当前位置: X-MOL首页全球导师 国内导师 › 李祥立

个人简介

教育经历 2000.92005.7哈尔滨工业大学供热通风及空调工程博士 1998.92000.7哈尔滨工业大学工程热物理硕士 1992.91996.7南京理工大学供热通风及空调工程学士 工作经历 2005.7至今 大连理工大学 2011.92012.9 科罗拉多大学博得分校建筑环境与能源系访问学者 1996.71998.7 中国北方工业安装公司技术员、助工

研究领域

太阳能-地源热泵复合供热、供冷技术 近零能耗建筑技术 人体热舒适研究 分布式建筑能源系统与优化 复合相变储热技术

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

李素芬.基于不同动态负荷的太阳能辅助地源热泵系统供暖特性研究[J],大连理工大学学报,2022,3:243-251 舒海文.Energy-saving judgment of electric-driven seawater source heat pump district heating system ove...[J],ENERGY AND BUILDINGS,2022,42(6):889-895 Dai, Lanhua.Experimental performance analysis of a solar assisted ground source heat pump system under diff...[J],APPLIED THERMAL ENGINEERING,2022,75(,SI):325-333 张若瑜.热电厂烟气和循环冷却水余热利用技术途径[J],煤气与热力,2022,39(3):1-5,11 Lv, Sihao.Effects of momentum transfer on particle dispersions of dense gas-particle two-phase turbulent ...[J],ADVANCED POWDER TECHNOLOGY,2022,25(1):274-280 刘阳.扰流柱几何构形对涡轮叶片尾缘换热影响的实验研究[J],兵工学报,2022,9:1129-1132 李祥立.Research on air infiltration predictive models for residential building at different pressure[J],Building Simulation,2022,14(3):737-748 李祥立.Research on U-tube heat exchanger with shape-stabilized phase change backfill material[A],8th International Cold Climate HVAC Conference,2022,146:639-646 端木琳.Simplified method to determine the collector area of solar-assisted ground-source heat pump syste...[J],Procedia engineering,2022,205(1):1138-1145 Tong, Cang.Sensitivity analysis of the ground-coupled heat pump system with horizontal ground heat exchang...[J],Building Simulation,2022,12(4):573-584 张若瑜.燃煤热电厂余热回收利用技术综述[J],煤气与热力,2022 林琦.管网质调节运行时散热器的动态热过程分析[J],建筑热能通风空调,2013,6:14-17 舒海文.课件参与式教学在暖通空调课程中的探索[J],高等建筑教育,2011,20(1):86-89 王振江.公共建筑围护结构冷负荷的简单估算方法[J],建筑热能通风空调,2010,29(6):64-67,23 李祥立.凝结水网经济比摩阻的计算[J],煤气与热力,2006,26(3):59-62 舒海文."做中学"理念在暖通空调课程教学中的探索与实践[J],高等建筑教育,2016,6:95-99 端木琳.中国各地区人体热舒适与室内热环境参数的关系[J],建筑科学,2017,6:115-122 孙星维.不同温度下立式塔扇吹风时人体热反应变化[J],建筑热能通风空调,2020 端木琳.Establishment of human thermoregulation model and simplified solution in non-uniform environmen...[A],1st International Conference on Building Energy and Environment (COBEE 2008),2008,625-631 舒海文.Factor Analysis for Evaluating Energy- Saving Potential of Electric-Driven Seawater Source Heat P...[A],Lecture Notes in Electrical Engineering,2013,262(2):93-101 李祥立.一种热网络方程计算方法的改进[J],大连理工大学学报,2012,52(2):239-245 李祥立.Experimental Study on the Corrosion of Prefabricated Directly-Buried Insulating Pipe Based on the...[A],The 2nd International Conference of Building Energy and Environment,2012 端木琳.Establishment of Human Thermoregulation Model and Simplified Solution in Non-uniform Enviroment[A],The First International Conference on Building Energy and Environment. Dalian, 2008,2008,1:636-642 舒海文.Energy-saving potential of seawater-source heat pump district heating system over boiler-house ...[A],International Conference on Energy and Environment Technology (ICEET 2009),2009,1:121-+ 袁鹏丽.赤峰市某镇农村住宅不同时间尺度下生活用电量规律分析[J],大连理工大学学报,2020,60(2):165-173 刘美杉.跨季节水蓄热太阳能集中供暖工程与优化综述[J],建筑热能通风空调,2015,6:26-30,22 汪星圩.解析住宅分户计量供暖系统[J],建筑节能,2011,39(4):15-19 许红波.