个人简介
丁兴起,男,1998年出生,山东潍坊人。研究方向主要包括先进储能技术(液化空气储能、液化CO2储能、压缩空气储能等)、综合能源系统集成及优化、太阳能热利用等。参与国家级项目3项,发表高水平SCI/EI论文30余篇,其中以第一作者身份发表SCI论文9篇(包含8篇中科院TOP期刊),申请多项发明专利。担任《Applied Energy》、《Energy Conversion and Management》、《Energy》、《Renewable Energy》等多个学术期刊审稿人。
研究方向
(1)先进储能技术:液化空气储能、液化CO2储能、压缩空气储能;
(2)综合能源系统集成及优化。
工作及教育经历
2025.06-至今,长江大学石油工程学院,特任教授;
2023.08-2024.08,University of Pisa 工程学院 工程热物理 联合培养博士;
2020.09-2025.06,华北电力大学 能源动力与机械工程学院 能源动力 专业博士;
2016.09-2020.06,华北电力大学 能源动力与机械工程学院 能源与动力工程 工学学士。
主讲课程
研究生课程《热力设备与系统》
代表性论文
1.Emergy analysis and comprehensive sustainability investigation of a solar-aided liquid air energy storage system based on life cycle assessment. Applied Energy (1区TOP,IF=11)
2.A systematic review on liquid air energy storage system. Renewable and Sustainable Energy Reviews (1区TOP,IF=16.3)
3.Energy, exergy, and economic analyses of a new liquid air energy storage system coupled with solar heat and organic Rankine cycle. Energy Conversion and Management (1区TOP,IF=10.9)
4.Comprehensive performance investigation of a novel solar-assisted liquid air energy storage system with different operating modes in different seasons. Energy (1区TOP,IF=9.4)
5.Dynamic characteristics of a novel liquid air energy storage system coupled with solar heat and waste heat recovery. Renewable Energy (1区TOP,IF=9.1)
6.Energy, exergy, and economic analyses of a novel liquid air energy storage system with cooling, heating, power, hot water, and hydrogen cogeneration. Energy Conversion and Management (1区TOP,IF=10.9)
7.Thermodynamic analysis and economic assessment of a novel multi-generation liquid air energy storage system coupled with thermochemical energy storage and gas turbine combined cycle. Journal of Energy Storage (2区, IF=9.8)
8.Dynamic response characteristics and economic analyses of two solar-assisted multi-generation systems. Applied Thermal Engineering (2区TOP, IF=6.9)
9.Dynamic modelling and response characteristics of a solar-assisted liquid air energy storage system with poly-generation. Applied Thermal Engineering (2区TOP, IF=6.9)