Hooman, A study on multi-nozzle arrangement for spray cooling system in natural draft dry cooling tower, Applied Thermal Engineering 124 (2017) 795-814

 

学术会议交流:

X. Li*, H. Gurgenci, Z. Guan, Performance Comparison of the Crosswind Effect on Different Size of Natural Draft Dry Cooling Towers, in:  International Conference on Industrial Chimneys and Cooling Towers, Rotterdam, Netherlands, 2016.

X. Li, Danxing Zheng*, Xuye Jing, Wei Han, An approach to working fluid selection for absorption power cycle based on the sub-cycle coupling concept, International Sorption Heat Pump Conference, 2014, 30, University of Maryland

X. Li*, Z. Guan, H. Gurgenci, CFD Simulation of a Small Natural Draft Dry Cooling Tower, in:  9th Australian Natural Convection Workshop, Monash University, Melbourne, Australia, 2015.

 [English version]

 

Xiaoxiao Li has many years of industry and academic experience in energy, heat transfer and thermodynamics. His current research interests include energy systems analysis; geothermal and concentrating solar thermal power plant technologies; cooling towers and air-cooled heat exchangers.

 

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