个人信息
Personal Information
联系方式
Contact Information
个人简介
Personal Profile
工作及研究经历
上海理工大学,能源与动力工程学院 2021.10-至今
大连理工大学,能源与动力学院 2015.09-2021.10
美国宾夕法尼亚州立大学 (合作教授:王朝阳 教授) 2010.08-2015.07
教育经历
博士学位 上海交通大学 工程热物理专业 (导师:郑平 教授) 2006.09-2010.06
硕士学位 西安交通大学 动力工程及工程热物理专业 (导师: 袁秀玲 教授) 2003.09-2006.05
学士学位 西安交通大学 能源与动力工程及计算机科学与技术专业 (双学士学位) 1999.09-2003.07
上传附件
支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg上传附件
支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg上传附件
支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg● 2023.04-2026.3质子交换膜燃料电池低Pt阴极催化层孔隙尺度传输机理研究,上海市自然科学基金面上项目,主持。
● 2017.01-2019.12 盐溶液闪蒸过程两相流动与传热传质机理研究,国家自然科学基金青年科学基金项目,主持。
● 2022.11-2023.12 500kW熔融碳酸盐燃料电池+余热利用发电系统设计,企业横向项目,主持。
● 2018.12-2019.8 极板流道分析, 企业横向项目,主持。
● 2018.1-2018.7 金属双极板设计(B01)分析,企业横向项目,主持。
● 2016.01-2017.12 全钒液流电池性能衰减的基础研究,主持。
● 2016.05-2017.03 多种能源与海水淡化系统互补特性研究,企业横向项目,主持。
● 2013.07- 2014.11 Development of Low-Pt Loading Model and Degradation Model in PEM Fuel Cells and Investigation of the Macro-scale Transport Processes for Improved Fuel Cell Performance, Honda Motor Corporation, Co-principal investigator。
● 2013.04-2015.07 Development of a Robust PEM Fuel Cell Model for Fuel Cell Engine Design in Next Generation Fuel Cell Vehicle and Study of the Cold-start Process of a Fuel Cell in Sub-zero Environment, Toyota Motor Corporation, Co-principal investigator。
● 2012.04-2014.03 Fuel Cell Model and Channel Two-Phase Flow in PEM Fuel Cells, Nissan Motor Corporation, Co-principal investigator。
● 2010.07-2012.06 Development and Validation of a Two-phase and 3D Model for PEMFC,U.S. DOE EERE Fuel Cell Technologies, Penn State University, Co-principal investigator。
● 2019.05-2020.05 冷却塔组热回流特性分析技术开发,企业横向项目,主要参与。
● 2018.11-2020.12 高性能循环水冷却塔技术开发,企业横向项目,主要参与。
● 2018.05-2018.09 循环水冷却塔高性能喷嘴开发,企业横向项目,主要参与。
● 2017.09-2017.10 广州大学城冷却塔组热回流特性分析,企业横向项目,主要参与。
● 2017.05-2017.08 循环水冷却塔外部降噪设备应用技术开发,企业横向项目,主要参与。
● 2006.09-2010.06 微/纳尺度下流体流动与传热传质研究,国家自然科学基金重点项目,参与。
● S Dou, L Hao*, H Liu,“Effects of AgglomerateStructure and Operating Humidity on the Catalyst Layer Performance of PEM FuelCells”, Applied Energy, 355 (2024) 122211
● B Yin, L Hao*, X Li, Q Yang, “Efficient ChargeTransfer at the Donor-Bridge-Acceptor Interface for excellent Supercapacitors”,Chemical Engineering Journal, 476(2023) 146569
● B Yin, L Hao*, X Li, Q Yang, “CoCx‑inducedinterfacial octahedral Co2+ sites of NiCo-LDH electrode withimproved faradic reactivity toward high-performance supercapacitor”, J. Colloidand Interface Science 651(2023) 602-611
● S Dou, L Hao*, H Liu, “Effects of carbon aggregatesand ionomer distribution on the performance of PEM fuel cell catalyst layer: Apore-scale study”, Renewable Energy 217(2023), 119254
● B Yin, L Hao*, X Li, “Revealing InterstitialDiffusion and Vacancy Diffusion Kinetics of Battery-like Electrodes forHigh-Performance Pseudocapacitors”, ACS Applied Energy Materials 6 (2023),8288-8296
● Yusong He, Minli Bai, LiangHao*,“Pore-Scale Simulation of Effective Transport Coefficients in the CatalystLayer of Proton Exchange Membrane Fuel Cells”, J. Electrochemical Society 170 (2023),044501.
