陈振乾

制冷与建筑环境系教授、博导

通讯方式:zqchen@seu.edu.cn 办公电话:025-83790626

研究方向:

传热传质强化、微重力流体物理、建筑环境与节能、制冷与暖通空调系统优化、系统热控制、干燥技术以及化学热物理协同特性等研究

办公地点:动力楼424

 

 

个人简介

陈振乾,江苏兴化人。4008云顶集团教授、博导,江苏省太阳能技术重点实验室主任。1995年于4008云顶集团获热能工程专业博士学位并留校任教,先后在香港科技大学,美国伍斯特理工学院,华盛顿大学和加拿大多伦多大学从事博士后研究。任职期间发表高水平论文200余篇,其中SCI论文100余篇,授权发明专利25项;主持国际合作项目2项,“十三五”国家重点研发计划子课题1项,国家自然科学基金7项,国家科技支撑计划课题1项,教育部等省部级项目4项,其它项目30余项。相关成果获江苏省科学技术奖二等奖、华夏建设科学技术奖一等奖、江苏省建设科技创新成果一等奖、江苏省建设科学技术奖二等奖等。陈振乾教授担任多个暖通相关的学会及委员会重要职务,主要有住房和城乡建设部高等教育建筑环境与能源应用工程专业评估委员会委员,美国制冷空调工程师学会会员,美国机械工程师学会会员,中国建筑学会建筑热能动力分会第十届委员会常务委员,中促会绿色建筑节能产业促进中心专家委员,江苏省制冷学会第八届理事会团体标准工作委员会副主任委员。

更多介绍欢迎访问课题组网站:https:/zqchen/

教学课程

研究生课程: 《暖通空调模拟分析》、《暖通空调系统测控技术》
本科生课程: 《空气调节》、《建筑节能》、《建筑环境与能源工程概论》

科研 教改项目
  1. 大唐集团十大科技项目:地热+含水层储能技术研究与应用,主持,2021.11-2023.04

  2. 国家自然科学基金三维掺杂石墨烯有序梯级多孔电极内催化与传热耦合机理研究(52076040主持, 2021.12024.12.

  3.   国家自然科学基金:超声波对可变形多孔介质内热湿传递过程影响的研究(51676037主持, 2016.12019.12.

  4. “十三五”国家重点研发计划子课题南方地区高大空间公共建筑绿色设计新方法与技术协同优化(2016YFC0700203主持, 2016.72020.12.

  5. 国家自然科学基金—面上项目子课题基于多功能CPTU的能源桩热力响应机理分析与设计方法研究(51578146主持, 2016.12019.12.

  6. 国家自然科学基金电场作用下建筑材料中有机挥发物迁移过程的研究(51276041主持,      2013.12016.12.

  7. 科技部国际科技合作与交流专项课题新型潜热蓄热与调湿功能材料关键技术研发(2011DFA60290,主持, 2011.1-2013.12.

  8. 国家科技支撑计划课题子课题低品位余热回收关键技术与机理研究,(2012BAA07B00,主持,2011.1-2015.12.

  9. 国家科技支撑计划课题:建筑蓄能保温材料与系统的研究开发及示范(2008BAJ12B04,主持, 2008.12010.12.

  10. 国家自然科学基金泡沫金属内固液相变传热机理的研究(50776015,主持,2008.12010.12.

  11. 教育部重点基础项目开发声伏功能材料的实验与理论研究(109073,主持, 2009.12011.12.

  12. 教育部博士点基金:超声波场强化多孔介质热湿迁移过程机理的研究(20090092110005,主持,2009.12012.12.

  13. 国家自然科学基金介电泳细胞分离过程的微流动及热对细胞分离影响的研究(50476044,主持, 2005.12007.12

  14. 国家自然科学重点基金课题子课题临床肿瘤冷热疗过程中的热物理问题研究-生物传热传质的理论模型(50436030,主持, 2005.12008.12.

论文 专著

Selected papers

1.   Bo Xu, Dengyun Wang, Zhaohai Li, Zhenqian Chen. Drying and dynamic performance of well-adapted solar assisted heat pump drying system. Renewable Energy 2021, 164: 1290-1305.

2.   Bo Xu, Sophie Wang, Zhenqian Chen. Molecular dynamics study of self-propelled droplet on different surfaces. Chemical Physics Letters 2021, 782: 139029

3.   Bo Xu#, Cancan Zhang #, Zhenqian Chen, Yang Yang, Qian Cao. Investigation of nano-droplet wetting states on array micro-structured surfaces with different gravity. Computers and Fluids 2021, 222: 104936.

