莫梓伟,中山大学“百人计划”副教授,博士生导师。
研究方向是城市低空气象,长期专注城市低空风场与湍流、城市通风与热环境、城市活性有机气体(VOCs)排放与传输等研究。主持国家自然科学基金面上项目、青年科学基金项目(C类)、广东省自然科学基金面上项目、区域联合青年基金项目、生态环境部、中国气象局、广东省科技厅等重点实验室开放基金等,作为骨干参与国自然重点项目(单位负责人)、国家重点研发计划政府间合作项目等。发表第一作者/通讯作者SCI论文30余篇,作国内外会议作口头报告20余次。研究成果致力于为低空经济气象精细化保障、气候适应型城市建设、空气质量持续改善等国家需求提供科学支撑。
讲授本科课程《城市气象学》、大气科学+人工智能双学位《概率论与数理统计》,获中山大学教学竞赛一等奖,参与大气科学“101计划”教材应用气象学教材编写,旨在从教学和科研上推动城市低空气象的学科发展与交叉融合。
欢迎对大气流体实验(风洞和水槽)、计算流体力学模拟仿真(CFD)、中尺度气象(WRF)与微尺度CFD耦合模拟、气象和空气质量数据分析等感兴趣的老师、同学请联系mozw7@mail.sysu.edu.cn。欢迎推免和报考本研究组的研究生(大气、环境、流体力学等)、开展本科生毕设/研究课题。
工作经历
2021至今 中山大学 ,副教授
2019-2021 香港大学,博士后
教育经历
2015-2019 香港大学,博士
2012-2015 北京大学,硕士
2008-2012 华南理工大学,本科
研究兴趣

在城市气象和空气污染领域,围绕边界层与城市环境(Boundary Layer and Urban Environment, BLUE),主要使用风洞和水槽实验、计算流体力学(CFD)仿真和中尺度气象(WRF)模拟、外场观测等手段,开展与以下三个方面相关的研究:
(1)城市低空风场与湍流
城市粗糙子层湍流、复杂风场CFD精细模拟、人工智能风场重构、无人机低空飞行风险评估与路径规划
(2)城市通风与热环境
行人风环境、街谷微气候、基于机器学习的城区阻力参数化、区域热岛效应和热舒适性、热岛环流物理模拟
(3)城市活性有机气体排放与传输
VOCs源成分谱、挥发性化学品(VCP)排放、基于地基观测的VOCs排放通量估算与清单验证、街区臭氧(O3-NOx-VOCs)污染的CFD模拟和健康风险评估
支撑条件
- 搭建城市气象流动和分层实验水槽

- 发展城市大气流动模拟仿真

发表论文
Chen, K., Mo, Z.* (2026). Wind amplification induced by high-rise buildings and identification of local wind-prone neighborhoods using a CFD-machine learning framework. Sustainable Cities and Society, 149, 107747. https://doi.org/10.1016/j.scs.2026.107747
Mo, Z., Zhang, Y., Wang, R., Chen, G., Li, F., Liu, C.H. (2026). Roughness-sublayer flows over building arrays with uniform and non-uniform heights: A wind tunnel study. Physics of Fluids, 38, 075168. https://doi.org/10.1063/5.0339509
Wang, R., Liu, C.H., Liu, Y., Li, F., Chen, G., Mo, Z. (2026). Atmospheric surface layer turbulence: Intermittency and multiscale structure. Physics of Fluids, 38, 065123.
Chen, J., Mo, Z.* (2026). Mapping the aerodynamic parameters for built environment: A CFD simulation and machine learning framework. Building and Environment, 302, 114804.
Zhang, Y., Mo, Z.*, Li, F., Wang, R., Chen, G., Liu, S.,Liu, Y., Liu, C. H. (2026). Wind tunnel study of wind flow over low-to high-rise building arrays using PIV and POD analysis. Building and Environment, 296,114474.
Chen, K., Mo, Z.*, Du, Y. (2026). Wind environment and pedestrian comfort assessment around a high-rise building: Coupled effect of building shape and surrounding density. Journal of Wind Engineering and Industrial Aerodynamics, 268, 106297.