● Q Wang, F Tang, X Li, JP Zheng, L Hao, G Cui, P Ming*,Revealing the dynamic temperature of the cathode catalyst layer inside protonexchange membrane fuel cell by experimental measurements and numerical analysis,Chemical Engineering Journal (2023), 142286
● Huan Chen, Yongpeng Zhao, Huitong Zhao, Hui Huang, Ningxuan Wen,Chen Wang, Zeng Fan, Liang Hao*,Lujun Pan, Hybrid films constructed by carbon nanotubes and carbon nanocoils ascurrent collectors for lithium-ion batteries, Journal of ElectroanalyticalChemistry(2023) 117288
● Linfeng Zang, Liang Hao*Xiaojing Zhu, "Effect of the pore structure of cathode catalyst layer onthe PEM fuel cell cold start process", Energy, 271(2023) 126993
● Yuanhui Wang, Liang Hao*, Minli Bai, "Modeling the influence of water on the performance of non-aqueous Li-O2 batteries", Applied Energy, 330 (2023) 120356.
● Shaojun Dou, Liang Hao*, Hong Liu, “Effects of liquid water on the pore structure and transport coefficients in the cathode catalyst layer of PEM fuel cells”, International Journal of Hydrogen Energy, 47(2022) 41138-41153
● Shaojun Dou, Liang Hao*, Hong Liu, “A mesoscopic model for simulating the physisorption process in nanopores”, Chemical Engineering Science, 262(2022) 117988
● Baoyi Yin, Liang Hao*, Tao Wei*, Chen Wang*, Bao Zhu, Xiaogan Li, Qiguo Yang, “Revealing bulk reaction kinetics of battery-like electrode for pseudocapacitor with ultra-high rate performance”, Chemical Engineering Journal, 450(2022) 138224
● Yuanhui Wang, Liang Hao*, “Effects of cathode structure on the discharge performance of non-aqueous Li-O2 batteries”, Electrochimica Acta 425 (2022) 140703
● Yiheng Pang, Liang Hao⁎, Yun Wang⁎, “Convolutional neural network analysis of radiography images for rapid water quantification in PEM fuel cell”, Applied Energy, 321(2022)119352
● Huitong Zhao, Huan Chen, Xiaowei Ning, Chengwei Li, Chen Wang, Zeng Fan, Liang Hao*, Lujun Pan*, “Three-dimensional porous framework constructed by hybrid of carbon nanotubes and carbon nanocoils for stable lithium metal anode”, Journal of Materials Research 37 (2022), 2073–2081
● Yuanhui Wang, Liang Hao*, Minli Bai, “Modeling the multi-step discharge and charge reaction mechanisms of non-aqueous Li-O2 batteries”, Applied Energy, 317 (2022)119189.
● Baoyi Yin, Liang Hao*, Tao Wei*, Chen Wang*, Bao Zhu, Xiaogan Li, Qiguo Yang, “Defect engineering on sea-urchin-like transition-metal oxides for high-performance supercapacitors”, J Power Sources, 533(2022) 231409.
● Yuanhui Wang, Meng Li, Liang Hao*, “Three-dimensional modeling study of all-vanadium redox flow batteries with the serpentine and interdigitated flow fields”, J. Electroanalytical Chemistry, 918(2022) 116460.
● Yuanhui Wang, Liang Hao*, “Modeling discharge performance of Li-O2 batteries with different electrolyte compositions”, J. Electroanalytical Chemistry, 901(2021) 115745.
● Yuanhui Wang, Liang Hao*, and Minlin Bai, “Effect of CO2-induced side reactions on the deposition in the non-aqueous Li-air batteries”, J Solid State Electrochem 25 (2021) 2571-2585.
● Yuanhui Wang, Liang Hao*, and Minlin Bai, “Modeling Studies of the Discharge Performance of Li-O2 Batteries with Different Cathode Open Structures”, J. Electrochem. Soc.,168(2021) 070517.
● Shaojun Dou, Liang Hao*, Hong Liu, “Numerical study of bubble behaviors and heat transfer in pool boiling of water/NaCl solutions using the lattice Boltzmann method”, International Journal of Thermal Sciences, 170(2021) 10715.
● Yuanhui Wang, Liang Hao*, and Minlin Bai, “A Modeling Study of the Cycling Behavior of Non-Aqueous Li-O2/CO2 Batteries”, J. Electrochem. Soc.,168(2021) 020524
● Shaojun Dou, Liang Hao*, “Numerical Study of Droplet Evaporations on Heated Flat and Micro-pillared Hydrophobic Surfaces by Using the Lattice Boltzmann Method”, Chemical Engineering Science, 229(2021)116032
● Lingfeng Zang, Liang Hao*, “Numerical Study of the Cold-Start Process of PEM Fuel Cells with Different Current Density Operating Modes”, Journal of Energy Engineering, 146(2020) 04020057.
● Shaojun Dou, Liang Hao*, “Investigation of Wetting States and Wetting Transition of Droplets on the Micro-structured Surface using the Lattice Boltzmann Model”, Numerical Heat Transfer, Part A: Applications, 78(2020) 321-337.
