当前位置: X-MOL首页全球导师 国内导师 › 孟华

个人简介

1990年毕业于大连理工大学动力工程系,获工学学士学位;1993年于大连理工大学动力工程系研究生毕业,获工学硕士学位;同年进入中国科学技术大学热科学和能源工程系攻读博士学位,开展了太阳能应用中的传热现象的研究;1996年秋获全额奖学金赴美国宾夕法尼亚州立大学(The Pennsylvania State University,University Park)机械和核能工程系继续攻读博士学位,师从美国国家工程院院士Professor Vigor Yang,对与液体火箭发动机和高性能燃气轮机相关的高压油滴蒸发及其传输和动力学现象开展了深入的基础研究工作。2001年5月毕业并获得博士学位。 2001年1月起在美国宾夕法尼亚州立大学推进工程研究中心(Propulsion Engineering Research Center)从事博士后科研工作,建立了一套三维、非稳态、全流速、全物性的大规模并行计算软件,并采用大涡模拟技术计算湍流流动和燃烧现象。2001年10月起在美国宾夕法尼亚州立大学电化学发动机中心(Electrochemical Engine Center)工作,在燃料电池技术方面,与许多世界知名跨国汽车公司的研发工程师广泛合作,初步建立了一套多维、多相、适用于大规模并行计算的质子交换膜燃料电池数值模拟软件,并应用于燃料电池的设计和优化。 2005年9月回国受聘为浙江大学求是特聘教授;现在是浙江大学航空航天学院教授、博士生导师。 近年来,孟华教授的研究工作主要集中在超临界压力传热、高压燃烧与动力技术、燃料电池技术等领域。已发表了高水平的学术论文,包括在本学科的国际权威期刊上,如Journal of Computational Physics、Journal of Fluid Mechanics、Physics of Fluids、Journal of the Electrochemical Society、Chemical Engineering Science、International Journal of Heat and Mass Transfer、Journal of Power Sources、International Journal of Hydrogen Energy、Energy&Fuels等,SCI他引1500多次,H指数26。1篇论文获国际权威期刊Chemical Engineering Science 2003-2006高被引用论文奖(Most Cited Paper Award),1篇论文分别获国际权威期刊International Journal of Heat and Mass Transfer 2002-2005、2005-2008 2次高被引用论文奖(Most Cited Article);根据SCOPUS数据库,2篇论文分别是其所在国际权威期刊Journal of the Electrochemical Society 2004、2005年高被引用论文之一,2篇论文分别是国际核心期刊AIAA Journal of Thermophysics and Heat Transfer 2010、2012年高被引用论文之一。 连续入选2014-2019年各年度能源领域中国高被引用学者。 教学与课程 主讲的主要课程: 推进系统原理(本科生专业课) 燃烧学与推进技术(研究生专业课) 主持的主要科研项目: 航空煤油超临界压力湍流燃烧污染物NOx生成排放机理的大涡模拟研究,国家自然科学基金项目 超临界煤油湍流燃烧及燃烧室出口温度场品质的主被动调节方式研究,国家重大专项项目的子课题 航空煤油超临界压力部分预混湍流燃烧不稳定性的大涡模拟研究,国家自然科学基金项目 先进航空发动机协同基础研究,先进航空发动机协同创新中心项目 航空煤油超临界压力非预混湍流燃烧的数值模拟和计算软件开发,国家自然科学基金项目 电加热单管内碳氢燃料流动、传热与裂解耦合过程的计算流体力学研究,横向科研项目 发动机多场耦合数值模拟技术研究,国家重大科技工程专项项目的子课题 碳氢燃料反应特性数值仿真技术,横向科研项目 超临界航空煤油流/固/热耦合数值模拟技术研究,横向科研项目 发动机主动冷却技术计算软件开发及数值模拟研究,横向科研项目 考虑碳氢燃料裂解吸热反应的超临界传热研究,浙江省杰出青年科学基金项目 碳氢燃料超临界换热的数值技术研究,横向科研项目 发动机两相燃烧数值模拟研究,横向科研项目 质子交换膜燃料电池中两相流动现象的计算模拟和软件开发,国家自然科学基金项目 课题组信息 本课题组主要从事航空航天推进与动力技术领域的数值模拟和小型实验研究工作,是一个紧密合作的研究团队,主要成员包括一名教授、一名副教授、两名博士后以及一些博士和硕士研究生。 欢迎相关专业(航空航天、能源动力、力学等)的学生和青年科研人员加入、共同开展高水平应用基础研究工作!