Li, X.#, Hang, J.#, Mo, Z.*, Wang, Q. (2026). Impact of Adjacent City Development on the Urban Heat Island Intensity and Thermal Stress : A WRF-BEP/BEM and LCZ-Integrated Assessment. Building and Environment, 289, 114024.
Huangfu, Y., Zhang, Y., Yuan, B., Wang, S., Yang, Y., Li, J.,Mo, Z., Qi, J., Chang, M., Hu, W., Wang, X., & Shao, M. (2026). Emissions of volatile chemical products (VCPs) in China: An updated high‐resolution mass‐balance‐based inventory. Journal of Geophysical Research: Atmospheres, 131(1), e2025JD044698.
Wang, R., Mo, Z.*, Mei, D., Cheng, W. C., Zhou, K., & Liu, C. H. (2025). Assessing scale-dependent urban wind loss patterns: A CFD analysis of realistic urban segments from 1980 to 2020. Sustainable Cities and Society, 133, 106841.
Chen, J., Mo, Z.*, Li, C., Cheng, W. C., & Liu, C. H. (2025). Mapping drag coefficient using CFD and machine learning with application to urban canopy model. Sustainable Cities and Society, 131, 106719.
Li, C.#, Hang, J.#, Mo, Z.*, Chen, G., Xu, F., Gao, Z., … & Ren, L. (2025). Impact of Window-to-Wall Ratio (WWR) on Street Canyon Thermal Environment: Insights from Outdoor Scale Experiments. Building and Environment, 285, 113605.
Fan, J., Mo, Z.*, Hang, J., Liang, J., & Wang, X. (2025). Street Canyon Air Pollution and Pedestrian Health Risk Affected by Household Volatile Chemical Products (VCPs) Emission. ACS ES&T Air, 2, 1524−1537.(Supplementary cover) 补充封面
Fan, J., Mo, Z.*, Yuan, B*., Huang, S., Shao, M., Qi, J., & Wang, B. (2025). Deriving non‐methane hydrocarbon emissions and improving source apportionment by the boundary layer mass balance technique. Journal of Geophysical Research: Atmospheres, 130, e2024JD041721.
Wang, Y.#, Hang, J.#, Mo, Z.* (2025). Indoor and outdoor airflow modeling in built and urban environments by water tank and channel experiments: A review. Building Simulation, 18, 721-746.
Yang, X.#, Liu, Y.#, Fan, J., Chen, G., Mo, Z.*, & Chen, X.* (2025). Screening characteristic VOC species, health hazards, and odor pollutants in the grain and oilseed milling industry of China. Environmental Pollution, 370, 125837.
Qi, J., Yuan, B., Huangfu, Y., Wang, S., Yang, Y., Zhang, Y., Hu, W., Mo, Z., Wang, X., & Shao, M. (2025). Environmental Benefits of Substituting Coatings from Solvent-Borne to Water-Borne Coatings Revealed by Total OH Reactivity Measurements. Environmental Science & Technology Letters, 12(9), 1184-1189.
Wang, R., Liu, C. H., Liu, Y., & Mo, Z. (2025). Turbulence intermittency over idealized urban areas based on empirical mode decomposition. Building and Environment, 277, 112956.
Li, F., Wang, R., Chen, G., Mo, Z., Ikegaya, N., & Liu, C. H. (2025). Turbulence scale and strength analysis in the roughness and inertial sublayers over urban areas: A wind tunnel study. Building and Environment, 267, 112193.
Liang, J., Hang, J., Jia, S., Hua, J., Zhao, B., Zhang, X., … & Mo, Z. (2025). O3–NOx–VOCs photochemical pollutant dispersion in 2D street canyon under effects of solar radiation. Atmospheric Environment, 344, 121032.
Mei, D., Mo, Z., Zhou, K., Liu, C. H. (2024). Traffic assignment optimization to improve urban air quality with the unified finite-volume physics-informed neural network. Sustainable Cities and Society, 105750.
