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唐大伟
2023-05-09 16:47
  • 唐大伟
  • 唐大伟 - 博士 教授 硕导-大连理工大学-能源与动力学院-个人资料

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资料介绍

个人简历


个人简介
Personal Profile
主要从事极端条件热物理、高强度传热、聚光太阳能利用等方面的研究工作。
曾作为首席教授主讲中国科学院大学研究生“高等传热学”,获得中国科学院“朱李月华优秀教师奖”;现主讲本校能源与环境工程专业本科生“材料热物性”。指导研究生60余人,已有35人获得博士学位,其中多名同学分别获得中国工程热物理学会传热传质年会优秀论文一等奖、优秀奖、中科院院长奖、吴仲华奖、ATPC优秀论文奖等。
2004年入选中国科学院“百人计划”回国以来,任中科院工程热物理所研究员、博士生导师、传热传质研究中心主任。
2016年入职本校能源与动力学院。现任能源与动力学院院长,海洋能源利用与节能教育部重点实验室副主任,能源研究院院长。
主持了国家自然科学基金重点项目、重点国际合作项目、NSFC-JST重大国际合作项目、面上项目;科技部国家重大科学仪器设备开发专项项目、国家重大科学研究计划项目课题、973项目课题、863项目、国家重点研发计划子课题;XX探索重大项目、A计划项目、XX-809项目、XX-802项目、XX重大专项课题等。
出版专著1部,著作章节4部。发表学术论文 370 余篇,其中学术期刊论文250余篇,SCI收录145篇,SCI他引2000次。获得授权国家专利80余项。
欢迎参观RG主页 https://www.researchgate.net/profile/D_Tang

教育经历
1993.10 1999.9 静冈大学 热科学 博士
1985.9 1988.7 中科院金属研究所 材料物理 硕士
1981.9 1985.7 吉林大学 物理 学士
1979.9 1981.7 辽宁省锦州市锦州中学
工作经历
1981.9 1985.7 吉林大学物理系 学生
1979.9 1981.7 辽宁省锦州市锦州中学 学生
2017.3 至今 大连理工大学能动学院 教授
2004.3 2017.3 中科院工程热物理所 研究员
1993.10 2004.2 日本静冈大学工学部 助理教授
1993.10 1999.9 日本静冈大学工学部 博士生
1988.8 1993.9 中科院金属研究所 助研
1985.9 1988.7 中科院金属研究所 研究生
专利
一种基于圆筒形高温热管的聚光太阳能分布式热重整制氢系统
节能隔热材料热导率现场精确测试的装置及方法
科研项目
超高压力条件热输运机理研究, 国家自然科学基金项目, 2017/08/17, 进行
飞秒、纳米时/空尺度热输运机理研究, 国家自然科学基金项目, 2014/01/01, 完成
数据中心新型冷却技术研发与示范, 国家科技部 , 2016/07/07, 进行
新型中温储热系统的数值计算, 企事业单位委托科技项目, 2018/11/10-2020/11/10, 进行
陶瓷纤维的介尺度热传输性能表征与高精度测量, 企事业单位委托科技项目, 2017/05/12-2018/05/31, 进行

研究领域


聚光太阳能热利用,包括CHP、制氢等
高热流密度传热及热管理技术
极端条件热物理,包括超细空间、超快时间、极高压力、极高热流等""