● Liang Hao*, “Analysis of Bubble Growth and Motion Dynamics in Superheated Liquid during Flash Evaporation”, International Journal of Heat and Mass Transfer, 151(2020) 119356.
● Liang Hao*, “A Mathematical Study of Bubble Dynamics in Superheated Sodium Chloride Solution”, International Journal of Heat and Mass Transfer, 145(2019) 118728.
● Liang Hao*, Yuanhui Wang, Yusong He, “Modeling of Ion Crossover in an All-Vanadium Redox Flow Battery with the Interfacial Effect at Membrane/Electrode Interfaces”, J. Electrochem. Soc., 166(2019) A1310-A1322.
● Yuanhui Wang and Liang Hao*, “Effect of Membrane Properties on Ion Crossover in Vanadium Redox Flow Batteries”, J. Electrochem. Soc. 166(2019): A3784-A3795.
● Cheng-Zhou Hang, Chen Wang*, Bin Gao, Huan Chen, Liang Hao*, Hong-Liang Lu. Sub-nanosecond pulse programming and device design strategy for analog resistive switching in HfOx-based resistive random access memory, Applied Physics Letters,114(2019),112102-1-5.
● Rui Sun, Huan Chen, Guanran Wang, Chen Wang*, Liang Hao, Reduction of thermal disturbances in 3D 1S1R RRAM crossbar arrays for neuromorphic computing, SEMICONDUCTOR SCIENCE & TECHNOLOGY,34(2019)115023.
● Liang Hao, Koji Moriyama, Wenbin Gu, Chaoyang Wang*, “Three Dimensional Computations and Experimental Comparisons for a Large-Scale Proton Exchange Membrane Fuel Cell”, J. Electrochemical Society, 163 (2016) F744-F751.
● Liang Hao, Koji Moriyama, Wenbin Gu, Chaoyang Wang*, “Modeling and Experimental Validation of Pt Loading and Electrode Composition Effects in PEM Fuel Cells”, J. Electrochemical Society, 162 (2015) F854-F867.
● Liang Hao, Ping Cheng*, “Capillary Pressures in Carbon Paper Gas Diffusion Layers Having Hydrophilic and Hydrophobic Pores”, Int. J. Heat and Mass Transfer 55 (2012) 133-139.
● Liang Hao, Ping Cheng*, “Lattice Boltzmann Simulations of Water Transport in Gas Diffusion Layer of a Polymer Electrolyte Membrane Fuel Cell”, J. Power Sources 195 (2010) 3870-3881.
● Liang Hao, Ping Cheng*, “Pore-Scale Simulations on Relative Permeability of Porous Media by Lattice Boltzmann method”, Int. J. Heat and Mass Transfer 53 (2010) 1908-1913.
● Liang Hao, Ping Cheng*, “An Analytical Model for Micro-droplet Steady Movement on the Hydrophobic Wall of a Micro-channel”, Int. J. Heat and Mass Transfer 53 (2010) 1243-1246.
● Liang Hao, Ping Cheng*, “Lattice Boltzmann Simulations of Liquid Droplet Dynamic Behavior on a Hydrophobic Surface of a Gas Flow Channel”, J. Power Source 190 (2009) 435-446.
● Liang Hao, Ping Cheng*, “Lattice Boltzmann Simulations of Anisotropic Permeabilities in Carbon Paper Gas Diffusion Layers”, J. Power Sources 186 (2009) 104-114.
● Guodong Wang, Liang Hao, Ping Cheng*, “A Four-Zone Model for Saturated Flow Boiling in a Microchannel of Rectangular Cross-Section”, Int. J. Heat and Mass Transfer 53 (2010) 3439-3448.
● Guodong Wang, Liang Hao, P. Cheng*, “An Experimental and Numerical Study of Forced Convection in a Microchannel with Negligible Axial Heat Conduction”, Int. J. Heat and Mass Transfer 52(2009) 1070-1074.
● Brian Carnes, Dusan Spernjak, Gang Luo, Liang Hao, Ken S. Chen, Chao-Yang Wang*, Rangachary Mukundan, Rodney L. Borup, “Validation of a Two-phase Multidimensional Polymer Electrolyte Membrane Fuel Cell Computational Model using Current Distribution Measurements”, J. Power Sources 236 (2013) 126-137.
● 豆少军, 郝亮, 刘红. 液态水对PEM 燃料电池催化层内气体扩散的影响研究. 工程热物理学报.
● 刘斌,郝亮*,静态闪蒸过程汽泡生长的理论与实验研究,热科学与技术,5(2021)438-445.
● 何玉松,郝亮*,“质子交换膜燃料电池微扩散层孔隙结构与渗透率的孔隙尺度模拟”,上海交通大学学报. 2020, 54(10)1053-1064.