Wang, R., Mo, Z.*, Yang, L., Chang, M., Hang, J. (2024). Long-term trend of surface wind speed in the Guangdong-Hong Kong-Macau Greater Bay Area during 1980–2020: Spatiotemporal variation and urbanization effect. Urban Climate, 56, 101999.
Wu, Y., Mo, Z., Wu, Q., Fan, Y., Chen, X., Li, Y., Lin, H., Huang, X., Tang, H., Liao, D., Liu, H.*, Mo, Z.* (2024). A year-Long measurement and source contributions of volatile organic compounds in Nanning, South China. Atmosphere, 15, 560.
Chen, K.Y., Mo, Z.W.*, Hang, J. (2024). The recirculation flow after different cross-section shaped high-rise buildings with applications to ventilation assessment and drag parameterization. Building Simulation,17, 607-624. (Cover article) 封面文章
Wang, R., Liu, C. H., Li, F., Mo, Z. (2024). Turbulent transport mechanism in the roughness sublayers over idealized urban areas and its implication to street-level ventilation. Sustainable Cities and Society, 100, 105030.
Mo, Z.*, Liu, C. H. (2023). Inertial and roughness sublayer flows over real urban morphology: A comparison of wind tunnel experiment and large-eddy simulation. Urban Climate, 29, 101530.
Mo, Z., Liu, C. H., Chow, H. L., Lam, M. K., Lok, Y. H., Ma, S. W., Wong, F. L., Yip, P. Y. (2022). Roughness sublayer over vegetation canopy: A wind tunnel study. Agricultural and Forest Meteorology, 316, 108880.
Yao, L., Liu, C. H., Mo, Z, Cheng, W. C., Brasseur, G. P., Chao, C. Y. (2022). Statistical analysis of the organized turbulence structure in the inertial and roughness sublayers over real urban area by building-resolved large-eddy simulation. Building and Environment, 207, 108464.
Mo, Z., Huang, S., Yuan, B., Pei, C., Song, Q., Qi, J., Wang, M., Wang, B., Wang, C., Shao, M. (2022). Tower-based measurements of NMHCs and OVOCs in the Pearl River Delta: Vertical distribution, source analysis and chemical reactivity. Environmental Pollution, 292, 118454.
Mo, Z.#, Cui, R.#, Yuan, B., Cai, H.H., McDonald, B. C., Li, M., Zheng, J.Y., Shao, M. (2021). A mass balance-based emission inventory of non-methane volatile organic compounds (NMVOCs) for solvent use in China. Atmospheric Chemistry and Physics, 21, 13655–13666.
Shao, M., Wang, W., Yuan, B., Parrish, D. D., Li, X., Lu, K., Wu, L., Wang, X., Mo, Z.W., Yang, S., Peng, Y., Kuang, Y., Chen, W., Hu, M., Zeng, L., Su, H., Cheng, Y., Zheng, J., Zhang, Y. (2021). Quantifying the role of PM2. 5 dropping in variations of ground-level ozone: Inter-comparison between Beijing and Los Angeles. Science of The Total Environment, 788, 147712.
Qi, J.P., Mo, Z., Yuan, B., Huang, S., Huangfu, Y., Wang, Z., Li, X.B., Yang, S., Wang, W., Zhao, Y., Wang, X., Wang, W., Liu, K., Shao, M. (2021). An observation approach in evaluation of ozone production to precursor changes during the COVID-19 lockdown. Atmospheric Environment, 118618.
Cheng, W. C., Liu, C. H., Ho, Y. K., Mo, Z., Wu, Z., Li, W., Chan, Y.L., Kwan, W.K., Yau, H. T. (2021). Turbulent flows over real heterogeneous urban surfaces: Wind tunnel experiments and Reynolds-averaged Navier-Stokes simulations. Building Simulation, 14(5), 1345-1358.
Mo, Z., Lu, S., Shao, M. (2021). Volatile organic compound (VOC) emissions and health risk assessment in paint and coatings industry in the Yangtze River Delta, China. Environmental Pollution, 269, 115740.