研究领域

超临界压力传热 高压燃烧 新型动力与推进技术

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

主要学术论文: Sun X.,Meng H.,“Large Eddy Simulations and Analyses of Hydrocarbon Fuel Heat Transfer in Vertical Upward Flows at Supercritical Pressures”,International Journal of Heat and Mass Transfer,170,120988,2021 Xu J.,Huang D.,Chen R.,Meng H.,“An Improved NO Prediction Model for Large Eddy Simulation of Turbulent Combustion”,Flow Turbulence and Combustion,2020 Huang D.,Xu J.,Chen R.,Meng H.,“Large Eddy Simulations of Turbulent Combustion of Kerosene-Air in a Dual Swirl Gas Turbine Model Combustor at High Pressures”,Fuel,282,118820,2020 Chai W.S.,Sun D.,Cheah K.H.,Li G.,Meng H.,“Co-Electrolysis-Assisted Decomposition of Hydroxylammonium Nitrate-Fuel Mixtures using Stainless Steel-Platinum Electrodes”,ACS Omega,5,19525-19532,2020 Sun X.,Meng H.,Zheng Y.,“Asymmetric Heating and Buoyancy Effects on Heat Transfer of Hydrocarbon Fuel in a Horizontal Square Channel at Supercritical Pressures”,Aerospace Science and Technology,93,105358,2019 Chai W.S.,Cheah K.H.,Meng H.,Li G.,“Experimental and Analytical Study on Electrolytic Decomposition of HAN-Water Solution using Graphite Electrodes”,Journal of Molecular Liquids,293,111496,2019 Sun X.,Xu K.,Meng H.,“Supercritical-Pressure Heat Transfer,Pyrolytic Reactions,and Surface Coking of n-Decane in Helical Tubes”,Energy Fuels,32,12298-12307,2018 Xu K.,Sun X.,Meng H.,“Conjugate Heat Transfer,Endothermic Fuel Pyrolysis and Surface Coking of Aviation Kerosene in Ribbed Tube at Supercritical Pressure”,International Journal of Thermal Sciences,132,209-218,2018 Sun X.,Xu K.,Meng H.,Zheng,Y.,“Buoyancy Effects on Supercritical-Pressure Conjugate Heat Transfer of Aviation Kerosene in Horizontal Tubes”,The Journal of Supercritical Fluids,139,105-113,2018 Huang S.,Ruan B.,Meng H.,Gao,X.,“Boundary Effects on Flow Oscillations in Transient Heat Transfer of n-Decane at Supercritical Pressure”,International Journal of Heat and Mass Transfer,123,821-825,2018 Xu K.,Ruan B.,Meng H.,“Validation and Analyses of RANS CFD Models for Turbulent Heat Transfer of Hydrocarbon Fuels at Supercritical Pressures”,International Journal of Thermal Sciences,124,212-226,2018 Ruan B.,Huang S.,Meng H.,Gao,X.,“Flow Dynamics in Transient Heat Transfer of n-Decane at Supercritical Pressure”,International Journal of Heat and Mass Transfer,115,206-215,2017 Huang D.,Wang Q.,Meng H.,“Modeling of Supercritical-Pressure Turbulent Combustion of Hydrocarbon Fuels using a Modified Flamelet-Progress-Variable Approach”,Applied Thermal Engineering,119,472-480,2017 Ruan B.,Huang S.,Meng H.,Gao,X.,“Transient Responses of Turbulent Heat Transfer of Cryogenic Methane at Supercritical Pressures”,International Journal of Heat and Mass Transfer,109,326-335,2017 Ruan B.,Gao X.,Meng H.,“Numerical Modeling of Turbulent Heat Transfer of a Nanofluid at Supercritical Pressure”,Applied Thermal Engineering,113,994-1003,2017 Xu K.,Meng H.,“Numerical Study of Fluid Flows and Heat Transfer of Aviation Kerosene with Consideration of Fuel Pyrolysis and Surface Coking at Supercritical Pressures”,International Journal of Heat and Mass Transfer,95,806-814,2016 Han B.,Ni M.,Meng H.,“Three-Dimensional Lattice Boltzmann Simulation of Liquid Water Transport in Porous Layer of PEMFC”,Entropy,18,17,2016 Xu K.,Meng H.,“Modeling and Simulation of Supercritical-Pressure Turbulent Heat Transfer of Aviation Kerosene with Detailed Pyrolytic Chemical