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谭建宇
2023-05-10 20:18
  • 谭建宇
  • 谭建宇 - 教授 博导 硕导-哈尔滨工业大学(威海)-新能源学院-个人资料

近期热点

资料介绍

个人简历


学习简历
1994年09月—1998年07月 东北电力大学 动力工程专业 本科
2000年09月—2002年07月 哈尔滨工业大学 工程热物理 硕士
2002年09月—2006年07月 哈尔滨工业大学 工程热物理 博士
工作简历
1998年07月—2000年09月 吉林省火电一公司 技术员
2006年07月—2007年09月 哈尔滨工业大学(威海)热能工程系 讲师
2007年09月—2012年09月 哈尔滨工业大学(威海)热能工程系 副教授
2008年05月—2010年05月 哈尔滨工业大学(威海)热能工程系 硕导
2010年05月—至今 哈尔滨工业大学(威海)热能工程系 博导
2011年12月—2014年12月 哈尔滨锅炉厂有限责任公司博士后工作站 博士后
2012年11月—至今 哈尔滨工业大学(威海)热能工程系 教授
2018年01月—至今 山东省政协委员
2018年05月—至今 哈尔滨工业大学(威海)新能源学院 院长
科研项目
发表科技论文80余篇,其中SCI检索60余篇,SCI他引300余次,ESI高被引论文5篇,专利十余项,主持国家自然科学基金重点项目、面上项目、青年基金共4项,主持中央军委装备部预研项目1项,国家“863计划”一级子课题1项,军民品横向协作项目30余项。
1、热辐射传输几何反演的无网格法研究(国家自然科学基金青年基金,No. 50706010)
2、梯度折射率介质内瞬态矢量辐射传输机理及其数值模拟(国家自然科学基金面上项目,No. 51076038)
3、整体煤气化联合循环显热回收设备的研究(国家“863计划”项目子课题,No. 2007AA05Z2461)
4、微尺度辐射特性及其调控机理(国家自然科学基金重点项目,No. 50836002)
5、辐射传输与流动控制(国家自然科学基金委创新研究群体科学基金,No. 51121004)
6、基于k分布的高温气体辐射温度场及浓度场联合反演研究(山东省中青年科学家奖励基金,No. 2009BSA10007)
7、红外及可见光波段内人工微粗糙表面辐射特性研究(教育部新世纪人才基金,No. NCET-12-0152)
8、固体材料高温基础辐射物性的实验测量与理论建模(国家自然科学基金重点项目,No. 51336002 )
9、高温高压液体燃料辐射热物性实验测量与第一性原理模拟(国家自然科学基金面上项目,No. 51576052)

研究领域


"1. 强化传热技术、新型热控技术开发(航天器热控制、动力电池热管理)
2. 清洁能源利用技术(太阳能热利用、煤气化)
3. 储能及节能技术开发"