Mo, Z., Liu, C.H., Ho, Y.K. (2021). Roughness sublayer flows over real urban morphology: a wind tunnel study. Building and Environment, 188, 107463.
Wang, W., Parrish, D. D., Li, X., Shao, M., Liu, Y., Mo, Z., Lu, S., Hu, M., Fang, X., Wu, Y.S., Zeng, L., Zhang, Y. (2020). Exploring the drivers of the increased ozone production in Beijing in summertime during 2005–2016. Atmospheric Chemistry and Physics, 20(24), 15617-15633.
Mo, Z., Huang, S, Yuan, B., Pei, C., Song, Q., Qi, J., Wang, M., Wang, B., Wang, C., Li, M., Zhang, Q., Shao, M. (2020). Deriving emission fluxes of volatile organic compounds from tower observation in the Pearl River Delta, China. Science of The Total Environment, 741, 139763.
Xie, J., Liu, C.H., Mo, Z., Huang, Y., Mok, W.C. (2020). Near-field dynamics and plume dispersion after an on-road truck: Implication to remote sensing. Science of The Total Environment, 748, 141211.
Liu, C. H., Mo, Z., Wu, Z. (2018). Parameterization of vertical dispersion coefficient over idealized rough surfaces in isothermal conditions. Geoscience Letters, 5(1), 1-11.
Mo, Z., Liu, C.H. (2019). Transport mechanism of urban plume dispersion. Building and Environment, 161, 106239.
Mo, Z., Liu, C.H. (2018). A wind tunnel study of ventilation mechanism over hypothetical urban roughness: The role of intermittent motion scales. Building and Environment, 135, 94-103.
Mo, Z., Liu, C.H. (2018). Wind tunnel measurements of pollutant plume dispersion over hypothetical urban area. Building and Environment, 132, 357-366.
Mo, Z., Liu, C.H. (2018). Wind tunnel measurements of turbulent boundary layer flows over arrays of ribs and cubes. Geoscience Letters, 5, 16.
Mo, Z., Shao, M., Wang, W., Liu, Y., Wang, M., Lu, S. (2018). Evaluation of biogenic isoprene emissions and their contribution to ozone formation potential in Beijing, China. Science of The Total Environment, 627, 1485–1494.
Mo, Z., Shao, M., Liu, Y., Xiang, Y. Lu, S., Wang, M., Ou, J., Zheng, J., Li, M., Zhang, Q., Wang, X., Zhong, L. (2018). Species-specified VOC emissions derived from a gridded study in Pearl River Delta (PRD), China. Scientific Reports, 8, 2963.
Mo, Z., Shao, M., Lu, S.H., Niu, H., Zhou, M., Sun, J. (2017). Characterization of non-methane hydrocarbons and their sources in an industrialized coastal city, Yangtze River Delta, China. Science of The Total Environment, 593, 641-653.
Niu, H., Mo, Z., Shao, M., Lu, S., Xie, S. (2016). Screening the emission sources of volatile organic compounds (VOCs) in China by multi-effects evaluation. Frontiers of Environmental Science & Engineering, 10, 1-11.
Mo, Z., Shao, M., Lu, S. (2016). Compilation of a source profile database for hydrocarbon and OVOC emissions in China. Atmospheric Environment, 143, 209-217.
Mo, Z., Shao, M., Lu, S., Qu, H., Zhou, M., Sun, J., Gou, B. (2015). Process-specific emission characteristics of volatile organic compounds (VOCs) from petrochemical facilities in the Yangtze River Delta, China. Science of The Total Environment, 533, 422-431.
莫梓伟, 牛贺, 陆思华, 邵敏, 勾斌. (2015). 长江三角洲地区基于喷涂工艺的溶剂源 VOCs 排放特征. 环境科学, 6, 1944-1951.
