
- 姓名: 常哲韶
- 性别: 男
- 职称: 副研究员
- 职务:
- 学历: 博士研究生
- 电话:
- 传真:
- 电子邮件: changzheshao@mail.iee.ac.cn
- 所属部门: 多学科交叉研究中心
- 通讯地址:
2007/09—2011/07 哈尔滨工程大学获得工学学士
2015/09—2016/10 法国国家科研中心PROMES实验室公派联合培养
2011/09—2017/07 中国科学院大学获得工学博士
2017/07—2022/12 中国科学院电工研究所助理研究员
2023/01—今 中国科学院电工研究所副研究员
简 历:
社会任职:
1.聚光太阳能利用及清洁燃料制备;
2.储能系统能质匹配及调控;
3.多能互补综合能源系统;
研究方向:
【1】太阳能反应器内CO2/H2O共气化中的参与性介质辐射与气固旋转射流耦合机理研究,国家自然科学基金,25万元,2019-2021, 项目负责人
【2】基于乌兹别克斯坦大太阳炉的太阳能热化学循环制氢关键技术研究,国家重点研发计划国际合作项目, 2021-2023,课题负责人
【3】测试及模拟研究, 横向委托, 210万元,2019-2022,项目负责人
【4】储热系统研究,国家任务,2020-2024,课题负责人
【5】高通量聚光太阳能热化学转化储能理论与方法,国家重点研发计划,2021-2026,课题骨干
承担科研项目情况:
[1] Zheshao Chang, Xin Li, et.al, Quasi-analytical study of dynamic performance of the thermocline heat storage system under time-varying inlet flow and temperature environment.Solar Energy, 2022, 244, 264–278.
[2] Jiani Wu, Xin Li, Qiangqiang zhang, Zheshao Chang*, Chunlong Zhuang, Thermal performance analysis and optimization of cascaded packed bed latent heat storage tank, Journal of Renewable and Sustainable Energy, 2022, 14, 064101.
[3] DianZhong#,ZheshaoChang#,KuoZeng,et.al, Solar pyrolysis of biomass - part II: The physicochemical structure evolution of char,Fuel, 2023, 333,126474.
[4] Zheshao Chang, Xin Li, Quentin Falcoz, et.al, Approximate analytical characterization and multi-parametric optimization design of single-tank thermocline heat storage system, Applied Thermal Engineering, 2020, 181, 116010.
[5] Tianle Dai, Cheng Xu*, Zheshao Chang*, Yongping Yang, Experimental study of the solar-driven steam gasification of coal in an improved updraft combined drop-tube and fixed-bed reactor, Energy Conversion and Management, 2022, 259,115571.
[6] Shaomeng Dai, Zheshao Chang*, et.al, Numerical study on the directly-irradiated vortex reactor for solar CO2 coal gasification. Solar Energy, 2019, 188,573–585.
[7] Shaomeng Dai, Zheshao Chang*, et.al, Experimental study on flux mapping for a novel 84 kWe high flux solar simulator. Applied thermal Enginnering, 2019,162, 114391.
[8] Zheshao Chang, Xin Li, Chao Xu, et.al, The effect of the physical boundary conditions on the thermal performance of molten salt thermocline tank, Renewable Energy, 2016, 96, Part A, 190–202.
[9] Zheshao Chang, Xin Li, Chao Xu, et.al, Numerical simulation on the thermal performance of a solar molten salt cavity receiver, Renewable Energy, 2015, 69, 324-335.
[10] 常哲韶,赵东明,李鑫等,10kW高温太阳能热化学反应器及聚光器设计和数值模拟,太阳能学报, 2021, 42(10):8.