王博 教授 博士 黑龙江省 研究领域: 储能 研究方向: 太阳能热化学制氢及储能(Solar thermochemical hydrogen production and energy storage) 太阳能生物质化学链气化(Solar biomass chemical-looping gasification) 多相流反应器设计与优化(Design and optimization of multiphase flow reactors) 所在单位: 哈尔滨工业大学

基本信息

所在单位:
哈尔滨工业大学
机构细分:
能源科学与工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2015-2021 聚光太阳能热利用 澳大利亚国立大学 博士 太阳能热化学能储能,导师:Wojciech Lipiński 教授。
2012-2015 可持续能源 埃因霍温理工大学/瑞典皇家工学院 硕士 太阳能射流集热器设计,导师:Bjoern Laumert 教授。
2008-2012 能源与环境系统工程 浙江大学 学士 基于微生物燃料电池的废水处理,导师:成少安 教授。
工作经历:
2023至今哈尔滨工业大学 副教授
2021-2023 新加坡国立大学 研究员
专家介绍:
王博,哈尔滨工业大学,能源科学与工程学院,副教授,博士生导师,入选国家级青年人才计划,主要研究方向为高温热化学中,辐射、传热传质、反应动力学多物理场耦合过程,及其在太阳能热化学制氢、储能和生物质废弃物处理等方向的应用;在 Chemical Engineering Journal, Energy Conversion and Management 等期刊发表学术论文二十余篇;担任 Applied Energy, Energy Conversion and Management 等期刊审稿人。

