翟融融
时间: 2019-11-21 来源:
姓名:翟融融
技术职务:副教授
办公地点:主楼F0705
办公电话:010-61772284
通讯地址:华北电力大学能动学院
教育背景
1997/9~2001/7 华北电力大学热能与动力工程,学士
2001/9~2004/4 华北电力大学热能工程,硕士
2004/9~2007/6 华北电力大学热能工程,博士
工作履历
2017/5~2018/5 澳大利亚CSIRO,访问学者
2014/3~至今 华北电力大学能源动力与机械工程学院,副教授
2010/7~2014/2 华北电力大学能源动力与机械工程学院,讲师
2006/9~2010/7 华北电力大学热能工程,博士
2008/11~2009/10 英国Cranfield Unversity,联合培养
2002/9~2006/7 华北电力大学建筑环境与设备工程,学士
研究方向
l 能源系统分析与优化,包括太阳能辅助燃煤发电系统集成优化、二氧化碳协同控制研究等
科研项目
1. 了解使用CCS技术降低燃煤和燃气发电厂用水量的成本,CSIRO(澳洲联邦研究机构),2019-07-05;
2. Advanced aqueous ammonia based project(先进胺溶液基础项目),CSIRO(澳洲联邦研究机构),2019-01-01;
3. Further Assessment of Emerging Capture Technologies,CSIRO(澳洲联邦研究机构),2018-02-02;
4. 槽塔结合的太阳能辅助燃煤发电系统时空协同集成机理与调控机制研究,国家基金委,2017-10-01-2021-12-31;
5. 太阳能光热发电及热利用关键技术标准研究项目太阳能高温热发电站关键技术标准研究课题,国家科技部,2017-06-30-2020-12-31;
6. 光伏光热互补系统时空协同集成机理与调控机制研究,本校,2016-04-01-2016-12-01;
7. 《大唐集团太阳能发电技术路线图》之子课题《国家太阳能发电产业发展趋势研究》技术服务合同,校企合作,2015-09-10-2015-11-30;
8. 光伏发电产业发展形势及发展原则专题报告,校企合作,2014-10-02-2015-01-17
代表性论文专著
1. Zhai R, Feng L, Yu H, et al. Optimization of Dispatching Electricity Market with Consideration of a Solar-Assisted Coal-Fired Power Generation System[J]. Energies, 2019, 12(7): 1284.
2. Zhai R, Feng L, Yu H, et al. Integration of power plants with different capacities with aqueous ammonia-based CO2 capture[J]. Energy & Fuels, 2019, 33(9): 9040-9054.
3. Zhai R, Yu H, Chen Y, et al. Integration of the 660 MW supercritical steam cycle with the NH3-based CO2 capture process: System integration mechanism and general correlation of energy penalty[J]. International Journal of Greenhouse Gas Control, 2018, 72: 117-129.
4. Zhai R, Liu H, Chen Y, et al. The daily and annual technical-economic analysis of the thermal storage PV-CSP system in two dispatch strategies[J]. Energy Conversion and Management, 2017, 154: 56-67.
5. Zhai R, Liu H, Li C, et al. Analysis of a solar-aided coal-fired power generation system based on thermo-economic structural theory[J]. Energy, 2016, 102: 375-387.
6. Zhai R, Zhao M, Li C, et al. Improved optimization study of integration strategies in solar aided coal-fired power generation system[J]. International Journal of Photoenergy, 2015, 2015.
7. Zhai R, Li C, Chen Y, et al. Life cycle assessment of solar aided coal-fired power system with and without heat storage[J]. Energy conversion and management, 2016, 111: 453-465.
8. Zhai R, Qi J, Zhu Y, et al. Novel system integrations of 1000 MW coal-fired power plant retrofitted with solar energy and CO2 capture system[J]. Applied Thermal Engineering, 2017, 125: 1133-1145.
9. Zhai R, Zhao M, Tan K, et al. Optimizing operation of a solar-aided coal-fired power system based on the solar contribution evaluation method[J]. Applied energy, 2015, 146: 328-334.
10. Zhai R, Li C, Qi J, et al. Thermodynamic analysis of CO2 capture by calcium looping process driven by coal and concentrated solar power[J]. Energy Conversion and Management, 2016, 117: 251-263.