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天津大学环境科学与工程学院导师教师师资介绍简介-由世俊

本站小编 Free考研考试/2020-09-13


基本信息
学历:博士
职称:教授
专业:
系别:建筑环境与设备工程系
电子邮箱:yousj@tju.edu.cn
电话:
通讯地址:
主要研究方向

主要研究方向:
1.智能热网仿真与调控理论研究;
2.新型高效供暖、空调制冷、热泵技术与装备研发;
3.太阳能热利用技术;
4.能源系统优化与调控技术研究;
5.地铁环控与建筑节能。
主持过国家自然科学基金、国家“十一五”、“十二五”、“十三五”项目子课题、天津市重大和重点项目及多项企业合作项目,获得三次省部级科学技术进步三等奖。申请专利20余项,发表论文近300篇,其中,SCI论文60余篇。




教育及工作经历
主要学习和工作经历:
2003.8 天津大学工程热物理专业,获博士学位
1985.4 天津大学热能工程专业,获硕士学位
1976.10 天津大学供热供燃气通风空调工程专业毕业
1976.11-1982.1天津大学土木工程系,教师
1985.4-现在 天津大学环境学院建筑环境与能源应用工程系,教师(1976.10-1977.10香港理工大学,访问研究)
主要学术兼职
社会兼职:
天津市制冷学会理事长
暖通空调产业技术创新联盟副理事长
中国制冷学会空调热泵专业委员会副主任委员
中国制冷学会理事
中国可再生能源学会理事
中国城镇供热协会技术委员会委员
《暖通空调》杂志编委
中国制冷学会学术工作委员会委员
中国制冷学会继续教育工作委员会委员
教学经历
主讲本科生课程选修课《热泵技术》16学时,《吸收式制冷》16 学时,《建筑环境与能源应用新动向》16学时。


在研项目
主要论文
近五年发表论文
2020年
[1]Zhenjing Wu,Shijun You,Huan Zhang,Wandong Zheng. Experimental investigation on heat transfer characteristics of staggered tube bundle heat exchanger immersed in oscillating flow[J]. International Journal of Heat and Mass Transfer,2020,148.
[2]Ruiqiao Yang,Huan Zhang,Shijun You,Wandong Zheng,Xuejing Zheng,Tianzhen Ye. Study on the thermal comfort index of solar radiation conditions in winter[J]. Building and Environment,2020,167.
[3]邵索拉,张欢,由世俊,郑万冬.带有蓄热型直接冷凝式加热板的空气源热泵系统性能研究[J/OL].化工学报:1-16[2020-06-19].
2019年
[1]Yanzhe Yu,Jie Cheng,Shijun You,Tianzhen Ye,Huan Zhang,Man Fan,Shen Wei,Shan Liu. Effect of implementing building energy efficiency labeling in China: A case study in Shanghai[J]. Energy Policy,2019,133.
[2]Huan Zhang,Lingfei Jiang,Wandong Zheng,Shijun You,Tingting Jiang,Suola Shao,Xingming Zhu. Experimental study on a novel thermal storage refrigerant-heated radiator coupled with air source heat pump heating system[J]. Building and Environment,2019,164.
[3]Yin Zhang,Huan Zhang,Wandong Zheng,Shijun You,Yaran Wang. Optimal operating conditions of a hybrid humidification-dehumidification and heat pump desalination system with multi-objective particle swarm algorithm[J]. Desalination,2019,468.
[4]Minzhang Liu,Lingfei Jiang,Huan Zhang,Xuejing Zheng,Shijun You,Shen Wei. An exploration on the applicability of heating tower heat pump and air source heat pump systems in different climatic regions[J]. Journal of Cleaner Production,2019,238.
[5]Xuejing Zheng,Rui Shi,Shijun You,Yong Han,Kaiyu Shi. Experimental study of defrosting control method based on image processing technology for air source heat pumps[J]. Sustainable Cities and Society,2019,51.
