SURF: Understanding and Predicting Urban Convection and Haze

Author:

Liang X.1,Miao S.1,Li J.1,Bornstein R.,Zhang X.2,Gao Y.3,Chen F.4,Cao X.1,Cheng Z.1,Clements C.5,Dabberdt W.6,Ding A.7,Ding D.3,Dou J. J.1,Dou J. X.1,Dou Y.1,Grimmond C. S. B.8,González-Cruz J. E.9,He J.1,Huang M.1,Huang X.7,Ju S.1,Li Q.1,Niyogi D.10,Quan J.1,Sun J.4,Sun J. Z.4,Yu M.1,Zhang J.1,Zhang Y.1,Zhao X.1,Zheng Z.1,Zhou M.11

Affiliation:

1. Institute of Urban Meteorology, China Meteorological Administration, Beijing, China

2. School of Atmospheric Sciences, Plateau Atmosphere and Environment Key Laboratory of Sichuan Province, Chengdu University of Information Technology, Chengdu, China, and Environmental Meteorology Forecast Center of Beijing–Tianjin–Hebei, Beijing

3. Beijing Weather Modification Office, Beijing, China

4. National Center for Atmospheric Research, Boulder, Colorado

5. San Jose State University, San Jose, California

6. Vaisala Group, Boulder, Colorado

7. Nanjing University, Nanjing, China

8. University of Reading, Reading, United Kingdom

9. City College of the City University of New York, New York, New York

10. Purdue University, West Lafayette, Indiana

11. National Marine Environment Forecast Center, Beijing, China

Abstract

AbstractUrbanization modifies atmospheric energy and moisture balances, forming distinct features [e.g., urban heat islands (UHIs) and enhanced or decreased precipitation]. These produce significant challenges to science and society, including rapid and intense flooding, heat waves strengthened by UHIs, and air pollutant haze. The Study of Urban Impacts on Rainfall and Fog/Haze (SURF) has brought together international expertise on observations and modeling, meteorology and atmospheric chemistry, and research and operational forecasting. The SURF overall science objective is a better understanding of urban, terrain, convection, and aerosol interactions for improved forecast accuracy. Specific objectives include a) promoting cooperative international research to improve understanding of urban summer convective precipitation and winter particulate episodes via extensive field studies, b) improving high-resolution urban weather and air quality forecast models, and c) enhancing urban weather forecasts for societal applications (e.g., health, energy, hydrologic, climate change, air quality, planning, and emergency response management). Preliminary SURF observational and modeling results are shown (i.e., turbulent PBL structure, bifurcating thunderstorms, haze events, urban canopy model development, and model forecast evaluation).

Publisher

American Meteorological Society

Subject

Atmospheric Science

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