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陈琼

 发布时间:2022-06-20

姓    名:陈琼

性    别:

系    所:建筑环境与能源应用工程系

学    历:博士

学    位:工学博士

电    话:18171289642

邮    箱:cq505@whut.edu.cn

主要研究方向建筑节能、建筑设备自动化、模型预测控制(MPC)、热力系统建模及仿真

教育和工作经历:

2016.09-2021.09  重庆大学,博士

2019.06-2020.07  美国劳伦斯伯克利国家实验室,博士联培

2012.09-2016.07  长安大学,本科

个人简介:

陈琼,女,博士。2016 - 2021年在重庆大学直接攻读博士学位,主要从事有关夏热冬冷地区高效辐射供暖系统控制优化、三维状态空间模型建模与仿真、高阶复杂传热模型降维优化等理论与应用研究,获得工学博士学位。攻读博士期间获得国家留学基金委资助,曾赴美国劳伦斯伯克利国家实验室进行为期一年的联合培养。先后参与了“十三五”重点研发计划、国际合作计划项目、国家重点研发计划项目等,发表SCI论文9篇。

代表性论文:

  1. Qiong Chen, Nan Li*; Thermal response time prediction-based control strategy for radiant floor heating system based on Gaussian process regression. Energy and Buildings, 2022, 263: 112044.

  2. Qiong Chen, Nan Li*; Model predictive control for energy-efficient optimization of radiant ceiling cooling systems. Building and Environment, 2021, 205: 108272.

  3. Qiong Chen, Nan Li*; Fast simulation and high-fidelity reduced-order model of the multi-zone radiant floor system for efficient application to model predictive control. Energy and Buildings, 2021, 248: 111210.

  4. Qiong Chen, Nan Li*, Wei Feng*; Model predictive control optimization for rapid response and energy efficiency based on the state-space model of a radiant floor heating system. Energy and Buildings, 2021, 238: 110832.

  5. Nan Li, Qiong Chen*; Study on dynamic thermal performance and optimization of hybrid systems with capillary mat cooling and displacement ventilation. International Journal of Refrigeration, 2020, 110: 196-207.

  6. Nan Li, Qiong Chen*; Experimental study on heat transfer characteristics of interior walls under partial-space heating mode in hot summer and cold winter zone in China. Applied Thermal Engineering, 2019, 162: 114264.

  7. Qiong Chen, Wenhan Wei, Nan Li*; Techno-economic control strategy optimization for water-source heat pump coupled with ice storage district cooling system. International Journal of Refrigeration, 2022, 138: 148-158.

  8. Qiong Chen, Nan Li*, Ketong Li; Performance evaluation of different types of building partitions in decentralized heating areas based on dynamic simulation. International Journal of Green Energy, 2021, 1-15.

  9. Yu Zhao, Nan Li*, Chenyang Tao, Qiong Chen, Mengqi Jiang; A comparative study on energy performance assessment for HVAC systems in high-tech fabs. Journal of Building Engineering, 2021, 39: 102188.



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