师资团队

Teachers' team

郑雪晶

发布时间:2024-02-29

姓名:郑雪晶

职称:教授

系别:建筑环境与设备工程系

专业:建筑环境与能源应用工程

主要研究方向:智慧供热、区域能源规划、建筑节能及可再生能源利用

电子邮箱:zhengxuejing@tju.edu.cn

通讯地址:天津大学北洋园校区43B403

教育及工作经历(从大学开始填写):

2005.03 2008.03 天津大学 供热、供燃气、通风及空调工程专业 博士

2002.09-2005.03 哈尔滨工业大学 供热、供燃气、通风及空调工程专业 硕士

1998.09-2002.09 哈尔滨工业大学 供热、供燃气、通风及空调工程专业 学士

 

获奖情况:

第二届全国暖通空调杰出青年

 

学术兼职:

天津市制冷学会,副理事长

天津市制冷学会青年科技工作者联谊会,主任委员

中国可再生能源学会热利用专委会委员

中国城市燃气协会科技委委员

《暖通空调》青委会委员

 

主讲课程:

能源科学导论、燃气工程

 

在研项目(近五年):

2022.01国家重点研发计划国际合作项目课题“复合型区域供热供冷输配系统数字孪生建模与调控研究”

2020.10 国家重点研发计划项目子课题西北村镇地热能梯级利用与高效供暖关键技术研究与示范

2020.08企业合作项目“天然气发热量直接测量实验台燃烧模拟优化研究”

2018.07国家重点研发计划项目子课题“高铁、港口及公路客运站建筑能耗评价与节能技术指标体系”

主要论文、成果:

1. Digital twin modeling for district heating network based on hydraulic resistance identification and heat load prediction, Energy, 2024

2. Thermo-hydraulic condition optimization of large-scale complex district heating network: A case study of Tianjin, Energy, 2023

3.A novel multilevel decision-making evaluation approach for the renewable energy heating systems: A case study in China, Journal of Cleaner Production, 2023

4. 港口客运站建筑能耗分析及节能潜力研究,暖通空调,2023

5. A factor analysis and self-organizing map based evaluation approach for the renewable energy heating potentials at county level: A case study in China,Renewable and Sustainable Energy Reviews,2022

6. Thermo-hydraulic coupled simulation and analysis of a real large-scale complex district heating network in Tianjin,Energy,2021

7. Leak detection of long-distance district heating pipeline: A hydraulic transient model-based approach ,Energy,2021

8. Performance analysis of three iteration-free numerical methods for fast and accurate simulation of thermal dynamics in district heating pipeline,Applied Thermal Engineering,2020

9. Hydraulic transient modeling and analysis of the district heating network, Sustainable Energy, Grids and Networks, 2020

10. Mathematical modeling and performance analysis of an integrated solar heating and cooling system driven by parabolic trough collector and double-effect absorption chiller, Energy & Buildings, 2019