Reactions”,Energy Fuels,29,4137-4149,2015 Xu K.,Tang L.,Meng,H.,“Numerical Study of Supercritical-Pressure Fluid Flows and Heat Transfer of Methane in Ribbed Cooling Tubes”,International Journal of Heat and Mass Transfer,84,346-358,2015 Khare P.,Yang V.,Meng,H.,Risha,G.A.,Yetter,R.A.,“Thermal and Electrolytic Decomposition and Ignition of HAN-Water Solutions”,Combustion Science and Technology,187,1065-1078,2015 Xu K.,Meng H.,“Analyses of Surrogate Models for Calculating Thermophysical Properties of Aviation Kerosene RP-3 at Supercritical Pressures”,Science China-Technological Sciences,58,510-518,2015 Xu K.,Ruan B.,Meng H.,“A Thermal Performance Factor for Evaluation of Active Engine Cooling with Asymmetric Heating”,Applied Thermal Engineering,73,351-356,2014 Lafon P.,Meng H.,Yang V.,Habiballah M.,“Pressure-Coupled Responses of LOX Droplet Vaporization and Combustion in High-Pressure Hydrogen Environments”,Combustion Science and Technology,186,1191-1208,2014 Yu J.,Meng H.,“A Numerical Study of Counterflow Diffusion Flames of Methane/Air at Various Pressures”,Science China-Technological Sciences,57,615-624,2014 Ruan B.,Meng H.,Yang V.,“Simplification of Pyrolytic Reaction Mechanism and Turbulent Heat Transfer of n-Decane at Supercritical Pressures”,International Journal of Heat and Mass Transfer,69,455-463,2014 Meng H.,Yang V.,“Vaporization of Two Liquid Oxygen(LOX)Droplets in Tandem in Convective Hydrogen Streams at Supercritical Pressures”,International Journal of Heat and Mass Transfer,68,500-508,2014 Song G.-H.,Meng H.,“Numerical Modeling and Simulation of PEM Fuel Cells:Progress and Perspective”,Acta Mechanica Sinica,29,318-334,2013 Han B.,Meng H.,“Numerical Studies of Interfacial Phenomena in Liquid Water Transport in Polymer Electrolyte Membrane Fuel Cells using the Lattice Boltzmann Method”,International Journal of Hydrogen Energy,38,5053-5059,2013 Wang L.,Chen Z.,Meng H.,“Numerical Study of Conjugate Heat Transfer of Cryogenic Methane in Rectangular Engine Cooling Channels at Supercritical Pressures”,Applied Thermal Engineering,54,237-246,2013 Meng H.,Han B.,Ruan B.,“Numerical Modeling of Liquid Water Transport inside and across Membrane in PEM Fuel Cells”,Asia-Pacific Journal of Chemical Engineering,8,104-114,2013 Han B.,Meng H.,“Lattice Boltzmann Simulation of Liquid Water Transport in Turning Regions of Serpentine Gas Channels in Proton Exchange Membrane Fuel Cells”,Journal of Power Sources,217,268-279,2012 Meng H.,Yang V.,“Clustering Effects on Liquid Oxygen(LOX)Droplet Vaporization in Hydrogen Environments at Subcritical and Supercritical Pressures”,International Journal of Hydrogen Energy,37,11815-11823,2012 Han B.,Yu J.,Meng H.,“Lattice Boltzmann Simulations of Liquid Droplets Development and Interaction in a Gas Channel of a Proton Exchange Membrane Fuel Cell”,Journal of Power Sources,202,175-183,2012 Ruan B.,Meng H.,“Supercritical Heat Transfer of Cryogenic-Propellant Methane in Rectangular Engine Cooling Channels”,AIAA Journal of Thermophysics and Heat Transfer,26,313-321,2012 Hsiao G.C.,Meng H.,Yang V.,“Pressure-Coupled Vaporization Response of n-Pentane Fuel Droplet at Subcritical and Supercritical Conditions”Proceedings of the Combustion Institute,33,1997-2003,2011 Meng H.,Ruan B.,“Numerical Studies of Cold-Start Phenomena in PEM Fuel Cells:A Review”,International Journal of Energy Research,35,2-14,2011 Wang Y.-Z.,Hua Y.