赵靖 |
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赵靖 发布时间:2021-04-28 姓名:赵靖 职称:副教授 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 办公电话: 电子邮箱:[email protected] 通讯地址:天津市津南区海河教育园区内雅观路135号天津大学北洋园校区环境学院43楼B-408 主要研究方向: 1.建筑能源系统数字化智慧运维调控技术 2.清洁低碳化采暖技术与机制 教育及工作经历: (1)2013-12至2014-12,美国劳伦斯伯克利国家实验室,访问学者 (2)2007-03 至 2010-03, 天津大学, 供热供燃气通风及空调工程, 博士 (3) 2005-09 至 2007-03, 天津大学, 供热供燃气通风及空调工程, 硕士 (4) 2001-09 至 2005-06, 天津大学, 建筑环境与设备工程, 学士 获奖情况: (1)天津市技术发明奖二等奖 (2)华夏建设科学技术奖二等奖 (3)天津大学教学成果一等奖 (4)指导学生获奖:第一届全国博士后创新创业大赛金奖第二指导教师;第四届天加杯全国学生科技竞赛优秀奖;第六届天津市大学生环境学科创新实践能力邀请赛优秀奖;2021年天津大学优秀硕士论文指导教师;2021年国家级大学生创新创业计划项目指导教师。 学术兼职: (1)中国工程建设标准化协会智慧建筑与智慧城市分会第一届理事会理事 (2)中国建筑节能协会数据中心绿色低碳专委会理事 (3)天津市建筑环境与能源重点实验室秘书处成员 (4)教育部中低温热能高效利用教育部重点实验室骨干成员 (5)天津大学-亨通校企联合研究中心副主任 (6)国际期刊 《Applied sciences》(JCR二区) 编委&特刊主编(Special Issue: Indoor Environment Quality & Thermal Comfort) 主讲课程: 暖通空调与建筑节能标准选讲(研究生)、室内给排水(本科生)、《建筑设备》(本科生) 主持科研项目(近五年): (1)科技部, 国家重点研发计划子课题, 2018YFD1100701-06, 被动式太阳能相变蓄能供暖技术研究, 2019-01 至 2022-12, 53万元 (2)国家自然科学基金项目面上项目“基于模型预测控制的空调系统前馈动态调节理论及控制方法研究”(51678398),2017-01至2020-12,61万元 (3)国家自然科学基金项目青年科学基金项目“基于气象预报的建筑动态冷热负荷预测模型研究”(51508380),2016-01至2018-12,20万元 (4)天津市自然科学基金“基于时间序列负荷预测的建筑动态热环境调控机制及方法研究”(18JCQNJC08400),2018-04至2021-03,6万元 主要论文、成果: (1) Jing Zhao; Jiayu Li; Yu Shan ; Research on a forecasted load-and time delay-based model predictive control (MPC) district energy system model, Energy and Buildings, 2021, 231: 0-110631 (2) Jing Zhao; Yahui Du ; Multi-objective optimization design for windows and shading configuration considering energy consumption and thermal comfort: A case study for office building in different climatic regions of China, Solar Energy, 2020, 206: 997-1017 (3) Zhao Jing; Li Jiayu ; Study on heat transfer delay of exposed capillary ceiling radiant panels (E-CCRP) system based on CFD method, Building and Environment, 2020, 180: 0-106982 (4) Zhao Jing; Liu Xiaojuan ; A hybrid method of dynamic cooling and heating load forecasting for office buildings based on artificial intelligence and regression analysis, Energy and Buildings, 2018, 174: 293-308 (5) 赵靖; 杜亚慧; 基于遗传算法的中央空调水系统动态调控研究, 建筑热能通风空调, 2021, 40(10): 1-6,49 (6) Zhao, Jing; Duan, Yaoqi; Liu, Xiaojuan ; Study on the policy of replacing coal-fired boilers with gas-fired boilers for central heating based on the 3E system and the TOPSIS method: A ca se in Tianjin, China, Energy, 2019, 189: 0-116206 (7) Wang Zhaoxia; Zhao Jing; Li Meng ; Analysis and optimization of carbon trading mechanism for renewable energy application in buildings, Renewable and Sustainable Energy Reviews, 2017, 73 : 435-451 (8) Liu Long; Zhu Neng; Zhao Jing; Thermal equilibrium research of solar seasonal storage system coupling with ground-source heat pump, Energy, 2016, 99: 83-90 (9) Geng Geng; Zhaoxia Wang; Jing Zhao; Neng Zhu ; Suitability assessment of building energy saving technologies for office buildings in cold areas of China based on an assessment framework, Energy Conversion and Management, 2015, 103: 650-664 (10) Long Liu; Jing Zhao; Xin Liu; Zhaoxia Wang; Energy consumption comparison analysis of high energy efficiency office buildings in typical climate zones of China and U.S. based on correct ion model, Energy, 2014, 65: 221-232 (11) Siyu Zhou; Jing Zhao; Optimum combinations of building envelop energy-saving technologies for office buildings in different climatic regions of China, Energy and Buildings, 2013, 57: 10 3-109 (12) Meng Li; Jing Zhao; Neng Zhu; Method of checking and certifying carbon trading volume of existing buildings retrofits in China, Energy Policy, 2013, 61: 1178-1187 (13) Lingling Bao; Jing Zhao; Neng Zhu ; Analysis and proposal of implementation effects of heat metering and energy efficiency retrofit of existing residential buildings in northern heating areas of China in "the 11th Five-Year Plan" period, Energy Policy, 2012, 45: 521-528 (14) Jing Zhao; Yajuan Xin; Dingding Tong ; Energy consumption quota of public buildings based on statistical analysis, Energy Policy, 2012, 43: 362-370 (15) Chenchen Chang; Jing Zhao; Neng Zhu ; Energy saving effect prediction and post evaluation of air-conditioning system in public buildings, Energy and Buildings, 2011, 43(11): 3243-3249 |
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