Contrasting the effect of aerosol properties on the planetary boundary layer height in Beijing and Nanjing
Author:
Publisher
Elsevier BV
Subject
Atmospheric Science,General Environmental Science
Reference42 articles.
1. Mixing height estimation from sodar data — a critical discussion;Beyrich;Atmos. Environ.,1997
2. Role of the residual layer and large-scale subsidence on the development and evolution of the convective boundary layer;Blay-Carreras;Atmos. Chem. Phys.,2014
3. Lidar measurements of the atmospheric entrainment zone and the potential temperature jump across the top of the mixed layer;Boers;Boundary-Layer Meteorol.,1986
4. Full-time, eye-safe cloud and aerosol lidar observation at atmospheric radiation measurement program sites: instruments and data processing;Campbell;J. Atmos. Ocean. Technol.,2002
5. Characterizing the vertical profile of aerosol particle extinction and linear depolarization over Southeast Asia and the Maritime Continent: the 2007–2009 view from CALIOP;Campbell;Atmos. Res.,2003
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