4.   Bo Xu, Chun Jiang, Zhenqian Chen. Numerical study on flow heat transfer characteristics of horizontal tube falling-film evaporator. Journal of Thermal Science 2021, 30(4): 1302-1317.

5.   Yuchuan Lei, Zhenqian Chen. Cooling heat transfer and pressure drop of supercritical CO2 in wavy microchannels with consistent and opposite crests and troughsI. International Journal of Refrigeration, 2020, 109: 64-81.

6.   Yuchuan Lei, Issam, Mudawar, Zhenqian Chen. Computational and Experimental Investigation of Condensation Flow Patterns and Heat Transfer in Parallel Rectangular Micro-channels. International Journal of Heat and Mass Transfer, 2020, 149: 119158.

7.   Han chaoling, Chen Zhenqian. The mechanism study of oxygen reduction reaction (ORR) on non-equivalent P, N co-doped graphene. Applied Surface Science. 2020 (511): 145382.

8.   Xinzhu Mou, Zhenqian Chen. Experimental study on the effect of sludge thickness on the characteristics of ultrasound-assisted hot air convective drying municipal sewage sludge. Drying Technology, 2020, online.

9.   Xinzhu Mou, Zhenqian Chen. Pore-scale simulation of heat and mass transfer in deformable porous media. International Journal of Heat and Mass Transfer, 2020, 158: 119878.

10.  Xinzhu Mou, Zhenqian Chen. Experimental and predictive study on the performance and energy consumption characteristics for the regeneration of activated alumina assisted by ultrasound. Ultrasonics Sonochemistry, 2020, 105314.

11.  Xin Wang, Bo Xu, Zhenqian Chen. Lattice Boltzmann Modeling of Condensation Heat Transfer on Downward-Facing Surfaces with Different Wettabilities. Langmuir, 2020, 36(31): 9204-9214.

12.  Xin Wang, Bo Xu, Zhenqian Chen. Directional migration of single droplet on multi-wetting gradient surface by 3D lattice Boltzmann method. Computers & Fluids, 2020, 198: 104392.

13.  Han Chaoling, Chen Zhenqian. Adsorption properties of O2 on the unequal amounts of binary co-doped graphene by B/N and P/N: A density functional theory study. Applied Surface Science. 471 (2019) 445-454. 

14.  Han Chaoling, Chen Zhenqian. Numerical simulations of two-phase flow in a proton-exchange membrane fuel cell based on the generalized design method. Energy Sources Part A-Recovery Utilization and Environmental Effects. 41 (2019): 1253-1271.  

15.  Xu Bo, Chen Zhenqian. Formaldehyde diffusion within crystalline and amorphous cellulose at different temperatures and electric fields: A molecular dynamics study. Indoor and Built Environment. 28 (2019): 175-185.

16.  Zhang Leigang, Shi Juan, Xu Bo, Chen Zhenqian. Experimental Study on Distribution Characteristics of Condensate Droplets Under Ultrasonic Vibration. Microgravity Science and Technology. 30 (2018): 737-746. 

17.  Zhang Leigang, Shi Juan, Xu Bo, Chen Zhenqian. Influences of Pin Geometry and Inclination Angle on Condensation Heat Transfer Performance of Elliptical Pin-Fin Surface. Microgravity Science and Technology. 30 (2018): 965-975.  

18.  Li Panpan, Chen Zhenqian, Sheng Lisha. Determination of optimum operation conditions in an ultrasound assisted fibrous porous media drying process. Applied Thermal Engineering. 138 (2018): 394-402.  

19.  Lei Yuchuan, Chen Zhenqian. Numerical study on cooling heat transfer and pressure drop of supercritical CO2 in wavy microchannels. International Journal of Refrigeration. 90 (2018): 46-57.  

20.  Han Chaoling, Chen Zhenqian. Study on electrochemical and mass transfer coupling characteristics of proton exchange membrane (PEM) fuel cell based on a fin-like electrode surface. International Journal of Hydrogen Energy. 43 (2018): 8026-8039.  

21.  Li Ppanpan, Chen Zhenqian, Shi Juan. Numerical Study on the Effects of Gravity and Surface Tension on Condensation Process in Square Minichannel. Microgravity Science and Technology. 30 (2018): 19-24.  