-X.,Meng H.,“Numerical Studies of Supercritical Turbulent Convective Heat Transfer of Cryogenic-Propellant Methane”,AIAA Journal of Thermophysics and Heat Transfer,24,490-500,2010 Meng H.,“Numerical Studies of Liquid Water Behaviors in PEM Fuel Cell Cathode Considering Transport across Different Porous Layers”,International Journal of Hydrogen Energy,35,5569-5579,2010 Hua Y.-X.,Wang Y.-Z.,Meng H.,“A Numerical Study of Supercritical Forced Convective Heat Transfer of n-Heptane inside a Horizontal Miniature Tube”,The Journal of Supercritical Fluids,52,36-46,2010 Meng H.,“Multi-dimensional Liquid Water Transport in the Cathode of a PEM Fuel Cell with Consideration of the Micro-porous Layer(MPL)”,International Journal of Hydrogen Energy,34,5488-5497,2009 Meng H.,“Numerical Analyses of Non-Isothermal Self-Start Behaviors of PEM Fuel Cells from Subfreezing Startup Temperatures”,International Journal of Hydrogen Energy,33,5738-5747,2008 Meng H.,“Numerical Studies of Cold-Start Phenomenon in PEM Fuel Cells”,Electrochimica Acta,53(22),6521-6529,2008 Meng H.,“A PEM Fuel Cell Model for Cold-Start Simulations”,Journal of Power Sources,178(1),141-150,2008 Lafon P.,Meng H.,Yang,V.,Habiballah M.,“Vaporization of Liquid Oxygen(LOX)Droplets in Hydrogen and Water Environments under Sub-and Super-critical Conditions”,Combustion Science and Technology,180,1-26,2008 Meng H.,“Numerical Investigation of Transient Responses of a PEM Fuel Cell using a Two-Phase Non-Isothermal Mixed-Domain Model”,Journal of Power Sources,171(2),738-746,2007 Meng H.,“A Two-Phase Non-Isothermal Mixed-Domain PEM Fuel Cell Model and Its Application to Two-Dimensional Simulations”,Journal of Power Sources,168(1),218-228,2007 Meng H.,“A Three-Dimensional Mixed-Domain PEM Fuel Cell Model with Fully-Coupled Transport Phenomena”,Journal of Power Sources,164(2),688-696,2007 Meng H.,“A Three-Dimensional PEM Fuel Cell Model with Consistent Treatment of Water Transport in MEA”,Journal of Power Sources,162(1),426-435,2006 Meng H.,“A Simplified Method for Solving Anisotropic Transport Phenomena in PEM Fuel Cells”,Journal of Power Sources,161(1),466-469,2006 Meng H.,Wang C.Y.,“Multidimensional Modeling of Polymer Electrolyte Fuel Cells under a Current Density Boundary Condition”,Fuel Cells,5(4),455-462,2005 Meng H.,Wang C.Y.,“Model of Two-Phase Flow and Flooding Dynamics in Polymer Electrolyte Fuel Cells”,Journal of the Electrochemical Society,152(9),A1733-A1741,2005 Meng H.,Hsiao G.C.,Yang V.,Shuen J.S.,“Transport and Dynamics of Liquid Oxygen Droplets in Supercritical Hydrogen Streams”,Journal of Fluid Mechanics,527,115-139,2005 Ju H.,Meng H.,Wang C.Y.,“A Single-Phase,Non-Isothermal Model for PEM Fuel Cells”,International Journal of Heat and Mass Transfer,48,1303-1315,2005 Meng H.,Wang C.Y.,“Large-Scale Simulation of Polymer Electrolyte Fuel Cells by Parallel Computing”,Chemical Engineering Science,59(16),3331-3343,2004 Meng H.,Wang C.Y.,“Electron Transport in PEFCs”,Journal of the Electrochemical Society,151(3),A358-A367,2004 Zong N.,Meng H.,Hsieh S.Y.,Yang V.,“A Numerical Study of Cryogenic Fluid Injection and Mixing under Supercritical Conditions”,Physics of Fluids,16(12),4248-4261,2004 Meng H.,Yang V.,“A Unified Treatment of General Fluid Thermodynamics and Its Application to a Preconditioning Scheme”,Journal of Computational Physics,189(1),277-304,2003

学术兼职

孟华教授是美国机械工程师学会 (ASME) Fellow (2016),美国航空航天学会(AIAA)Associate Fellow (2015),目前担任国际期刊Advances in Mechanical Engineering编委

推荐链接
down
wechat
bug