科研能力

研究领域:
储能
研究方向:
太阳能热化学制氢及储能(Solar thermochemical hydrogen production and energy storage)
太阳能生物质化学链气化(Solar biomass chemical-looping gasification)
多相流反应器设计与优化(Design and optimization of multiphase flow reactors)
论文著作:
Lifeng Li1, Alireza Rahbari1, Mahdiar Taheri, Roelof Pottas, Bo Wang, Morteza Hangi, Leanne Matthews, Lindsey Yue, Jose Zapata, Peter Kreider, Alicia Bayon Sandoval, Chi-Hwa Wang, Terrence Simon, Joe Coventry, Wojciech Lipinski*, Experimental evaluation of an indirectly-irradiated packed-bed solar thermochemical reactor for calcination-carbonation chemical looping, Chemical Engineering Journal, 2023, 468: 143543.
Bo Wang, Xian Li, Xuancan Zhu, Yuesen Wang, Tian Tian, Yanjun Dai, Chi-Hwa Wang*, An epitrochoidal rotary reactor for solar-driven hydrogen production based on the redox cycling of ceria: Thermodynamic analysis and geometry optimization, Energy, 2023, 270: 126833.
Bo Wang*, Alireza Rahbari, Morteza Hangi, Xian Li, Chi-Hwa Wang, Wojciech Lipinski, Engineering Applications of Computational Fluid Mechanics, 2022, 16(1): 1195-1210.
Bo Wang, Xian Li, Yanjun Dai, Chi-Hwa Wang*, Thermodynamic analysis of an epitrochoidal rotary reactor for solar hydrogen production via a water-splitting thermochemical cycle using nonstoichiometric ceria, Energy Conversion and Management, 2022, 268: 115968.
Fengyuan Zhang, Xiaolin Wang*, Bo Wang, Xia Lou, Wojciech Lipinski*, Effects of silica gel nanopores and surfactants on CO2 hydrate formation kinetics —An experimental and modeling study, Chemical Engineering Science, 2022, 262: 118002.
Fengyuan Zhang, Suresh Bhatia, Bo Wang, Benjapon Chalermsinsuwan, Xiaolin Wang*, Experimental and numerical study on the kinetics of CO2-N2 clathrate hydrates formation in silica gel column with dodecyltrimethylammonium chloride for effective carbon capture, Journal of Molecular Liquids, 2022, 363(8): 119764.
Fengyuan Zhang, Xiaolin Wang*, Bo Wang, Xia Lou*, Wojciech Lipinski*, Experimental and numerical analysis of CO2 and CH4 hydrate formation kinetics in microparticles: A comparative study based on shrinking core model, Chemical Engineering Journal, 2022, 446(8): 137247.
Song Yang, Bo Wang, P. Lund*, Jun Wang*, Optimization of inert gas feeding strategy in a fixed-bed reactor for efficient water splitting via solar-driven thermal reduction of nonstoichiometric CeO2, Journal of Solar Energy Engineering, 2022, 144(5): 1-33.
Song Yang, Lifeng Li, Bo Wang, Sha Li, Jun Wang*, P. Lund, Wojciech Lipinski*, Thermodynamic analysis of a conceptual fixed-bed solar thermochemical cavity receiver-reactor array for water splitting via ceria redox cycling, Frontiers in Energy Research, 2021, 9:565761.
Bo Wang, Lifeng Li, Florian Schaefer, Johannes Pottas, Apurv Kumar, Vincent Wheeler, Wojciech Lipinski*, Thermal reduction of iron-manganese oxide particles in a high-temperature packed-bed solar thermochemical reactor, Chemical Engineering Journal, 2021, 412: 128255.
Wojciech Lipinski*, Ehsan Abbasi, Jingjing Chen, Joe Coventry, Morteza Hangi, Siddharth Iyer, Apurv Kumar, Lifeng Li, Sha Li, John Pye, Juan Felipe Torres, Bo Wang, Ye Wang, Vincent Wheeler, Progress in heat transfer research for high-temperature solar thermal applications, Applied Thermal Engineering, 2021, 184: 116137.
Lifeng Li, Bo Wang, Roman Bader, John Pye, Wujun Wang, Wojciech Lipinski*, Optical analysis of a multi-aperture solar central receiver system for high-temperature concentrating solar applications, Optics Express, 2020, 28(25): 37654-37668.
Lifeng Li, Bo Wang, John Pye, Wojciech Lipinski*, Temperature-based optical design, optimization and economics of solar polar-field central receiver systems with an optional compound parabolic concentrator, Solar Energy, 2020, 206: 1018-1032.
Lifeng Li, Song Yang, Bo Wang, John Pye, Wojciech Lipinski*, Optical analysis of a solar thermochemical system with a rotating tower reflector and a receiver-reactor array, Optics Express, 2020, 28(13): 19429-19445.
Bo Wang, Lifeng Li, Johannes Pottas, Roman Bader, Peter Kreider, Vincent Wheeler, Wojciech Lipinski*, Thermal model of a solar thermochemical reactor for metal oxide reduction, Journal of Solar Energy Engineering, 2020, 142(5): 1-38.
Lifeng Li, Bo Wang, Roman Bader, Joze Zapata, Wojciech Lipinski*, Reflective optics for redirecting convergent radiative beams in concentrating solar applications, Solar Energy, 2019, 191: 707-718.
Lifeng Li, Bo Wang, Johannes Pottas, Wojciech Lipinski*, Design of a compound parabolic concentrator for a multi-source high-flux solar simulator, Solar Energy, 2019, 183(4308): 805-811.
Wujun Wang, Bo Wang, Lifeng Li, Bjoern Laumert*, Torsten Strand, The effect of the cooling nozzle arrangement to the thermal performance of a solar impinging receiver, Solar Energy, 2016, 131: 222-234.
Lifeng Li, Bo Wang, Roman Bader, Thomas Cooper, Wojciech Lipinski*, Concentrating collector systems for solar thermochemical applications, Advances in Chemical Engineering, in book: Solar Thermochemistry, 2021, 58: 1-53.
Bo Wang, Transport phenomena in high-temperature multiphase-flow solar thermochemical reactors, Doctoral Thesis, The Australian National University, 2022, 10.25911/G1G5-XK08.
Bo Wang, Numerical study on optimizing impinging orifice array on a convex cylindrical surface, Master thesis, Royal Institute of Technology, 2015, diva2:741774.
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