22.  Han Chaoling, Chen Zhenqian. Numerical simulation for the effect of vaporization intensity in membrane on the performance of PEM fuel cell. Numerical Heat Transfer Part A-Applications. 73 (2018):177-194.

23.  Shi Juan, Zheng Gonghang, Chen Zhenqian. Experimental investigation on flow condensation in horizontal tubes filled with annular metal foam. International Journal of Heat and Mass Transfer. 116 (2018): 920-930.  

24.  Xu Bo, Chen Zhenqian. Effect of electric field on adsorption of for maldehyde by beta-cellobiose in micro-scale. Physica E. 99 (2018): 112-117.

25.  Xu Bo, Chen Zhenqian. The combined effects of temperature and electric fields on formaldehyde emission from building materials: Experiment and molecular dynamics simulation. International Communications in Heat and Mass Transfer. 87 (2017): 105-111. 

26.  Ma Qiang, Chen Zhenqian. Numerical study on the effect of EHD flow on mass transfer of gas mixtures. International Journal of Heat and Fluid Flow. 27 (2017): 2268-2288.

27.  Xu Bo, Chen Zhenqian, Ma Qiang. Effect of high-voltage electric field on for maldehyde diffusion within building materials. Building and Environment. 95 (2016):372-380.

28.  Ma Qiang, Chen Zhenqian. Lattice Boltzmann simulation of multicomponent noncontinuum diffusion in fractal porous structures. Phys Review E. 92 (2015): 013025

29.  Ma Qiang, Chen Zhenqian. Numerical study on gas diffusion in isotropic and anisotropic fractal porous media. International Journal of Heat and Mass Transfer. 2014, 79: 925-929. 

30.  Ma Qiang, Chen Zhenqian, Shi Juan, Li Dong. Lattice Boltzmann modeling of VOC desorption and diffusion in porous materials: VOC desorption and diffusion. Building and Environment. 72 (2014):145-153.

31.  Wang Yan, Keblinski Pawel, Chen Zhenqian. Viscosity calculation of a nanoparticle suspension confined in nanochannels, Physical Review E  Statistical, Nonlinear, and soft Matter Physics, 2012, 86(3), 036313.

32.  Gao Dongyan, Chen Zhenqian. Lattice Boltzmann simulation of natural convection dominated melting in a rectangular cavity filled with porous media, International Journal of Thermal Sciences, 2011, 50: 493-501.

33.  Zhao Fang, Chen Zhenqian. Numerical Study on Moisture Transfer in Ultrasound-Assisted Convective Drying Process of Sludge, Drying Technology, 2011, 29(12): 1404-1415.

34.  Zhao Fang, Chen Zhenqian, Three-dimensional numerical study on freezing phase change heat transfer in biological tissue embedded with two cryoprobes, Journal of Thermal Science and Engineering Applications, 2011 3(3), 031007.

35.  Fang Zhao, Zhenqian Chen. Numerical Simulation on Freezing Phase Change Heat Transfer in Cryosurgery with Two Cryoprobes, Heat Transfer - Asian Research, 2011,40(2)

36.  Chen Zhenqian, Gu Mingwei, Peng. Donghua Heat transfer performance analysis of a solar flat-plate collector with an integrated metal foam porous structure filled with paraffin, Applied Thermal Engeering, 2010, 30: 1967-1973

37.  Chen Zhenqian, Gu Mingwei, Peng Donghua. A numerical study on heat transfer of high efficient solar flat-plate collectors with energy storage, International Journal of Green Energy, 2010, 7: 326-336

38.  Chen Zhenqian, Shen Xiaozhong. Study on dielectrophoretic deposition of airborne particles in a vertical micro channel, Building and Environment, 2010, 45(4): 968-975.

39.  Shen Xiaozhong, Chen Zhenqian, Coupled heat and formaldehyde migration in dry porous building materials, Building and Environment, 2010, 45(6): 1470-1476.

40.  Gao Dongyan, Chen Zhenqian, Shi Minghen. Study on the melting process of phase change materials in metal foams using lattice Boltzmann method, Sci China Tech Sci, 2010, 53: 3079-3087.

41.  Li Dong, Chen Zhenqian, Shi Mingheng. Effect of ultrasound on frost formation on a cold flat surface in atmospheric air flow, Experimental Thermal and Fluid Science, 2010, 34(8): 1247-1252.

