姓名 梅雄 性别
学历学位 工学博士 职称 讲师
职务 学术兼职 中国建筑学会暖通空调分会、中国环境科学学会室内环境与健康分会、ISEBE等学术组织和团体会员; 《Building and environment》、《Journal of Hazardous Materials》等国际期刊审稿人。
研究方向 建筑通风及室内空气品质、污染物传输机理及快速预测模型/算法开发及相关学科交叉领域研究方向。 电子邮箱 xmei@csust.edu.cn
个人简介 专业教学及教学成果
研究方向及科研成果


主要承担《工程流体力学》、《泵与风机》、《专业英语阅读与写作(建环)》等课程教学;




主要从事暖通空调(建环)及相关交叉学科领域科研工作;

目前指导硕士研究生(含拟录取、合作指导)4人,欢迎对科研有志向、有想法、有毅力的学生报考加入。




1.主持和参与项目

作为科研骨干参与国家科技支撑计划1项,国家自然科学基金面上项目2项,加州能源委员会(CEC)项目1项;主持湖南省自然科学基金(青年项目)1项,湖南省教育厅项目1项,555000Jc线路检测中心博士科研启动项目1项,校企合作项目1项。


2.发表论文

发表各类论文近20篇,其中SCI、EI、ISTP检索9篇,代表性论文如下:

(1) Xiong Mei, Guangcai Gong. Characterizing transport and deposition of particulate pollutants in a two-zone chamber with a CFD combined Markov chain model [J]. Applied Mathematical Modelling (IF=5.129, 中科院基础版一Top), 2019, 72: 650-662.

(2) Xiong Mei, Guangcai Gong, Huan Su, Pei Peng, Jia Liu, Huahui Xie. A grid-merging operation to accelerate the Markov chain model in predicting steady-state and transient transmission of airborne particles [J]. Building and Environment (IF=6.456, 中科院升级版一Top), 2017, 122:82-93.

(3) Xiong Mei, Guangcai Gong. Predicting airborne particle deposition by a modified Markov chain model for fast estimation of potential contaminant spread [J]. Atmospheric Environment (IF=4.798, 中科院基础版二Top), 2018, 185:137-146.

(4) Xiong Mei, Guangcai Gong, Pei Peng, Huan Su. Predicting thermophoresis induced particle deposition by using a modified Markov chain model [J]. International Journal of Thermal Sciences (IF=3.744, 中科院升级版二), 2019, 136: 44-51.

(5) Xiong Mei, Guangcai Gong. Estimating distributions of airborne contaminants released by sources with dynamic strength and dynamic location by a probabilistic model [J]. Building and Environment (IF=6.456, 中科院升级版一), 2019, 153:17-27.

(6) Mei X, Zhang T, Wang S. Experimental investigation of jet-induced resuspension of indoor deposited particles [J]. Aerosol Science and Technology (IF=2.908, 中科院升级版三区,气溶胶领域顶级期刊), 2016, 50(3):230-241.

(7) Gong G, Liu J, Mei X. Investigation of heat load calculation for air carrying energy radiant air-conditioning system [J]. Energy and Buildings (IF=5.879, 中科院升级版二), 2017, 138:193–205.

(8) Pei Peng, Guangcai Gong, Xiong Mei, Jia Liu, Fanhao Wu. Investigation on thermal comfort of air carrying energy radiant air-conditioning system in south-central China [J]. Energy and Buildings (IF=5.879, 中科院升级版二), 2019, 182: 51-60.

(9) Xiong Mei, Tengfei Zhang, Shugang Wang. Measuring re-suspension of deposited particles induced by sneezing jets. 13th International Conference on Indoor Air Quality and Climates (Indoor Air 2014). Oral presentation. (EI收录,国际会议,香港)

(10)Xiong Mei, Tengfei Zhang, Shugang Wang. Resuspension of deposited particles induced by jets at different surface dust loads. Healthy Buildings 2015 America Conference: Innovation in a Time of Energy Uncertainty and Climate Adaptation, HB 2015 (EI收录).

(11)Xiong Mei, Guangcai Gong. Influence of indoor air stability on suspended particle dispersion and deposition. The 8th International Conference on Applied Energy (ICAE2016). Oral presentation. (EI收录,国际会议北京)

(12)Xiong Mei, Guangcai Gong. Experiment investigation of a novel Air-Carrying Energy Radiant System. 15th International Conference on Indoor Air Quality and Climates (Indoor Air 2018). Poster. (国际会议,美国费城)

(13)刘日明 , 龚光彩 , 梅雄 , 邓晓瑞 , & 刘佳 . (2017). 基于区域嵌套与分解的城市风环境模拟方法. 科学技术与工程.

(14)梅雄, 张腾飞, & 王树刚. (2016). 射流激扰不同积尘量下沉积颗粒的再悬浮. 建筑热能通风空调(7), 33-36.