科研项目
自然科学基金项目
[1] 2019-2022, 国家自然科学基金面上项目,一种独特的微通道热虹吸沸腾特性研究及其在新型3D堆叠芯片冷却中的应用,负责人
[2]2013-2016,国家自然科学基金面上项目,中高温太阳能海水淡化系统基础研究,负责人
[3]2011-2013, 国家自然科学基金面上项目,纳米结构表面喷流沸腾临界热流密度的试验和理论研究,负责人
[4] 2004-2006, 国家自然科学基金面上项目,细小通道内非沸腾环状气液两相流流动与换热强化研究, 负责人
[5] 2002-2004, 国家自然科学基金面上项目,高温超亲水纳米材料表面上的水喷流沸腾强化研究, 负责人
代表性论文专著
[1] Liu Zhenhua, Li Yuanyang, Bao Ran. Application of Aqueous Nanofluids in a Horizontal Mesh Heat Pipe[J], Energy Conversion and Management, 2011, 52:292-300
[2] Lu Lin, Lv Lunchun, Liu Zhenhua. Application of Cu-Water and Cu-Ethanol Nanofluids in a Small Flat Capillary Pumped Loop[J], Thermochimica Acta, 2011, 512(1-2): 98-104
[3] Lu Lin, Liu Zhenhua, Xiao Hongsheng, Thermal Performance of an Open Thermosyphon Using Nanofluids for High-Temperature Evacuated Tubular Solar Collectors (Part1: Indoor Experiment) [J], Solar Energy, 2011, 85(1): 379-385
[4] Liu Zhenhua, Li Yuanyang. Compositive Effect Of Nanoparticle Parameter on Thermal Performance of Cylindrical Micro Grooved Heat Pipe Using Nanofluids[J],International Journal of Thermal Sciences, 2011, 50: 558-568
[5] Yang Xuefei, Liu Zhenhua. Application of Functionalized Nanofluid in Thermosyphon,Nanoscale Research Letters,2011, 5:1324-8
[6] Li Yuan-Yang, Liu Z hen-Hua, G Wang uo-Shan, Pang Le, Experimental study on critical heat flux of high-velocity circular jet impingement boiling on the nano-characteristic stagnation zone[J], International Journal of Heat and Mass Transfer, 2013, 67: 560-568.
[7] Li Yuan-Yang, Liu Z hen-Hua, A predictive model of nucleate pool boiling on heated hydrophilic surfaces[J], International Journal of Heat and Mass Transfer, 2013, 65: 789-797.
[8] Liu Zhen-Hua, Hu Ren-Lin, Lu Lin Lu, Zhao Feng, Xiao Hong-shen, Thermal performance of an open thermosyphon using nanofluid for evacuated tubular high temperature air solar collector[J], Energy conversion and management 2013, 73: 135-143
[9] Chen Yan-jun, P Wang ing-yang, Liu Zhen-hua, Application of water-based SiO2 functionalized nanofluid in a loop thermosyphon, International Journal of Heat and Mass Transfer[J], 2013, 56(1–2), 59-68
[10] Chen Yan-jun, Wang Ping-yang, Liu Zhen-hua, Heat transfer characteristics of a new type of copper wire-bonded flat heat pipe using nanofluids[J], International Journal of Heat and Mass Transfer,2013, 67: 548–559
[11] Shuang-Fei Li, Zhen-hua Liu, Xue-Jiao Wang. A comprehensive review on positive cold energy storage technologies and applications in air conditioning with phase change materials [J]. Applied Energy, 2019,255:113667
[12] Li-Chao Xu, Zhen-Hua Liu, Shuang-Fei Li, Zhi-Xiong Shao, Ning Xia. Performance of solar mid-temperature evacuated tube collector for steam generation [J], Solar Energy, 2019, 183:162-172.
[13] Jia-Hui Huang, Shuang-Fei Li, Zhen-Hua Liu. Experimental study on thermosyphon boiling in 3-D micro-channels[J]. International Journal of Heat and Mass Transfer, 2019, 131:1260-1269.
[14] Yi-Ying Bao, Jia-Hui Huang, Yan-Jun Chen, Zhen-Hua Liu. Natural convection heat transfer of nanofluid in a cavity under an inhomogeneous electric field [J]. International Journal of Heat and Mass Transfer, 2019, 131:341-345.
[15] Shuang-Fei Li, Zhen-hua Liu. Parametric study of rotating heat pipe performance: A review [J], Renewable and Sustainable Energy Reviews, 2020,117,109482.
软件版权登记及专利
2013年底为止授权发明专利
1 以钛酸四丁酯为前驱体的二氧化钛超亲水涂层的制备方法 200510024943.9
2 以三氯化钛为前驱体的二氧化钛超亲水涂层制备方法 200510024941.X
3 满液型滚压强化管束蒸发换热器 200510110202.2
4 降膜型滚压强化管束蒸发换热器 200510110201.8
5 蒸发换热器中亲水型管束的制备方法 200610027417.2
6 即热式板式电热水器 201110143714.4
7 氧化铜减阻纳米流体的制备方法 200810201632.9
8 碳纳米管减阻纳米流体的制备方法 200810201633.3
9 开放式热管真空管太阳能高温承压式热水器 200910051643.8
10 带有耐压内胆的全玻璃真空管式太阳能热水器 200910307864.7
11 双层玻璃真空集热管太阳能高温空气加热器 200910307866.6
12 便携式太阳能全玻璃真空集热管承压海水蒸馏淡化器 201010216323.6
13 具有柔性重力热管散热器的LED高杆灯 201010216371.5
14 具有联合散热型平板散热器的大功率LED隧道灯 201010230875.2
15 具有柔性平板重力散热器的LED墙角灯散热器 201010216572.5
16 用于冷却LED的组合式平板热管散热器 201010230852.1
17 用于冷却LED的重力型平板热管散热器 201010216542.4
18 套管式太阳能中高温空气加热装置 200910308792.8
19 真空管套管组合式两用型太阳能加热器 200910311344.3
20 用于小型逆变式直流电焊机的散热装置 201110094133.6
学术兼职
2013-至今, 学院研究生督导,
2016年-至今,学院教学督导,校研究生督导,教学督导
荣誉奖励
2013年, 上海市自然科学奖,3等奖,排名第1
2012年, 江苏省科技进步奖,3等奖,排名第4