代表性科研项目: 1. 国家自然科学基金面上项目,52478092,地铁能量隧道多源多汇多频热迁移机理与介入式热污染治理评价方法研究,2025.1.1-2029.12.31,48万元; 2. 青岛市科技惠民计划项目,24-1-8-cspz-1-nsh,地铁隧道岩体地热能及废热综合利用关键技术研究及示范,2024-03至2026-03,120万元; 3. 青岛地铁八号线有限公司,青岛地铁盾构法隧道衬砌换热系统设计及应用研究,2024-01至2025-12,125万元; 4. 山东自然科学基金面上项目,ZR2022ME035,基于操作温度的室内热环境控制及节能理论研究,2023-01至2025-12,10万元; 5. 国家自然科学基金项目青年基金,52108079,基于毛细管前端换热器的地铁源热泵系统多频响应协同设计与节能运行机理研究,2022-01至2024-12,30万元; 6. 山东省自然科学基金青年项目,ZR2020QE224,寒冷地区被动式超低能耗建筑空气渗透量预测模型研究,2021-01至2023-12,15万元; 7. 青岛市自主创新重大专项,21-1-2-3-hy,海水源热泵耦合调峰蓄能系统关键技术研究及应用示范,2021-01至2023-01,300万元; 8. 青岛海尔智能技术研发有限公司,家用烹饪产生的油烟成分分析及基础研究,2020-10至2021-02,19.7万元; 9. 山东省重点研发计划项目,2019GGX103003,地铁新能源综合利用关键技术及示范工程研究,2019-08至2021-08,499万元; 10. 青岛理工新能源科技有限公司,列车人工气候室实验台数据采集处理系统研究,2019-01至2020-01,12万元; 11. 青岛市民生科技计划项目,18-6-1-105-nsh,海洋低品味热能资源化利用技术研究及应用,2018-09至2020-09,100万元; 12. 青岛市科技惠民计划项目,18-6-1-104-nsh,低温空气源热泵供暖系统适用性技术研究及应用,2018-09至2020-09,100万元; 13. 国家“十三五”国家重点研发计划项目子课题,2017YFC0702600,近零能耗建筑技术体系及关键技术开发,2017.6至2021.6,30万元; 14. 科技部“十二五”国家科技支撑计划子课题,2014BAJ01B04,基于热泵的建筑复合能源系统研究与示范,2014-01至2016-12,420万元; 15. 国家自然科学基金项目面上基金,51178074,火炕及农村建筑集成采暖系统热工性能及传热模型研究,2011-01至2015-12,60万元。 代表性论文: 1. Yongming Ji; Shouheng Shen; Xinru Wang; Hui Zhang; Haoyu Qi; Songtao Hu. Impact of groundwater seepage on thermal performance of capillary heat exchangers in subway tunnel lining. Renewable Energy, 2024, 227:120551. (TOP SCI 1区) 2. Yongming Ji; Chengfan Ji; Jiachen Jiao; Zhenfeng Yin; Songtao Hu. Effect of laying length on dynamic heat transfer characteristics of capillary heat exchangers in urban subway tunnel lining. Applied Thermal Engineering, 2024, 238: 122210. (SCI 2区) 3. 焦嘉琛; 季永明; 张凤君; 吉程帆; 尹振峰; 胡松涛. 圆形隧道衬砌内毛细管换热器间歇运行的传热性能. 制冷学报,2024,45.02:53-61 (北大核心) 4. Yongming Ji; Wenze Wu; Songtao Hu. Long-term performance of a front-end capillary heat exchanger for a metro source heat pump system, Applied Energy, 2023, 335: 120772. (TOP SCI 1区) 5. Yongming Ji; Wenqiang Wang; Yujing Fan; Songtao Hu. Coupling effect between tunnel lining heat exchanger and subway thermal environment. Renewable Energy, 2023, 217: 119165. (TOP SCI 1区) 6. Yongming Ji; Zhenfeng Yin; Jiachen Jiao; Songtao Hu. Long-term performance of a subway source heat pump system with two types of front-end heat exchangers, Renewable Energy. 