[6]Xuejing Zheng,Rui Shi,Shijun You,Yong Han,Kaiyu Shi. Experimental study of defrosting control method based on image processing technology for air source heat pumps[J]. Sustainable Cities and Society,2019,51.
[7]Zhangxiang Wu,Yaran Wang,Shijun You,Huan Zhang,Xuejing Zheng,Jin Guo,Shen Wei. Thermo-economic analysis of composite district heating substation with absorption heat pump[J]. Applied Thermal Engineering,2019.
[8]Zixu Song,Na Wang,Shijun You,Yaran Wang,Huan Zhang,Shen Wei,Xuejing Zheng,Jin Guo. Integration of geothermal water into secondary network by absorption-heat-pump-assisted district heating substations[J]. Energy & Buildings,2019,202.
[9]Xuejing Zheng,Rui Shi,Yaran Wang,Shijun You,Huan Zhang,Junbao Xia,Shen Wei. Mathematical modeling and performance analysis of an integrated solar heating and cooling system driven by parabolic trough collector and double-effect absorption chiller[J]. Energy & Buildings,2019,202.
[10]Suola Shao,Huan Zhang,Shijun You,Wandong Zheng,Lingfei Jiang. Thermal performance analysis of a new refrigerant-heated radiator coupled with air-source heat pump heating system[J]. Applied Energy,2019,247.
[11]甄钰涵,张欢,李勇刚,由世俊,郑万冬.开式横流热源塔传热传质特性分析[J].太阳能学报,2019,40(12):3493-3500.
[12]高鑫磊,由世俊,张欢,郑万冬,宋子旭,曹荣光.槽式太阳能新型腔式吸热器模拟和应用研究[J].太阳能学报,2019,40(10):2899-2904.
[13]由世俊,夏军宝,李雯青萍,张欢,高鑫磊,叶天震,郑雪晶,郑万冬.基于ORC的太阳能热电联产系统优化设计[J].暖通空调,2019,49(09):103-110.
[14]张洳铭,张欢,由世俊,马骁.多热源双螺旋管水箱换热性能研究及优化[J].暖通空调,2019,49(09):128-134.
[15]由世俊,米雷洋,王雅然,张欢,郑雪晶,郑万冬.集中供热管网的非稳态水力建模与动态响应分析[J].天津大学学报(自然科学与工程技术版),2019,52(08):849-856.
[16]王艳,高文学,杨林,郭宏伟,王启,由世俊.空气源热泵频繁除霜下供热采暖运行特性研究[J].河北工业大学学报,2019,48(02):62-68.
[17]张宁宁,由世俊.天津天诚丽筠酒店合同能源管理节能改造[J].暖通空调,2019,49(01):73-76.
2018年
[1]Yin Zhang,Chunguang Zhu,Huan Zhang,Wandong Zheng,Shijun You,Yuhan Zhen. Experimental study of a humidification-dehumidification desalination system with heat pump unit[J]. Desalination,2018,442.
[2]Hongbo Liang,Man Fan,Shijun You,Junbao Xia,Huan Zhang,Yaran Wang. An analysis of the heat loss and overheating protection of a cavity receiver with a novel movable cover for parabolic trough solar collectors[J]. Energy,2018,158.
[3]Huan Zhang,Ruiqiao Yang,Shijun You,Wandong Zheng,Xuejing Zheng,Tianzhen Ye. The CPMV index for evaluating indoor thermal comfort in buildings with solar radiation[J]. Building and Environment,2018,134.
[4]Man Fan,Hongbo Liang,Shijun You,Huan Zhang,Wandong Zheng,Junbao Xia. Heat transfer analysis of a new volumetric based receiver for parabolic trough solar collector[J]. Energy,2018,142.
[5]Na Wang,Shijun You,Yaran Wang,Huan Zhang,Qingwei Miao,Xuejing Zheng,Leiyang Mi. Hydraulic resistance identification and optimal pressure control of district heating network[J]. Energy & Buildings,2018,170.