近期论文


1)Temperature-dependent optical constants of liquid isopropanol, n-butanol and n-decane[J]. Applied Optics, 2018, 57(12): 3303-3311. (SCI、EI检索,IF=1.791)
2) Wavelength and concentration-dependent optical constants of NaCl, KCl, MgCl2, CaCl2, and Na2SO4 multi-component mixed-salt solutions[J]. Applied Optics, 2017, 56(27): 7662-7671. (SCI、EI检索,IF=1.791)
3)Infrared optical constants of liquid palm oil and palm oil biodiesel determined by the combined ellipsometry-transmission method[J]. Applied Optics, 2017, 56(18): 5156-5163. (SCI、EI检索,IF=1.791)
4)Ab Initio Molecular Dynamics Study of Temperature and Pressure-Dependent Infrared Dielectric Functions of Liquid Methanol[J]. AIP Advances, 2017, 7(3): 035115. (SCI检索,IF=1.653)
5)Hamiltonian adaptive resolution molecular dynamics simulation of infrared dielectric functions of liquids[J]. Journal of Applied Physics, 2018, 123(20): 205103. (SCI、EI检索,IF=2.176)
6)Progress in concentrated solar power technology with parabolic trough collector system: a comprehensive review.Renewable and Sustainable Energy Reviews,2017,79:1314–1328(SCI、EI,IF=8.050,Top期刊)
7)Multiple and dependent scattering by densely packed discrete spheres: Comparison of radiative transfer and Maxwell theory [J]. Journal of Quantitative Spectroscopy and Radiative Transfer, 2017, 187: 255-266. (SCI、EI检索,IF=2.419)
8)Dependent scattering and absorption by densely packed discrete spherical particles: Effects of complex refractive index [J]. Journal of Quantitative Spectroscopy and Radiative Transfer, 2017, 196: 94-102. (SCI、EI检索,IF=2.419)
9)Radiative heat transfer in solar thermochemical particle reactor: A comprehensive review.Renewable and Sustainable Energy Reviews,2017,73:935–949(SCI、EI,IF=8.050,Top期刊)
10)Heat transfer enhancement analysis of tube receiver for parabolic trough solar collector with pin fin arrays inserting.Solar Energy,2017,144:185–202(SCI、EI,IF=4.018)
11)Energy storage efficiency analyses of CO2reforming of methane in metal foam solar thermochemical reactor.Applied Thermal Engineering,2017,111:1091–1100(SCI、EI,IF=3.356)
12)Investigation of optical properties and radiative transfer of TiO2nanofluids with the consideration of scattering effects.International Journal of Heat and Mass Transfer,2017,115:1103–1112.(SCI、EI,IF=3.458,Top期刊)
13)Optical constant measurements of solar thermochemical reaction catalysts and optical window.Optik,2017,131:323–334(SCI、EI,IF=0.835)
14)Parabolic trough receiver with corrugated tube for improving heat transfer and thermal deformation characteristics.Applied Energy,2016,164:411–424(SCI、EI,IF=7.182,SCI他引18次,入选ESI高引,Top期刊)
15)Heat transfer performance enhancement and thermal strain restrain of tube receiver for parabolic trough solar collector by using asymmetric outward convex corrugated tube.Energy,2016,114:275–292(SCI、EI,IF=4.520,SCI他引1次,Top期刊)
16)Transient thermal performance response characteristics of porous-medium receiver heated by multi-dish concentrator.International Communications in Heat and Mass Transfer,2016,75:36-41(SCI、EI,IF=3.718)
17)Thermochemical performance analysis of solar driven CO2methane reforming.Energy,2015,91:645–654(SCI、EI,IF=4.520Top期刊)
18)Effects of glass cover on heat flux distribution for tube receiver with parabolic trough collector system.Energy Conversion and Management,2015,90:47–52(SCI、EI,IF=5.589入选ESI高引论文,Top期刊)
19)Effects of key factors on solar aided methane steam reforming in porous medium thermochemical reactor.Energy Conversion and Management,2015,103:419–430(SCI、EI,IF=5.589Top期刊)
20)Proposal of a shape layout of trapezoid cavity receiver to improve optical efficiency.Heat Transfer Research,2015,46(5),429–446(SCI、EI,IF=0.477)
21)Unsteady state thermochemical performance analyses of solar driven steam methane reforming in porous medium reactor.Solar Energy,2015,122:1180–1192(SCI、EI,IF=4.018)
22)水和重水红外吸收光谱的Car-Parrinello分子动力学模拟[J]. 科学通报, 2015, 60(31):3014-3020.
23)生物柴油光学常数的双光程法实验测量[J]. 激光与光电子学进展, 2015, 52(5):122-128.