42.  Shi Juan, Chen Zhenqian, Shi Mingheng. Simulation of heat transfer of biological tissue during cryosurgery based on vascular trees, Applied Thermal Engineering, 2009, 29 (8-9): 1792-1798.)

43.  Shen Xiaozhong, Chen Zhenqian. Fractal diffusion of VOCs in dry porous building materials, Building Simulation, 3(3), 2010: 225-231.

44.  Liu Zhengxian, Chen Zhenqian, Shi Mingheng, Thermophoresis of particles in aqueous solution in micro-channel, Applied Thermal Engineering, 2009, 29(5-6): 1020-1025.

45.  Yang Weibo, Shi Mingheng, Liu Guangyuan, Chen Zhenqian. A two-region simulation model of vertical U-tube ground heat exchanger and its experimental verification, Applied Energy, 2009, 86(10): 2005-2012.

46.  Peng Donghua, Chen Zhenqian. Numerical simulation of phase change heat transfer of a solar flat-plate collector with energy storage, Building Simulation, 2009, 2(4): 273-280.  

47.  Shi MH, Shuai MQ, Z.Q. Chen, etc., Study on pool boiling heat transfer of nano-particle suspensions on plate surface. Journal of Enhanced Heat Transfer, 2008.

48.  张雷刚,施娟,陈振乾.椭圆形针肋表面冷凝液滴分布特征的实验研究.4008云顶集团学报.2019141-147.

49.  生丽莎,陈振乾.静电辅助多孔液体的制备及特性研究.化工学报.20188.

50.  蒋淳,陈振乾.水平管外降膜蒸发流动和传热特性数值模拟.化工学报.20184224-4230.

51.  许波,陈振乾.建材内甲醛散发参数处理方法及实验研究.化工学报.201743-47.

52.  李盼盼,陈振乾超声波强化多孔纤维干燥过程试验研究工程热物理学报. 4 (2017): 876-880. 

53.  黄欣鹏,唐超权,施娟,陈振乾泡沫铝和石蜡复合相变材料的传热特性分析4008云顶集团学报(自然科学版). 1 (2017): 73-78. 

54.  马强,陈振乾分形多孔材料双尺度孔隙内气体脱附扩散过程数值模拟4008云顶集团学报(自然科学版), 2015, 45: 728-733. 

55.  马强,陈俊,陈振乾分形多孔介质传热传质过程的格子 Boltzmann 模拟.化工学报,2014,65(SI):180-187. 

56.  李栋,陈振乾超声波影响初始霜晶生长的微观可视化研究应用基础与工程科学学报, 2012,20(1):28-35.

57.  杲东彦,陈振乾,施明恒格子Boltzmann方法模拟高Darcy数多孔介质内融化传热过程化工学报, 2011, 62(2): 321-327.

58.  赵芳,陈振乾,施明恒超声波作用下污泥水分扩散过程的数值模拟工程热物理学报, 2011,32(4):659-662.

59.  杲东彦,陈振乾,施明恒格子Boltzmann方法模拟融化相变过程工程热物理学报, 2011, 32(1): 85-88.

60.  张素芬,唐超权,陈振乾自然分层型水蓄冷槽布水器速度场的模拟重庆大学学报,20113413-16.

61.  顾明伟,陈振乾,施明恒泡沫金属内石蜡相变凝固传热的数值模拟工程热物理学报, 2010, 31: 1329-1332.

62.  施娟,陈振乾,施明恒蓄冰球内多孔泡沫金属对冰球内流体相变传热过程影响的试验研究工程热物理学报, 2010, 31: 1395-1397.

63.  彭冬华,陈振乾,施明恒泡沫金属内相变材料融化传热过程的数值模拟工程热物理学报, 2009, 30: 1025-1028.

64.  彭冬华,陈振乾,施明恒太阳平板集热/储能相变传热的数值模拟太阳能学报, 2009, 30: 911-915.

65.  杨秀,陈振乾蓄冰球中填充泡沫铝的融化相变传热过程的数值模拟化工学报, 2008, 59: 139-142.

66.  赵芳陈振乾施明恒双冷针冷冻手术中冻结相变传热的数值模拟工程热物理学报, 2009307):1181-1184.

67.  施娟,陈振乾,施明恒生物组织的当量导热系数分析工程热物理学报, 20093010):1755-1758.

68.  申小中,陈振乾,施明恒微通道介电泳颗粒流动中的焦耳热分析工程热物理学报, 2008293):476-478.

69.  施娟陈振乾施明恒肿瘤冻融相变传热过程的数值模拟工程热物理学报, 2008296):1017-1020.