[6]Minzhang Liu,Chunguang Zhu,Tong Cui,Huan Zhang,Wandong Zheng,Shijun You. An alternative algorithm of tunnel piston effect by replacing three-dimensional model with two-dimensional model[J]. Building and Environment,2018,128.
[7]Yaran Wang,Shijun You,Wandong Zheng,Huan Zhang,Xuejing Zheng,Qingwei Miao. State space model and robust control of plate heat exchanger for dynamic performance improvement[J]. Applied Thermal Engineering,2018,128.
[8]Man Fan,Hongbo Liang,Shijun You,Huan Zhang,Baoquan Yin,Xiaoting Wu. Applicability analysis of the solar heating system with parabolic trough solar collectors in different regions of China[J]. Applied Energy,2018,221.
[9]Hongbo Liang,Chunguang Zhu,Man Fan,Shijun You,Huan Zhang,Junbao Xia. Study on the thermal performance of a novel cavity receiver for parabolic trough solar collectors[J]. Applied Energy,2018,222.
[10]Han Li,Shijun You,Huan Zhang,Wandong Zheng,Lanjun Zou. Investigating the environmental quality deterioration and human health hazard caused by heating emissions[J]. Science of the Total Environment,2018,628-629.
[11]Huan Zhang,Xintong Ma,Shijun You,Yaran Wang,Xuejing Zheng,Tianzhen Ye,Wandong Zheng,Shen Wei. Mathematical modeling and performance analysis of a solar air collector with slit-perforated corrugated plate[J]. Solar Energy,2018,167.
[12]Han Li,Shijun You,Huan Zhang,Wandong Zheng,Wai-ling Lee,Tianzhen Ye,Lanjun Zou. Analyzing the impact of heating emissions on air quality index based on principal component regression[J]. Journal of Cleaner Production,2018,171.
[13]Hongbo Liang,Man Fan,Shijun You,Huan Zhang,Wandong Zheng. Model development and performance analysis of the nanofluid-based direct absorption parabolic trough collectors[J]. Journal of Cleaner Production,2018,202.
[14]Huan Zhang,Dazhen Yin,Shijun You,Wandong Zheng,Bojia Li,Xinyu Zhang. Numerical and Experimental Investigation on the Heat and Mass Transfer of Falling Film and Droplet Regimes in Horizontal Tubes LiBr-H 2 O Absorber[J]. Applied Thermal Engineering,2018.
[15]Man Fan,Shijun You,Junbao Xia,Wandong Zheng,Huan Zhang,Hongbo Liang,Xianli Li,Bojia Li. An optimized Monte Carlo ray tracing optical simulation model and its applications to line-focus concentrating solar collectors[J]. Applied Energy,2018,225.
[16]王富全,庞卓,田刚,张春尧,杨海霞,由世俊,王娜,王雅然,高冲,赵岩,康益军,刘兴原,董卫平.吸收式热泵回收燃气锅炉烟气余热技术[J].煤气与热力,2018,38(12):1-4+35.
[17]杨林,张欢,由世俊,陈志炜,王启,高文学.太阳能燃气互补供热系统实验研究[J].太阳能学报,2018,39(08):2260-2266.
[18]缪仁豪,由世俊,张欢,高帅.海岛生活舱风光柴互补发电系统优化设计[J].太阳能学报,2018,39(08):2147-2154.
[19]王艳,高文学,王启,杨林,周伟业,由世俊.空气源热泵联合太阳能供暖系统的能效评价[J].煤气与热力,2018,38(07):14-16.
[20]葛宇磊,张欢,由世俊,郑万冬.开式逆流能源塔传热传质特性分析[J].太阳能学报,2018,39(06):1581-1587.
[21]杨婧,张欢,由世俊,郑万冬.不锈钢波纹管地板辐射采暖热工性能研究[J].太阳能学报,2018,39(05):1220-1226.
[22]由世俊,杜晓羽,张欢,黄钢,米雷洋.两种非对称翼风力机性能的试验研究[J].可再生能源,2018,36(02):290-295.
