饶政华 教授 博士 湖南省 研究领域: 新能源,储能 研究方向: [1] 新能源及能源系统工程:新能源发电技术、太阳能热利用与热发电、智慧能源与新型储能 [2] 工程热物理与能源利用的基础问题:热防护与热管理、先进制造过程中的传热传质分析等 所在单位: 中南大学

基本信息

所在单位:
中南大学
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
专家介绍:
饶政华,中南大学教授,博士生导师,新能源系主任,流程工业节能技术湖南省重点实验室副主任。中南大学与美国 Missouri University of Science and Technology 联合培养工程热物理专业工学博士。2007年至2009年获国家留学基金委的资助赴美留学。致力于动力工程及工程热物理、新能源与储能技术、能源系统工程等专业领域的教学科研工作,主持了国家自然科学基金项目、湖南省自然科学基金项目、教育部科研专项资金项目、美国通用汽车公司国际合作项目、企业委托合作项目等,参与完成了国家重点研发计划项目、省部级重大课题和国际合作项目。以第一或通讯作者在International Journal of Heat and Mass Transfer、Energy Conversion and Management、Intemational Journal of Thermal Sciences、Applied Thermal Engineering、Journal of Energy Storage、Renewable energy、Composites Part A、Composite Structure、Additive Manufacturing、Journal of Applied Physics等国际期刊发表SCI论文60余篇,其他SCI、EI检索论文30余篇,担任多个国际期刊审稿专家。出版专著1部、教材3部,授权发明专利10余项。指导学生参加全国大学生节能减排社会实践与科技竞赛等获一等奖4次、二等奖4次。获得湖南省高等教育教学成果奖、中南大学高等教育教学成果奖一等奖,中国发明协会发明创业奖创新奖二等奖,比亚迪奖学金优秀教师科研奖等。