● 王刚,郝亮*,张冠锋,沈胜强, “基于风能利用的机械蒸汽压缩海水淡化系统模拟”, 热科学与技术,16(2017) 40-46.
● 孙峰,王刚,郝亮,张冠锋,沈胜强*,机械蒸汽压缩机模型及其与风力发电机耦合模拟研究,热科学与技术,16(2017) 418-423.
● Linfeng Zang, Liang Hao*,The effects of current density modes on the cold start process of PEM fuel cells,The First International Conference on PEM Fuel Cell Science and Technology,November 15-18, 2019 Xi'an, China.
● Liang Hao*, Yuanhui Wang, The Modeling Study of Ion Crossover in a Vanadium Redox Flow Battery, The International Conference on Thermal Science and Technology (ICTST) 2017, November 2017, 17-19th, Kuta, Bali, Indonesia.
● Liang Hao*, Shengqiang Shen, A Modeling Study of Using Fluctuant Renewable Wind Energy for Seawater Desalination, IDA World Congress 2017, Oct.15-19, 2017, São Paulo, Brazil.
● Liang Hao, Chaoyang Wang*, “A New Water Saturation Jump Model at GDL/MPL/CL Interfaces of a PEM Fuel Cell”, 225th ECS Meeting, May 11, 2014, Orlando, FL, USA.
● Liang Hao, Chaoyang Wang*, Gang Luo, “Fully Two-Phase Modeling for PEM Fuel Cells”, ASME 2011 9th International Conference on Fuel Cell Science, August 10, 2011, Washington D.C., USA
● Ken S. Chen, Brian Carnes, Liang Hao, Gang Luo, Yan Ji, Chao-Yang Wang*, “A Three-dimensional Two-phase Model for Simulating PEM Fuel Cell Performance”, ASME 2011 9th International Conference on Fuel Cell Science, August 10, 2011, Washington D.C., USA
● Brian Carnes, Ken S. Chen, Liang Hao, Gang Luo, Yan Ji, Chao-Yang Wang*, Dusan Spernjak, “Validation and Uncertainty Quantification of a Two-Phase, Multidimensional PEMFC Computer Model Using High Resolution Segmented Current Collector Data”, ASME 2011 9th International Conference on Fuel Cell Science, August 10, 2011, Washington D.C., USA
● Ken S. Chen, Brian Carnes, Liang Hao, Yan Ji, Gang Luo, Chao-Yang Wang*, Yun Wang, “Toward the Development and Validation of a Comprehensive PEM Fuel Cell Model”, ASME 2011 9th International Conference on Fuel Cell Science, August 10, 2011, Washington D.C., USA
● Liang Hao, Ping Cheng*, “Mesoscale Simulations of Single & Two-Phase Transport in PEM Fuel Cells by Lattice Boltzmann Method”, keynote paper of Proceedings of 6th International Conference on Computational Heat and Mass Transfer (ICCHMT), May 18-21, 2009, Guangzhou, China.
● 豆少军, 郝亮, 刘红, PEMFC 催化层气体、液态水和电荷传输的孔隙尺度研究, 工程热物理学会多相流学术会议, 2023, 上海,18-001.
● 臧琳峰, 郝亮,朱晓静, 基于格子Boltzmann方法的气体扩散层结构对冰融化过程的影响研究, 工程热物理学会多相流学术会议,2023, 上海.
● 豆少军, 郝亮, 刘红. PEM 燃料电池催化层团聚体局部传质过程的孔尺度研究, 工程热物理学会传热传质学术会议,2023, 成都, 233237.
● 豆少军,郝亮*,液态水对PEM燃料电池催化层内气体扩散的影响研究,中国工程热物理学会传热传质学术会议,杭州,2022,223312
● 周操,郝亮*,质子交换膜燃料电池阴极催化层衰减模型研究,中国工程热物理学会传热传质学术会议,上海,2021,213361
● 黄义雄,郝亮*,锂金属负极结构对锂沉积过程的影响。 高等学校工程热物理第二十七届全国学术会议,主办单位:湘潭,2021,A-2021055
● 臧琳峰,郝亮*,朱晓静,“质子交换膜燃料电池堆冷启动过程歧管配流分析”,中国工程热物理学会多相流学术会议,江苏苏州,2021,216374
● 王园辉,郝亮*,白敏丽,阴极厚度对高性能锂空气电池的影响,中国工程热物理学会,广东广州,2020,203074.
● 豆少军,郝亮*,NaCl溶液池沸腾换热性能的模拟研究,中国工程热物理学会,广东广州,2020,203491.
● 李盟, 郝亮*, 流场结构对全钒液流电池性能影响的研究, 中国工程热物理学会2019年传热传质学术会议.
文件上传中...