2017年
[1] Yaran Wang,Shijun You,Huan Zhang,Xuejing Zheng,Shen Wei,Qingwei Miao,Wandong Zheng. Operation stability analysis of district heating substation from the control perspective[J]. Energy & Buildings,2017.
[2] Chenxiao Zheng,Hongbo Liang,Shijun You,Wandong Zheng,Zeqin Liu. Numerical Simulation and Experimental Study of Comfort Air Conditioning Influenced by Bottom-supply and Stratum Ventilation Modes[J]. Energy Procedia,2017,105.
[3] Yaran Wang,Shijun You,Huan Zhang,Xuejing Zheng,Wandong Zheng,Qingwei Miao,Gang Lu. Thermal transient prediction of district heating pipeline: optimal selection of the time and spatial steps for fast and accurate calculation[J]. Applied Energy,2017.
[4] Chenxiao Zheng,Shijun You,Huan Zhang,Wandong Zheng,Xuejing Zheng,Tianzheng Ye,Zeqin Liu. Comparison of air-conditioning systems with bottom-supply and side-supply modes in a typical office room[J]. Applied Energy,2017.
[5] Wandong Zheng,Huan Zhang,Shijun You,Yindan Fu,Xuejing Zheng. Thermal performance analysis of a metal corrugated packing solar air collector in cold regions[J]. Applied Energy,2017,203.
[6]Shijun You,Wenqingping Li,Tianzhen Ye,Fan Hu,Wandong Zheng. Study on moisture condensation on the interior surface of buildings in high humidity climate[J]. Building and Environment,2017,125.
[7]Hongbo Liang,Man Fan,Shijun You,Wandong Zheng,Huan Zhang,Tianzhen Ye,Xuejing Zheng. A Monte Carlo method and finite volume method coupled optical simulation method for parabolic trough solar collectors[J]. Applied Energy,2017,201.
[8]Han Li,Shijun You,Huan Zhang,Wandong Zheng,Xuejing Zheng,Jie Jia,Tianzhen Ye,Lanjun Zou. Modelling of AQI related to building space heating energy demand based on big data analytics[J]. Applied Energy,2017,203.
[9]Yaran Wang,Shijun You,Huan Zhang,Wandong Zheng,Xuejing Zheng,Qingwei Miao. Hydraulic performance optimization of meshed district heating network with multiple heat sources[J]. Energy,2017,126.
[10]Man Fan,Hongbo Liang,Shijun You,Huan Zhang,Baoquan Yin,Xiaoting Wu. Performance analysis of a solar heating system with the absorption heat pump and oil/water heat exchanger[J]. Energy Procedia,2017,142.
[11]Huan Zhang,Chunguang Zhu,Minzhang Liu,Wandong Zheng,Shijun You,Bojia Li,Peng Xue. Mathematical modeling and sensitive analysis of the train-induced unsteady airflow in subway tunnel[J]. Journal of Wind Engineering & Industrial Aerodynamics,2017,171.
[12]Huan Zhang,Tong Cui,Minzhang Liu,Wandong Zheng,Chunguang Zhu,Shijun You,Yazhuo Zhang. Energy performance investigation of an innovative environmental control system in subway station[J]. Building and Environment,2017,126.
[13]Yaran Wang,Shijun You,Xuejing Zheng,Huan Zhang. Accurate model reduction and control of radiator for performance enhancement of room heating system[J]. Energy & Buildings,2017,138.
[14]Wandong Zheng,Huan Zhang,Shijun You,Tianzhen Ye. Heat transfer performance of a seawater-source heat pump with radiant floor heating system in cold areas of China[J]. Science and Technology for the Built Environment,2017,23(3).
[15]王宇,由世俊,孙颖楷,李志强.夏热冬暖地区空气源热泵与太阳能复合热水系统试验研究[J].流体机械,2017,45(12):58-62.
[16]李勇刚,张梦婷,由世俊,郑万冬.太阳能、热泵、燃气联合供热系统能效测试[J].煤气与热力,2017,37(11):18-23.
[17]王宇,由世俊,孙颖楷,李志强.空气源热泵热水器性能测试及运行评价研究[J].流体机械,2017,45(10):77-82.
