The role of the planetary boundary layer parameterization schemes on the meteorological and aerosol pollution simulations: A review
Author:
Funder
National Key Project of MOST
Atmospheric Pollution Control of the Prime Minister Fund
Key Projects of Fundamental Scientific Research Fund of CAMS
Publisher
Elsevier BV
Subject
Atmospheric Science
Reference172 articles.
1. Modeling the 24-hour evolution of the mean and turbulent structures of the planetary boundary layer;Andre;J. Atmos. Sci.,1978
2. An integrated turbulence scheme for boundary layers with shallow cumulus applied to pollutant transport;Angevine;J. Appl. Meteorol.,2005
3. Performance of an eddy diffusivity-mass flux scheme for shallow cumulus boundary layers;Angevine;Mon. Weather Rev.,2010
4. Evaluation of SODAR methods for the determination of the atmospheric boundary layer mixing height;Asimakopoulos;Meteorog. Atmos. Phys.,2004
5. Sensitivity analysis of WRF model PBL schemes in simulating boundary-layer variables in southern Italy: an experimental campaign;Avolio;Atmos. Res.,2017
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