科研能力

研究领域:
新能源,储能
研究方向:
[1] 新能源及能源系统工程:新能源发电技术、太阳能热利用与热发电、智慧能源与新型储能
[2] 工程热物理与能源利用的基础问题:热防护与热管理、先进制造过程中的传热传质分析等
论文著作:
[1]Yuyuan Yang, Shengming Liao, Zhenghua Rao, Tianchen Xue.Potential of transcritical recompression Rankine cycle operating with CO2 -based binary mixtures.Energy Conversion and Management, 2022, 252: 115040.
[2]Tian Zhou, Zhenghua Rao, Yejing Zhao.Fundamental and estimation of thermal contact resistance between polymer matrix composites: A review.International Journal of Heat and Mass Transfer, 2022, 189: 122701.
[3]Zhenghua Rao,, Tian Zhou, Rui Bai.Effects of interfacial layer on thermal conductivity enhancement of solar salt-based nanofluids: Insights from molecular dynamics simulations.Case Studies in Thermal Engineering, 2022, 35: 102087.
[4]Wang Y, Rao Z, Ultrasonic welding of fiber reinforced thermoplastic composites: Current understanding and challenges.Composites Part A Applied Science and Manufacturing, 2021 (6) : 106578.
[5]Rao Z, Liu L.Preventing nugget shifting in joining of dissimilar steels via resistance element welding: a numerical simulation.The International Journal of Advanced Manufacturing Technology, 2021
[6]Huan Wang, Zhenghua Rao, Shengming Liao, A reconstruction of Hamilton-Crosser model for effective thermal conductivity of nanofluids based on particle clustering and nanolayer formation
[J].Case Studies in Thermal Engineering, 2021, 26 (4) : 101051.
[7]Gang Liu, Zhenghua Rao, Shengming Liao, Chunwei Zhou.Impacts of fracture network geometries on numerical simulation and performance prediction of enhanced geothermal systems
[J].Renewable Energy, 2021, 171 (2) : 492-504.
[8]Zhenghua Rao, Shengming Liao, Kai Ye.Effects of interface layer on the thermophysical properties of solar salt‐SiO2 nanofluids: A molecular dynamics simulation
[J].International Journal of Energy Research, 2021: 1-15.
[9]Rui Chen, ManuelRomero, Shengming Liao, Zhenghua Rao.Design and off-design performance comparison of supercritical carbon dioxide Brayton cycles for particle-based high temperature concentrating solar power plants.
[J].Energy Conversion and Management, 2021, 232 (1) : 113870.
[10]Zhenghua Rao, Gang Liu, Shengming Liao, Cunyue Peng.Response behaviors of CO2 transcritical Rankine cycle based parabolic trough solar power plant to cloud disturbance
[J].Applied Thermal Engineering, 2021, 189 (4) : 116722.
[11]Zhenghua Rao, Shengming Liao, Siteng Bao.Estimating allowable energy flux density for the supercritical carbon dioxide solar receiver: A service life approach.
[J].Applied Thermal Engineering, 2020, 182: 116024.
[12]Zhenghua Rao, Pei-Chung Wang, Liang Ou.A self-piercing-through riveting method for joining of discontinuous carbon fiber reinforced nylon 6 composite
[J].Composite Structures, 2020, 237: 111841.
[13]Yaqiong Wang, Zhenghua Rao, Fengjiang Wang.Heat evolution and nugget formation of resistance spot weldingunder multi-pulsed current waveforms.
[J].The International Journal of Advanced Manufacturing Technology, 2020, 111: 3583–3595.
[14]Siyang Zheng, Zhenghua Rao, Shengming Liao, Structural and thermal analysis of an innovative baking furnace for carbon anode production
[J].International Journal of Energy Research, 2020, 45 (5) : 6907-6921.
[15]Yaqiong Wang, Zhenghua Rao, Jiaxing Liu.An optimized control strategy for integrated solar and air-source heat pump water heating system with cascade storage tanks
[J].Energy and Buildings, 2020, 210: 109766.
[16]Zhenghua Rao, TianchenXue, Shengming Liao, Kaixin Huang.Multi-objective optimization of supercritical carbon dioxide recompression Brayton cycle considering printed circuit recuperator design.
[J].Energy Conversion and Management, 2019, 201: 112094.
[17]Jiangwei Liu, Zhenghua Rao, Pingwang Zeng.Transport phenomena and keyhole evolution process in laser welding of stainless steel.
[J].Journal of Central South University, 2019, 26 (8) : ?2088–2099.
[18]Rui Chen, Shengming Liao, Zhenghua Rao.Hybrid LEAP modeling method for long-term energy demand forecasting of regions with limited statistical data
[J].Journal of Central South University, 2019, 26 (8) : 2136-2148.
[19]Min Li, Min Li, Zhenghua Rao.Hourly 50-year simulations of ground-coupled heat pumps using high-resolution analytical models
[J].Energy Conversion and Management, 2019, 193: 15-24.
[20]Xiaojun Liu, Xiaojun Liu, Zhenghua Rao.An input-output model for energy accounting and analysis of industrial production processes: a case study of an integrated steel plant.
[J].Journal of Iron & Steel Research International, 2018, 25 (5) : 524-538.
发明专利:
[1]浸没式液冷和循环风冷结合的服务器机柜散热系统, 授权号:ZL 2018 1 1044733.X.
[2]同时测量相变材料固、液两相温变热导率的装置及方法, 授权号:ZL 2022 1 1007926.4.
[3]一种用于电力机车牵引系统的相变蓄冷式散热装置, 授权号:ZL 2022 1 0530572.5.
[4]太阳能地热能联合驱动的跨临界二氧化碳发电系统及方法, 授权号:ZL 202011253357.2.
[5]一种区域分布式热水共享系统及控制方法, 授权号:ZL 201910688458.3.
[6]基于热管技术的数据中心浸没式液冷机柜., 授权号:ZL 201711372531.3.
[7]太阳能集热器和空气源热泵联合供热水系统及控制方法., 授权号:ZL 201510742601.4.
[8]空气源热泵热水机, 授权号:ZL 201410802832.5.
[9]平板式太阳能热水器装置, 授权号:ZL201210063648.4.

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