[18]王宇,由世俊,孙颖楷,李志强.寒冷地区空气源热泵与太阳能复合供热系统性能测试分析[J].制冷与空调,2017,17(10):80-86.
[19]李营,由世俊,张欢,薛怀坤,何青.冷却塔复合式地源热泵系统的运行策略研究[J].太阳能学报,2017,38(06):1680-1684.
[20]张欢,陈志炜,由世俊,吴晋兰.带金属导热膜的新型地板辐射采暖热性能研究[J].太阳能学报,2017,38(06):1685-1691.
2016年
[1]Wandong Zheng,Huan Zhang,Shijun You,Tianzhen Ye. The Thermal Characteristics of a Helical Coil Heat Exchanger for Seawater-source Heat Pump in Cold Winter[J]. Procedia Engineering,2016,146.
[2]Wandong Zheng,Bojia Li,Huan Zhang,Shijun You,Ying Li,Tianzhen Ye. Thermal characteristics of a glazed transpired solar collector with perforating corrugated plate in cold regions[J]. Energy,2016,109.
[3]Chunyu Zhao,Shijun You,Lili Wei,Hao Gao,Wei Yu. Theoretical and experimental study of the heat transfer inside a horizontal evacuated tube[J]. Solar Energy,2016,132.
[4]Wandong Zheng,Lin Yang,Huan Zhang,Shijun You,Chunguang Zhu. Numerical and experimental investigation on a new type of compound parabolic concentrator solar collector[J]. Energy Conversion and Management,2016,129.
[5]Huan Zhang,Chunguang Zhu,Wandong Zheng,Shijun You,Tianzhen Ye,Peng Xue. Experimental and numerical investigation of braking energy on thermal environment of underground subway station in China's northern severe cold regions[J]. Energy,2016,116.
[6]Wandong Zheng,Jing Yang,Huan Zhang,Shijun You. Simulation and optimization of steam operated double effect water-LiBr absorption heat pump[J]. Applied Thermal Engineering,2016,109.
[7]Wandong Zheng,Tianzhen Ye,Shijun You,Huan Zhang. The thermal performance of seawater-source heat pump systems in areas of severe cold during winter[J]. Energy Conversion and Management,2015,90.
[8]Xinyu Zhang,Shijun You,Hongchuan Ge,Yan Gao,Wei Xu,Min Wang,Tao He,Xuejing Zheng. Thermal performance of direct-flow coaxial evacuated-tube solar collectors with and without a heat shield[J]. Energy Conversion and Management,2014,84.
[9]Chunyu Zhao,Shijun You,Lili Wei,Hao Gao,Wei Yu. Theoretical and experimental study of the heat transfer inside a horizontal evacuated tube[J]. Solar Energy,2016,132.
[10]Wandong Zheng,Huan Zhang,Shijun You,Tianzhen Ye. Numerical and experimental investigation of a helical coil heat exchanger for seawater-source heat pump in cold region[J]. International Journal of Heat and Mass Transfer,2016,96.
[11]Hongbo Liang,Chenxiao Zheng,Wandong Zheng,Shijun You,Huan Zhang. Analysis of Annual Performance of a Parabolic Trough Solar Collector[J]. Energy Procedia,2017,105.
[12]Wandong Zheng,Bojia Li,Huan Zhang,Shijun You,Ying Li,Tianzhen Ye. Thermal characteristics of a glazed transpired solar collector with perforating corrugated plate in cold regions[J]. Energy,2016,109.
[13]Chunyu Zhao,Shijun You,Chunying Zhu,Wei Yu. Experimental investigation on the thermal performance of heat storage walls coupled with active solar systems[J]. Heat and Mass Transfer,2016,52(12).
[14]Wandong Zheng,Huan Zhang,Shijun You,Tianzhen Ye. Numerical and experimental investigation of a helical coil heat exchanger for seawater-source heat pump in cold region[J]. International Journal of Heat and Mass Transfer,2016,96.