24) Monte Carlo simulation of spectral reflectance and BRDF of the bubble layer in the upper ocean. Optics Express, 2015, 23(19): 24274-24289. (SCI、EI检索,IF=3.356)
25) Investigation of the spectral reflectance and bidirectional reflectance distribution function of sea foam layer by the Monte Carlo method. Applied optics, 2015, 54(33): 9863-9874. (SCI、EI检索,IF=1.791)
26) Monte Carlo method for polarized radiative transfer in gradient-index media. Journal of Quantitative Spectroscopy and Radiative Transfer, 2015, 152: 114–126(SCI、EI检索,IF=2.645)
27) Heat transfer analysis of porous media receiver with different transport and thermophysical models using mixture as feeding gas. Energy Conversion and Management, 83: 159-166, 2014(SCI、EI收录)
28) Numerical analysis of hydrogen production via methane steam reforming in porous media solar thermochemical reactor using concentrated solar irradiation as heat source. Energy Conversion and Management,87:956-964,2014(SCI、EI, IF=4.380)
29) Heat transfer analysis of porous media receiver with different transport and thermophysical models using mixture as feeding gas,Energy Conversion and Management,83:159-166,2014(SCI、EI, IF=4.380)
30) Thermal performance analyses of porous media solar receiver with different irradiative transfer models,International Journal of Heat and Mass Transfer,78:7-16,2014(SCI、EI, IF=2.383)
31) On the derivation of vector radiative transfer equation for polarized radiative transport in graded index media. Journal of Quantitative Spectroscopy & Radiative Transfer. 2012, 113(3):239-250. (SCI、EI收录, IF-3.193)
32) A deficiency problem of the least squares finite element method for solving radiative transfer in strongly inhomogeneous media. Journal of Quantitative Spectroscopy & Radiative Transfer. 2012, 113(12):1488-1502. (SCI、EI收录, IF-3.193)
33) 考虑热辐射效应的泡沫金属有效导热系数数值分析. 中国电机工程学报,2012.1: 104-109.
34) Least-squares radial point interpolation collocation meshless method for radiative heat transfer. Journal of Heat Transfer –Transactions of the ASME.2007, 129(5): 669-673.(SCI、EI收录,IF-1.202)
35) Meshless local Petrov-Galerkin approach for coupled radiative and conductive heat transfer. International Journal of Thermal Sciences. 2007, 46(7): 672-681.(SCI、EI收录,IF-1.048)
36) Least-squares collocation meshless approach for radiative heat transfer in absorbing and scattering media. Journal of Quantitative Spectroscopy & Radiative Transfer. 2007, 103(3):545-557. (SCI、EI收录,IF-1.972)
37) Meshless method for geometry boundary identification problem of heat conduction. Numerical Heat Transfer PART B. 2009, 55(2): 135-154.(SCI、EI收录, IF-1.282)
38) Comparative study on accuracy and solution cost of the first/second-order radiative transfer equations using the meshless method. Numerical Heat Transfer PART B. 2009, 55(4):324-337.(SCI收录,IF-1.282)
39) Inverse geometry design of radiating enclosure filled with participating media using meshless method. Numerical Heat Transfer PART A. 2009, 56(2): 132-152.(SCI、EI收录,IF-1.119)
40) 管道内壁侵蚀形状识别的无网格法研究. 工程热物理学报, 2010,31: 124-126.
41) Geometric optimization of a radiation-conduction heating device using meshless method. International Journal of Thermal Sciences. 2011, 50(10): 1820-1831.(SCI、EI收录,IF-2.142)
42) Infrared radiative properties of two-dimensional square optical black holes. J. Quantitative Spectroscopy & Radiative Transfer,2011,112 (16): 2584-2591.
43) Infrared radiative properties of two-Least-squares collocation meshless approach for radiative heat transfer in absorbing and scattering media. Journal of Quantitative Spectroscopy & Radiative Transfer. 2011, 112(16):2584-2591. (SCI、EI收录, IF-3.193)
山东省政协委员
哈尔滨工业大学(威海) 新能源学院院长
哈尔滨工业大学(威海) 学术委员会 常委
教育部新世纪优秀人才
山东省中青年科学家
威海市有突出贡献的中青年专家
中国宇航协会会员
教育部创新团队、国家自然科学基金委创新研究群体科研骨干
国家科技奖励评审专家、国家自然科学基金通讯评审专家、教育部优秀论文评审专家、工信部专项评审专家、北京市自然科学基金评审专家、山东省高层次人才库人员、山东省科技成果评审专家、山东省科技攻关项目评审专家、山东省自然科学基金结题评审专家、河北省科技奖励评审专家、浙江省自然科学基金评审专家、重庆市科委专家
国际核心期刊《Numerical Heat Transfer》、《Journal of Heat and Mass Transfer》、《Energy Conversion and Management》、《Applied Energy》、《Heat Transfer Research》等国际期刊审稿人

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