莫梓伟, 陆思华, 李悦, 邵敏, 屈航. (2015). 北京市典型溶剂使用企业 VOCs 排放成分特征. 中国环境科学, 35(2), 374-380. (入选领跑者5000中国精品科技期刊顶尖学术论文)
莫梓伟, 邵敏, 陆思华. (2014). 中国挥发性有机物 (VOCs) 排放源成分谱研究进展. 环境科学学报, 34(9), 2179-2189. (入选领跑者5000中国精品科技期刊顶尖学术论文)
会议报告
Mo, Z. (2022), “Turbulent Flows in the Inertial- and Roughness-sublayer over Real Urban Morphology: A Comparison of Wind tunnel Experiment and Large-eddy Simulation”, Workshop on Physical Modeling of Environmental Flow & Dispersion Phenomena (PHYSMOD2022), 29 to 31 August 2022, Prague, Czech Republic. (线上口头报告)
Chen, K. and Mo, Z. (2022), “Effect of building shape on the wake characteristics after a high-rise building”. International Association for Urban Climate-Virtual Poster Conference, 30 August to 1 September, 2022. (海报展示)
莫梓伟(2021), 真实城市地表粗糙子层的湍流特征及风速廓线参数化研究. 第八届全国城市气象学术论坛,2021年10月13日-14日,线上会议.
Mo, Z. and Liu, C.H. (2021), “Contrasting Roughness- and Inertial-sublayer Flows over Vegetation Canopy“. AOGS2021 Virtual 18th Annual Meeting, 1 to 6 August 2021, Online Conference. (口头报告)
Mo, Z. and Liu, C.H. (2021), “Mean Wind Parametrization and Turbulence Characteristics of Roughness Sublayer over Real Urban Morphology of Hong Kong”, 20th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes, 14 to 18 June 2021, Tartu, Estonia, Online Conference. (口头报告)
Mo, Z. and Liu, C.H. (2021), “Wind Speed Parameterization and Turbulence Intermittency in the Roughness Sublayers over Urban Areas: a Wind Tunnel Study”, EGU General Assembly 2021, 19 to 30 April 2021, Gather Online. (口头报告)
Mo, Z. and Liu, C.H. (2019), “A wind tunnel study of plume dispersion mechanism over hypothetical urban areas”, Workshop on Physical Modeling of Environmental Flow & Dispersion Phenomena (PHYSMOD2019), 26 to 28 August 2019, Hong Kong, China. (口头报告)
Mo, Z. and Liu, C.H. “A comparison of roughness sublayers over urban and vegetation canopies using laboratory wind tunnel experiments”, 19th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes 3-6 June 2019, Bruges, Belgium. (海报报告)
Mo, Z. and Liu, C.H. (2018), "A wind tunnel study of plume dispersion and its mechanism over hypothetical urban roughness", 10th International Conference on Urban Climate/ 14th Symposium on the Urban Environment, 6 to 10 August 2018, New York, USA. (口头报告)
Mo, Z. and Liu, C.H. (2017), "Characterizing the pollutant plume dispersion in urban atmospheric surface layer", 18th International Conference on Harmonisation within Atmospheric Dispersion Modelling for Regulatory Purposes, 9 to12 October 2017, Bologna, Italy. (口头报告)
Mo, Z. and Liu, C.H. (2017), "On the turbulence structure over different surface roughness: a perspective from wind tunnel measurements", UMCC, May 25 to 26, 2017, City University of Hong Kong, Hong Kong, China. (口头报告)
Mo, Z. and Liu, C.H. (2017), "Laboratory study of passive-scalar plume dispersion over hypothetical urban roughness", 13th Symposium of the Urban Environment, American Meteorological Society 97th Annual Meeting, January 22 to 26, 2017, Seattle, USA. (口头报告)
Mo, Z. and Liu, C.H. (2016), "Wind tunnel measurements for flow and passive scalar dispersion over hypothetical urban areas", Hong Kong Wind Engineering Society 3rd Workshop, December 15 to 16, 2016, Hong Kong, China. (口头报告)
Mo, Z. and Liu, C.H. (2016), "Wind tunnel experiments for reactive pollutant dispersion in turbulent boundary layer over urban areas", The 20th Annual Conference of HKSTAM 2016 in conjunction with The 12th Shanghai-Hong Kong Forum on Mechanics and Its Application, April 9, 2016, Hong Kong, China. (口头报告)