瞬变环境中人体热舒适的研究[J],人类工效学,2012,4:82-87 吴小舟.程教育背景下建环专业创新创业人才培养探讨[J],高等建筑教育,2021,29(6):61-66 孙冰.Outliers Detection Method for Thermal Sensation Vote and its Six Influential Factors in Field Sur...[A],2021 孙冰.大连地区冬季办公建筑人体热舒适研究[J],建筑热能通风空调,2021,40(8) 葛钊岐.模块化轻钢结构超低能耗建筑的热桥分析[J],建筑热能通风空调,2021,40(7) 李祥立.环肋式相变换热器的影响因素分析[J],建筑热能通风空调,2021,40(8) 左婷婷.严寒地区中深层双U形地埋管热泵系统的应用分析[J],暖通空调,2021,51(12) 李祥立.Research on air infiltration predictive models for residential building at different pressure[J],BUILDING SIMULATION,2021,14(3):737-748 刘阳.Investigation on ultralight particle dispersions in dense two-phase flow using a kinetic friction...[J],CASE STUDIES IN THERMAL ENGINEERING,2021 仝仓.Prediction of the temperature profiles for shallow ground in cold region and cold winter hot summ...[J],Energy and Buildings,2021 张若瑜.The application of the TES technology in CHP heating system with Chinese demand profiles—A techn...[A],2021 孙星维.不同温度下立式塔扇吹风时人体热反应变化[J],建筑热能通风空调,2021 仝仓.大连某超低能耗别墅水平地埋管地源热泵系统应用[J],暖通空调,2021 李祥立.Analysis on the Thermal Balance and Operational Parameters for the District Heating System with...[J],ENERGIES,2021,13(23) 王哲.非跟踪非对称复合平面型太阳能聚光器设计与光学性能模拟[J],太阳能学报,2021 李祥立.Research on air infiltration predictive models for residential building[J],building simulation,2020 Wang, Haichao,Lin, Duanmu,Wu, Xiaozhou,Li, Xiangli,Lahdelma, Risto.Operational strategies and pumping energy saving potential of the combined district heating sys...[J],SCIENCE AND TECHNOLOGY FOR THE BUILT ENVIRONMENT,2020,26(9):1216-1230 袁鹏丽,端木琳,王宗山,李祥立,舒海文.赤峰市某镇农村住宅不同时间尺度下生活用电量规律分析[J],大连理工大学学报,2020,60(2):165-173 Li, Hongwei,Li, Xiangli.Editorial[J],Building Simulation,2019,12(4):549 Li, Hongwei,Li, Xiangli.Topical Issue on Urban and Rural Energy and Environment[J],BUILDING SIMULATION,2019,12(4):549-549 Li, Xiangli,Li, Guohui.An improved image procession algorithm for bubble flow characteristics in gas-liquid reactor[J],ASIA-PACIFIC JOURNAL OF CHEMICAL ENGINEERING,2019,14(3) Ruoyu Zhang, Haichao Wang,Lin Duanmu, Xiangli Li.Circulating water waste heat recovery and thermoelectric integrated peak-shaving technology for c...[A],2019 刘哲毅,王海超,李祥立,端木琳,Risto Lahdelma,Ilkka Haavisto .基于直接接触式换热的燃煤烟气余热回收机理及应用研究[A],2019 刘哲毅,王海超,李祥立,端木琳.基于直接接触式换热的燃煤烟气余热回收机理及应用研究[J],环境与能源,2018 张若瑜,王海超,李祥立,端木琳.燃煤热电厂余热回收利用技术综述[J],煤气与热力,2019 仝仓,李祥立,端木琳.多管式相变蓄热器换热影响因素研究[J],太阳能学报,2019,40(08):2299-2305 端木琳,孙星维,李祥立,王子涵,翟志强.中国各地区人体热舒适与室内热环境参数的关系(续)[J],建筑科学,2018,34(12):114-120 周文倩,李祥立,王群鹤.基于EnergyPlus的被动式超低能耗建筑能耗模拟分析[J],建筑热能通风空调,2018,37(11):59-62 仝仓,李祥立,端木琳.聚乙二醇/二氧化硅/膨胀石墨相变储能材料的制备与性能研究[J],区域供热,2018,3:100-104 端木琳,袁鹏丽,王宗山,李祥立,舒海文.建筑环境与能源应用工程专业自主研究型实验平台建设[J],实验技术与管理,2018,35(5):17-20 Li, Guohui,Li, Xiangli.Modeling and simulation of particle dispersion in dense particle-laden flow[J],ASIA-PACIFIC JOURNAL OF CHEMICAL ENGINEERING,2018,13(3) 王海超,端木琳,吴小舟,李祥立,王宗山,Risto Lahdelma.带有蓄热的区域混合可再生能源供热系统及优化[J],区域供热,2018,2:51-57 Wang, Haichao,Duanmu, Lin,Lahdelma, Risto,Li, Xiangli.A fuzzy-grey multicriteria decision making model for district heating system[J],APPLIED THERMAL ENGINEERING,2018,128:1051-1061

推荐链接
down
wechat
bug