发文时间:2024-01-10 撰稿人:

主要期刊论文

[35] Hui Yang*; Ying Zheng, Rui Wang, Yanzhuo Shi, Chunyuan Tian, Ru Shi, Xiaofang Tang; Experimental study on freezing-based methods in treating simulated high salt organic wastewater: Desalination and Water Treatment, doi: 10.5004/dwt.2023.29156 (2023) (SCI)

[34]Hui Yang*; Yuanfei Jiang; Rui Wang; Bingyan Dong; Mengxiao Fu; Effects of the soaking‑related parameters in a combined freezing‑based seawater desalination process: Environmental Science and Pollution Research, Doi: 10.1007/s11356-022-19601-4 (2022) (SCI)

[33] Yurou Tong; Hui Yang; Li Bao; Baoxia Guo; Yanzhuo Shi; Congcong Wang*; Analysis of Thermal Insulation Thickness for a Container House in the Yanqing Zone of the Beijing 2022 Olympic and Paralympic Winter Games: Int. J. Environ. Res. Public Health 2022, 19, 16417 (2022) (SCI)

[32] Hui Yang*; Yuanfei Jiang; Mengxiao Fu; Rui Wang; Application of low temperature soaking liquid in combined freezing-based desalination processes in summer: Water Reuse, Vol 11 No 3, 425-438 (2021)(SCI)

[31] Hui Yang*; Baoxia Guo; Yanzhuo Shi; Chen Jia; Xiaoyan Li; Fang Liu; Interior daylight environment of an elderly nursing home in Beijing: Building and Environment, 200 (2021) 107915. (SCI, EI)

[30] Hui Yang*; Mengxiao Fu; Zhonglai Zhan; Rui Wang; Yuanfei Jian; Study on combined freezing-based desalination processes with microwave treatment: Desalination, 475(2020) 114201. (SCI, EI)

[29] Yang Hui*; Zhang Haoxing; Yao Yuexin; Dong BingYan; Effect of average refrigerant temperature on freezing-based combined seawater desalination; Desalination and Water Treatment, 2019, 157: 8-17. (SCI)

[28] Hui Yang*; Zhengyang Sun; Zhonglai Zhan; Haoxing Zhang; Yuexin Yao; Effects of watering parameters in a combined seawater desalination process: Desalination, 2018, (425): 77-85. (SCI, EI)

[27] Hui Yang*; Zhonglai Zhan; Yuexin Yao; Zhengyang Sun; Influence of gravity-induced brine drainage on seawater ice desalination: Desalination, 2017, (407): 33-40. (SCI, EI)

[26] Yang Hui*; Jia Li; Yang Lixin; Numerical analysis of tunnel thermal plume control using longitudinal ventilation: Fire Safety Journal, 2009, 44: 1067-1077. (SCI, EI)

[25] 佟雨柔,杨晖,郭宝霞,史彦卓,汤小芳. 北京冬奥会集装箱房保温层经济厚度模拟分析[J].煤气与热力,2023,43(05): B07-B13.

[24] 杨晖,王锐,付梦晓,江苑菲,史彦卓,郭宝霞,李彩斌. 冷冻复合法处理高盐高有机物废水[J].环境工程学报,2021,15(02): 537-544.

[23] 杨晖,张皓兴,董冰艳,孙正阳,王锐,江苑菲.某LNG接收站冷能用作区域供冷系统冷源探讨[J].石油与天然气化工,2019,48(03):39-44+50.

[22] 张皓兴,杨晖,董冰艳.冷冻-重力脱盐与反渗透结合的海水淡化分析研究[J].工业水处理,2020,40(01):40-43.

[21] 杨晖,董冰艳,张思健.某地铁车站火灾安全疏散仿真研究[J].消防科学与技术,2019,38(03):368-371.

[20] Yang Hui; Kirill Lushin; Determination of buildings sun shields operating parameters for the purpose of durability and sustainability: VESTNIK MGSU, Proceedings of Moscow State University of Civil Engineering, 2018.09, 1154–1164.

[19] 杨晖,姚越欣,李恒松.基于冷冻过程的海水浓缩实验研究[J].水处理技术,2016,42(09):68-72.

[18] 杨晖,李恒松,张思健,姚越欣.基于冷冻过程的海水脱盐研究[J].水处理技术,2016,42(07):57-61.

[17] 杨晖,李恒松,张思健,曹诚.不同补风形式对某火车站中庭火灾安全的影响[J].中国安全生产科学技术,2015,11(12):52-58.

[16] 张思健,杨晖,曹诚,许金星.某火车站中庭不同排烟方式的效果比较[J].暖通空调,2015,45(04):70-72.

[15] 刘海静,刘芳,杨晖.带自然冷源的风冷冷水机组应用于数据中心的节能潜力分析[J].建筑节能,2015,43(04):17-20.

[14] 许金星,杨晖,刘芳,李恒松.不同一次能源冷热电联供系统及相关分析[J].煤气与热力,2015,35(01):25-31.

[13] 李恒松,杨晖,张思健.天然气分布式能源在国内发展的几点思考[J].天然气技术与经济,2015,9(01):60-62+80.