70.  王婧施明恒陈振乾房间空调系统动态特性的分析工程热物理学报, 2008299):1463-1466. 


专利申请
  1. 陈振乾,程思远一种地板供冷复合置换通风系统的空间湿度控制方法[P]. 发明专利:ZL201810326400.X.授权,2020-07-14.

  2. 陈振乾,林凯威,许波一种基于负荷动态变化的冷库温度前馈-模糊控制系统及控制方法[P]. 发明专利:ZL201810133435.1授权,2020-09-11.

  3. 陈振乾,卢雅林,施娟一种仿生微孔表面泡沫金属填充太阳能真空集热管[P]. 发明专利:ZL201810004226.7.授权,2019-07-12.

  4. 陈振乾,张婉婧利用超声波对弯曲表面除霜的实验装置[P]. 发明专利:ZL201610851538.2.授权,2019-07-26.

  5. 陈振乾,生丽莎一种超声波辅助干燥系统国家发明专利,ZL201710351437.3

  6. 陈振乾,徐笑强基于室外温湿度的空调调整冷冻水温度运行的方法国家发明专利,ZL201710242803.1

  7. 陈振乾,张婉婧利用超声波对弯曲表面除霜的实验装置国家发明专利,ZL201610851538.2

  8. 陈振乾,史浩,张鹏防冻太阳能供水装置国家发明专利,ZL201510203414.9

  9. 陈振乾,马强一种空气净化设备内活性炭过滤层的脱附再生装置及脱附再生方法国家发明专利,ZL201410650023.7

  10. 陈振乾,周波一种微波辅助氯化铵提高沸石调湿性的方法国家发明专利,ZL201310260438.9

  11. 陈振乾,李栋飞机翼型超声波辅助热气联合防除冰装置国家发明专利,ZL201110443826.1

  12. 陈振乾方向可控的微流体介电泳颗粒分离装置国家发明专利,ZL200710135119.X.

  13. 陈振乾,申小中一种声波辅助复合袋式除尘器国家发明专利,ZL200810025479.9.

  14. 陈振乾,赵芳一种超声波热风联合干燥装置及其干燥方法.      国家发明专利,ZL200910031735.X.

  15. 陈振乾,赵芳一种LED汽车灯国家发明专利,ZL201010180499.0.

  16. 陈振乾,赵芳一种污泥超声波滚筒干燥器国家发明专利,ZL201010172460.4.

  17. 陈振乾,陈胜朋,李栋地源热泵低品位热源热响应远程测试装置国家发明专利,ZL201010532215.X.

 

 


荣誉 奖励
  1. 江苏省科学技术奖二等奖(1/5),2022年

  2. 华夏建设科学技术奖一等奖,2020年

  3. 2019年度江苏省建设科技创新成果一等奖,2020

  4. IJHMT(国际传热传质期刊)第一届Minkowycz Award最佳论文第二名,2020

  5. 绿地广场,江苏省绿色建筑创新奖三等奖,2016

  6. 基于低碳生态理念的建筑节能和绿色建筑示范区规划建设指标体系研究,江苏省建设科学技术奖二等奖,2013

  7. 常州市人民政府奖教金,4008云顶集团,2010

  8. 江苏省“333高层次人才培养工程” 中青年科学技术带头人,2007

  9. 空调用换热器综合性能试验研究装置,江苏省科技进步三等奖,1998

  10. 制冷压缩机性能试验台,江苏省科技进步三等奖,1999

 


指导员工
  1. 申小中,《多孔建材内甲醛扩散过程的研究》,博士研究生,2007.3—2011.3

  2. 赵芳,《超声波辅助污泥热风干燥热湿耦合迁移过程的研究》,博士研究生,2007.9—2012.5

  3. 王燕,《潜热型功能流体在微纳尺度下的固液相变及其流动特性研究》,博士研究生,2008.1—2012.6

  4. 杲东彦,《基于格子Boltzmann方法的泡沫金属内固液相变传热过程的研究》,博士研究生,2008.9—2012.1

  5. 施娟,《多孔泡沫金属表面池沸腾相变传热过程研究》,博士研究生,2008.9—2015.6

  6. 李栋,《超声波对冷表面霜层生长过程影响的研究》,博士研究生,2009.2—2014.6

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  13. 张雷刚,不同重力条件下蒸气冷凝过程及强化传热研究》,博士研究生,2013.092019.09

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