[15]Hongbo Liang,Shijun You,Huan Zhang. Comparison of three optical models and analysis of geometric parameters for parabolic trough solar collectors[J]. Energy,2016,96.
[16]Chunyu Zhao,Shijun You,Hao Gao,Wei Yu. Energy conversion performance investigations for a horizontal evacuated tubular collector[J]. International Journal of Numerical Methods for Heat & Fluid Flow,2016,26(1).
[17]苗庆伟,由世俊,张欢,李博佳,梁宏博.一种冲孔波纹板渗透型空气集热器性能优化研究[J].太阳能学报,2016,37(10):2554-2561.
[18]张昕宇,徐伟,王敏,何涛,李博佳,孙连营,邓昱,由世俊,高岩.全玻璃真空管型家用太阳能热水器热性能影响因素试验研究[J].建筑科学,2016,32(08):87-92.
[19]周传淞,由世俊,张欢.地热与单效燃气吸收式热泵联合供暖的供热调节方式[J].供热制冷,2016(05):22-26.
[20]张杨竣,逯红梅,王启,由世俊,高文学.天然气法向火焰传播速度仿真与实验测试[J].煤气与热力,2016,36(05):17-22+33.
[21]王津利,马骁,由世俊.海水源热泵与干式地板辐射采暖系统经济性分析[J].科技展望,2016,26(13):127-129.
[22]吴晋兰,由世俊,张欢,杨建,孙鹏.抛物面槽式太阳集热器的性能研究[J].太阳能学报,2016,37(03):794-800.
[23]高帅,张欢,王津利,由世俊,谢强松.老工业区原有燃煤锅炉改造再利用评价方法[J].暖通空调,2016,46(03):33-37+13.
[24]张昕宇,由世俊,葛洪川,高岩,徐伟,何涛,郑雪晶,邓昱.带遮热板的热管式真空管集热器中温性能的理论与实验研究[J].太阳能学报,2016,37(01):116-121.
2015年
[1]Hongbo Liang,Shijun You,Huan Zhang. Comparison of different heat transfer models for parabolic trough solar collectors[J]. Applied Energy,2015,148.
[2]Wandong Zheng,Tianzhen Ye,Shijun You,Huan Zhang. The thermal performance of seawater-source heat pump systems in areas of severe cold during winter[J]. Energy Conversion and Management,2015,90.
[3]张琪,张欢,由世俊,董超,薛怀坤.老工业区燃气管网改造再利用方案评价方法[J].煤气与热力,2015,35(11):5-11.
[4]张欢,李金洋,王津利,由世俊,邵鑫彤.办公建筑围护结构节能措施对空调能耗的影响及经济性分析[J].暖通空调,2015,45(11):5-9.
[5]张琪,张欢,由世俊.基于实际工程的集中供热系统现代化改造能耗分析研究[J].供热制冷,2015(10):22-26.
[6]李勇刚,梁宏博,由世俊.天津某自行车馆空调设计分析[J].供热制冷,2015(09):66-68.
[7]由世俊,冯彬,王津利,张欢,刘树.避难硐室蓄冰板应急释冷方案的数值模拟[J].天津大学学报(自然科学与工程技术版),2016,49(08):841-847.
[8]谢强松,张欢,尹奎超,由世俊.两种站台门系统对天津地铁侧式站台冬季内部环境的影响[J].暖通空调,2015,45(07):33-36.
[9]韩刚,由世俊,张欢.基于负理想点的燃气冷热电联产系统优化方法[J].天津大学学报(自然科学与工程技术版),2016,49(10):1106-1111.
[10]张琪,张欢,由世俊,邹亚平.基于CFD的燃气辐射供暖系统运行优化[J].暖通空调,2015,45(06):64-69+100.
[11]周传淞,由世俊,张志红,张欢,杨紫维.供热热源改造综合评价方法[J].暖通空调,2015,45(04):52-57+94.
[12]孙鹏,由世俊,张欢,李旭.三联供系统中综合性能评价方法的应用研究[J].热能动力工程,2015,30(02):187-192+315.

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