[12] 张微,王立鑫,赵祎,杨晖,侯书新.大学生公寓内PM2.5暴露水平影响因素分析[J].中国学校卫生,2017,38(07):1063-1065.

[11] 杨志鹏,刘芳,杨晖.太阳能在海水淡化中的应用[J].太阳能,2017(05):51-54+44.

[10] 张泽,王立鑫,杨晖.大学教室光环境实验研究[J].照明工程学报,2015,26(06):19-21.

[9] 刘海静,杨晖,郝学军.持续泄漏下障碍物迎风面燃气体积分数分布[J].煤气与热力,2014,34(02):33-37.

[8] 张思健,杨晖,许金星.某火车站火灾烟气流动及人员疏散安全研究[J].北京建筑工程学院学报,2014,30(02):54-59.

[7] 孙可庆,杨晖,李锐.纵向通风下隧道速度场及温度场的模拟研究[J].建筑科学,2011,27(08):82-86.

[6] 杨晖,贾力,黄培雷.列车运动对地铁站台环境影响的数值模拟[J].地下空间与工程学报,2010,6(02):270-275.

[5] 杨晖,贾力,杨立新.北京地铁4号线隧道火灾烟气控制的CFD模拟[J].建筑科学,2009,25(08):98-104.

[4] 纪格文,郝学军,杨晖.星级宾馆用热泵回收中水及其原水热量的实验研究[J].建筑科学,2009,25(06):43-48.

[3] 杨晖,贾力,杨立新.列车运动对地铁站台空气温度分布动态影响的数值分析[J].北京交通大学学报,2009,33(01):37-40+44.

[2] 杨晖,贾力,杨立新.活塞风对地铁隧道内烟气扩散特性影响的数值模拟[J].中国安全科学学报,2008,18(11):36-40+1.

[1] 杨晖,邹文智,吴其伟,叶雷,李锐,郝学军.北京市某星级宾馆采用热泵回收中水热量的经济性分析[J].建筑科学,2008(04):15-18+43.

主要会议论文

[1] Yang Hui; Dong Bingyan; Zhang Sijian; Sun Dahui; Kirill Lushin; Research on the maximum fire smoke temperature beneath tunnel ceilings using longitudinal ventilation: MATEC Web of Conferences 251, 02020 (2018), IPICSE-2018(EI)

[2] Yang Hui; Kirill Lushin; Sustainability of multi-skin facades: MATEC Web of Conferences 251, 03048 (2018), IPICSE-2018(EI)

[3] Sun Dahui; Yang Hui; Xing Yanjun; Numerical Simulation of Critical Velocity in Obstructed Tunnel: 2nd International Conference on Civil Engineering and Transportation, 2013 (EI)

[4] Sun Keqing*; Yang Hui; The study of the confinement velocity in the longitudinal ventilation tunnel fire: 2nd International Conferene on Structures and Building Materials (ICSBM2012),(EI)

[5] Hui Yang*; Li Jia; Lixin Yang; Effect of initial velocity field on smoke diffusion characteristic in subway tunnel: 2009 ASME Summer Heat Transfer Conference, 2009(EI)

[6] Hui Yang*; Li Jia; Lixin Yang; Numerical Simulation of the Impact of Both Air Conditioning System and Train’s Movement on Platform: 2008 ASME Summer Heat Transfer Conference, 2008(EI)

授权专利

[1] 杨晖*; 一种液化天然气冷能综合利用系统和方法(发明, ZL 2018 1 0671711.X);

[2] 杨晖*; 李恒松; 张思健; 申洪亮; 王保庆; 李雪梅; 一种基于液化天然气冷能的高脱盐率海水淡化方法及装置(发明, ZL 201510309752.0);

[3] 杨晖*; 孙正阳; 张皓兴; 占中来; 一种基于液化天然气冷能的复合海水淡化方法及系统(发明, ZL 2017 1 0470618.8);

[4] 杨晖*; 一种液化天然气冷能综合利用系统(实用新型, ZL 2018 2 0990987. X);

[5] 杨晖*; 孙正阳; 张皓兴; 占中来; 基于液化天然气冷能的海水淡化系统(实用新型, ZL 201720723529.5);

[6] 杨晖*; 占中来; 张皓兴; 王保庆; 王西超; 卫杰; 一种基于液化天然气冷能的冷冻-微波-离心复合海水淡化装置(实用新型, ZL 201720302425.7);

[7] 杨晖*; 占中来; 姚越欣; 李恒松; 卫杰; 申金林; 李健; 一种基于LNG冷能海水淡化的工艺模拟实验装置(实用新型, ZL 201620833032.4)。

教材

[1] 建筑设备工程,机械工业出版社(“十三五”国家级规划教材,参编)

[2] 建筑设备概论教材,兵器工业出版社(参编)

[3] 汉英数理化词汇手册, 金盾出版社(参编)

[4] 通风与空气调节,机械工业出版社(“十三五”国家级规划教材,参编)

访问量: 开通时间 :2020-05-04 最后更新时间 :2024-01-10