近期论文


[1]Yi Changli,Hu Chengzhi,Bai Minli,Lv Jizu,Tang Dawei.Molecular dynamics study on the mechanical properties of multilayer MoS2 under different potentials[J],Nanotechnology,2020,31(21):215703
[2]Sun, Zhehao,Yuan, Kunpeng,Chang, Zheng,Zhang, Xiaoliang,Qin, Guangzhao,Tang, Dawei.Efficient thermal conductivity modulation by manipulating interlayer interactions: A comparative study of bilayer graphene and graphite[J],JOURNAL OF APPLIED PHYSICS,2019,126(12)
[3]Hu, Chengzhi,Tang, Dawei,Lv, Jizu,Bai, Minli,Zhang, Xiaoliang.Molecular dynamics simulation of frictional properties of Couette flow with striped superhydrophobic surfaces under different loads[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2019,21(32):17786-17791
[4]Ma, Shihui,Zheng, Jia-nan,Tian, Mengru,Tang, Dawei,Yang, Mingjun.NMR quantitative investigation on methane hydrate formation characteristics under different driving forces[J],FUEL,2020,261
[5]Sun, Zhehao,Yuan, Kunpeng,Zhang, Xiaoliang,Tang, Dawei.First-principles calculations of interfacial thermal transport properties between SiC/Si substrates and compounds of boron with selected group V elements[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2019,21(11):6011-6020
[6]Zhao, Jie,Yuan, Da-Zhong,Tang, Da-Wei,Jiang, Yu-Yan.Heat transfer characteristics of a concentric annular high temperature heat pipe under anti-gravity conditions[J],APPLIED THERMAL ENGINEERING,2019,148:817-824
[7]Xiong, Xue,Yang, Ming,Liu, Changlin,Li, Xiaobo,Tang, Dawei.Thermal conductivity of cross-linked polyethylene from molecular dynamics simulation[J],JOURNAL OF APPLIED PHYSICS,2017,122(3)
[8]Wang, Zhaoliang,Xu, Zhe,Du, Xiaoli,Tang, Dawei.Multiharmonics Method Characterizing In-Plane Thermal Conductivity and TBR of Semiconductor Nanofilm on Substrate: Theoretical Analysis[J],INTERNATIONAL JOURNAL OF THERMOPHYSICS,2017,38(2)
[9]Zhao, Jie,Yuan, Da-Zhong,Tang, Da-Wei.径向高温热管中段加热传热特性实验研究[J],工程热物理学报,2019,40(03):672-677
[10]Yuan, Kunpeng,Zhang, Xiaoliang,Li, Lin,Tang, Dawei.Effects of tensile strain and finite size on thermal conductivity in monolayer WSe2[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2019,21(1):468-477
[11]Gao, Yufei,Zhang, Xiaoliang,Tang, Dawei,Hu, Ming.Unexpected anisotropy of (14,14,14)-Graphyne: A comprehensive study on the thermal transport properties of graphyne based nanomaterials[J],CARBON,2019,143:189-199
[12]Sun, Zhehao,Yuan, Kunpeng,Zhang, Xiaoliang,Tang, Dawei.Pressure tuning of the thermal conductivity of gallium arsenide from first-principles calculations[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018,20(48):30331-30339
[13]Li, Lin,Jiang, Bo,Tang, Dawei,Zhang, Xiaoliang,Yuan, Kunpeng,Zhang, Qian.Alkaline treatment of used carbon-brush anodes for restoring power generation of microbial fuel cells[J],RSC ADVANCES,2018,8(64):36754-36760
[14]Li, Lin,Jiang, Bo,Sun, Zhehao,Zhang, Qian,Li, Duyu,Tang, Dawei.Hydrogen Production from Chemical Looping Steam Reforming of Ethanol over Perovskite-Type Oxygen Carriers with Bimetallic Co and Ni B-Site Substitution[J],CATALYSTS,2018,8(9)
[15]Feng, Ya,Zhu, Jie,Tang, Dawei.Dependence of carbon nanotube array-silicon interface thermal conductance on array arrangement and filling fraction[J],APPLIED THERMAL ENGINEERING,2018,145:667-673
[16]杨浩,袁达忠,胡和敏,姜玉雁,唐大伟.太阳能集管系统流量分配的理论和实验研究[J],工程热物理学报,2018,07:1505-1511
[17]陈哲,孙方远,唐大伟.铝传感层蒸镀速率对飞秒激光抽运探测 热反射方法测量热导率影响的研究[J],热科学与技术,2018,17(4):290-295
[18]Jiang, Bo,Goula, Maria A.,Li, Lin,Bian, Zhoufeng,Li, Ziwei,Sun, Yang,Sun, Zhehao,Tang, Dawei,Kawi, Sibudjing,Dou, Binlin.Chemical looping glycerol reforming for hydrogen production by Ni@ZrO2 nanocomposite oxygen carriers[J],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2018,43(29):13200-13211