2023, 210: 640-655. (TOP SCI 1区) 7. Yongming Ji; Jiachen Jiao; Zhenfeng Yin; Chengfan Ji; Songtao Hu. Rapid performance prediction model for capillary heat exchangers in subway tunnel linings. Applied Thermal Energineering, 2023, 232: 120967. (SCI 2区) 8. Yongming Ji, Wenze Wu, Haoyu Qi, et al. Heat transfer performance analysis of front-end capillary heat exchanger of a subway source heat pump system. Energy,2022,246.(TOP SCI 1区) 9. Yongming Ji; Wenze Wu; Wenqiang Wang; Yujing Fan; Songtao Hu. Heat Transfer Model of the Front-end Capillary Heat Exchanger of a Subway Source Heat Pump System. Energy and Buildings, 2021, 255: 111665. (SCI 2区) 10. Ji Yongming*; Duanmu Lin, Liu Y, et al. Air infiltration rate of typical zones of public buildings under natural conditions. Sustainable Cities and Society, 2020,61: 1-10. (TOP SCI 1区) 11. 季永明;端木琳. 某近零能耗建筑空气渗透量数值分析. 建筑科学, 2019, 35(10):29-35.(中文核心) 12. Yongming Ji; Lin Duanmu. Airtightness field tests of residential buildings in Dalian, China. Building and Environment, 2017, 119(6): 20-30. (TOP SCI 1区) 13. Yongming Ji; Lin Duanmu; Xiangli Li. Building air leakage analysis for individual apartments in North China, Building and Environment, 2017, 122: 105-115. (TOP SCI 1区) 代表性专利: 1. 季永明; 吴汶泽; 胡松涛; 佟振; 童力, 一种处理地下空间热污染的设备模块、系统及方法,2023-2-3至2040-11-23,中国, CN202011321853.7. 2. 季永明; 胡松涛; 刘国丹; 佟振; 童力, 一种建筑空气渗透部位快速检测方法及系统, 2021-02-05, 中国, ZL 201910390625.6. 3. 季永明; 吴汶泽; 胡松涛; 刘国丹; 佟振; 童力, 一种双源地铁源热泵系统、施工方法及控制方法,2023-4-7至2041-8-3,中国, CN202110885718.3. 4. 季永明; 胡松涛; 郑进福, 一种自适应闭合和空间气密性调节装置及建筑系统,2023-2-13, ZL 202111073586.0. 5. 季永明; 吴汶泽; 胡松涛; 刘国丹; 佟振; 童力, 一种可切换工况的换热组件及换热器,2022-9-16,ZL 202110418147.2. 6. 季永明;闫美佳;胡松涛;刘国丹,一种主动适应性节能外墙及方法,2021-4-27,ZL 201911223038.4. 7. 季永明; 胡松涛; 佟振; 童力; 刘国丹, 一种隧道用薄壳式换热器堵塞检测系统及检测方法, 2019-09-10, 中国, CN110220546A. 8. Songtao Hu; Guodan Liu; Yongming Ji; Zhen Tong; Li Tong. Subway hybrid-energy multifunctional-end-integrated heat pump system and method, 2024-01-26, 国际, PCT/CN2020/094096. 9. Songtao Hu; Guodan Liu; Yongming Ji; Haiying Wang; Li Tong; Zhen Tong. Subway hybrid-energy multifunctional-end-integrated heat pump system and method, 2024-01-24, 国际, PCT2020116GB. 10. 胡松涛;季永明;刘国丹. 一种薄壳式换热器、地铁废热源热泵系统及方法,2022-02-17,国际,PCT201883JP. 11. Songtao Hu; Yongming Ji; Guodan Liu; Zhen Tong; Li Tong; THIN-SHELL HEAT EXCHANGER, SUBWAY WASTE HEAT SOURCE HEAT PUMP SYSTEM AND METHODS, 2018-12-29, 国际, PCT/CN2018/122944. 代表性主编标准: 1. 国家标准:《建筑物气密性测定方法(风扇压力法)》,GB/T34010. 2. 团体标准:《地铁隧道毛细管换热器应用技术规程》,T/CSPSTC X-2024. 3. 山东省工程建筑标准:《建筑气密性能检测标准(风机气压法)》,DB37/T5196-2021. 4. 团体标准:《建筑整体气密性检测及性能评价标准》,T/CECS 704-2020. 代表性软件著作权: 1. 地铁源热泵系统适应性评价软件 V1.0. |