[19]Yuan, Kunpeng,Zhang, Xiaoliang,Tang, Dawei,Hu, Ming.Anomalous pressure effect on the thermal conductivity of ZnO, GaN, and AlN from first-principles calculations[J],PHYSICAL REVIEW B,2018,98(14)
[20]Qiu, Lin,Zhu, Ning,Zou, Hanying,Feng, Yanhui,Zhang, Xinxin,Tang, Dawei.Advances in thermal transport properties at nanoscale in China[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2018,125:413-433
[21]Li, Lin,Jiang, Bo,Tang, Dawei,Zhang, Qian,Zheng, Zhouwei.Hydrogen generation by acetic acid steam reforming over Ni-based catalysts derived from La1-xCexNiO3 perovskite[J],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2018,43(14):6795-6803
[22]Jiang, Bo,Li, Lin,Bian, Zhoufeng,Li, Ziwei,Othman, Mazen,Sun, Zhehao,Tang, Dawei,Kawi, Sibudjing,Dou, Binlin.Hydrogen generation from chemical looping reforming of glycerol by Ce-doped nickel phyllosilicate nanotube oxygen carriers[J],FUEL,2018,222:185-192
[23]Wang, Xinwei,Chen, Zhe,Sun, Fangyuan,Zhang, Hang,Jiang, Yuyan,Tang, Dawei.Analysis of simplified heat transfer models for thermal property determination of nano-film by TDTR method[J],MEASUREMENT SCIENCE AND TECHNOLOGY,2018,29(3)
[24]刘欢,李玉华,王涛,姜玉雁,唐大伟.数据机房用分离式热管散热器运行特性分析[J],建筑节能,2017,45(10):6-11
[25]Sun, Fangyuan,Wang, Xinwei,Yang, Ming,Chen, Zhe,Zhang, Hang,Tang, Dawei.Simultaneous Measurement of Thermal Conductivity and Specific Heat in a Single TDTR Experiment[J],INTERNATIONAL JOURNAL OF THERMOPHYSICS,2018,39(1)
[26]Qiu, Lin,Zou, Hanying,Tang, Dawei,Wen, Dongsheng,Feng, Yanhui,Zhang, Xinxin.Inhomogeneity in pore size appreciably lowering thermal conductivity for porous thermal insulators[J],APPLIED THERMAL ENGINEERING,2018,130:1004-1011
[27]Yang, Ming,Sun, Fang-Yuan,Wang, Rui-Ning,Zhang, Hang,Tang, Da-Wei.Strain Modulation of Electronic and Heat Transport Properties of Bilayer Boronitrene[J],INTERNATIONAL JOURNAL OF THERMOPHYSICS,2017,38(10)
[28]张航,王新伟,张中印,陈哲,孙方远,唐大伟.基于TDTR方法的碳化硅低温导热性能实验研究[J],工程热物理学报,2017,38(7):1415-1421
[29]赵洁,袁达忠,唐大伟.径向高温热管中段加热传热特性实验研究[J],工程热物理学报,2019,03:672-677
[30]Zhehao Sun,Kunpeng Yuan,张晓亮,唐大伟.First-principles Calculations of Interfacial Thermal Transport Properties between SiC_Si Substrates and Compounds of Boron with Selected Group V Elements[J],Physical Chemistry Chemical Physics,2019,21(11):6011-6020
[31]Li, Lin,Jiang, Bo,Tang, Dawei,Zheng, Zhouwei,Zhao, Cong.Hydrogen Production from Chemical Looping Reforming of Ethanol Using Ni/CeO2 Nanorod Oxygen Carrier[J],CATALYSTS,2018,8(7)
[32]Li, Lin,Tang, Dawei,Song, Yongchen,Jiang, Bo.Dual-film optofluidic microreactor with enhanced light-harvesting for photocatalytic applications[J],CHEMICAL ENGINEERING JOURNAL,2018,339:71-77
[33]Li, Lin,Tang, Dawei,Song, Yongchen,Jiang, Bo,Zhang, Qian.Hydrogen production from ethanol steam reforming on Ni-Ce/MMT catalysts[J],ENERGY,2018,149:937-943
[34]高宇飞,张晓亮,唐大伟,Ming Hu.Unexpected Anisotropy of (14,14,14)-Graphyne_A Comprehensive Study on the Thermal Transport Properties of Graphyne Based Nanomaterials[J],Carbon,2018,143:189-199
[35]胡成志,唐大伟,白敏丽,张晓亮,吕继组.高热流密度条件下热能-压力波转换特性及其影响能量传递过程研究[A],2018年工程热物理传热传质分会,2018
[36]Zhang, Qian,Li, Lin,Jiang, Bo,Tang, Dawei,Dou, Binlin.Hydrogen by chemical looping reforming of ethanol: The effect of promoters on La2-xMxNiO(4-lambda) (M = Ca, Sr and Ce) oxygen carriers[J],CHEMICAL ENGINEERING SCIENCE,2017,174:259-267
[37]Zhang, Qian,Li, Lin,Jiang, Bo,Wang, Kaiqiang,Tang, Dawei,Dou, Binlin.An intelligent oxygen carrier of La2-xSrxNiO4-lambda for hydrogen production by chemical looping reforming of ethanol[J],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2017,42(27):17102-17111
学术兼职包括中国工程热物理学会理事、传热传质委员会委员;中国计量测试学会热物性专业委员会副主任;中国内燃机学会特种发动机分会委员;国家自然科学基金会评专家;科技部重大科学研究计划《高效节能微纳结构材料体系研究》项目专家组成员;电站设备状态监测与控制教育部重点实验室学术委员会委员;亚洲热物性会(ATPC)国际委员会常务理事;第16届国际传热大会秘书长;《工程热物理学报》编委。

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