Cloud-Resolving Modeling of Convective Processes by Shouting Gao

By Shouting Gao

This is an up to date and revised moment version of the e-book providing new advancements within the box of cloud-resolving modeling. the 1st variation of the ebook introduces the framework of cloud-resolving version, methodologies for research of modeling outputs, and validation of simulations with observations. It info very important medical findings within the facets of floor rainfall approaches, precipitation potency, dynamic and thermodynamic approaches linked to tropical convection, diurnal diversifications, radiative and cloud microphysical strategies linked to improvement of cloud clusters, air-sea coupling on convective scales, weather equilibrium states, and distant sensing functions. in more to the content material from the 1st variation of the publication, the second one variation of the booklet comprises the hot clinical leads to the advance of convective-stratiform rainfall separation scheme, the research of constructions of precipitation structures, the thermal results of doubled carbon dioxide on rainfall, precipitation predictability, and modeling depositional development of ice crystal. The ebook could be invaluable either to graduate scholars and to researchers who do cloud, mesoscale and international modeling.

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1999) also compared convective and stratiform rainfalls between COARE1 and COARE2 and found that COARE1 produces more convective rainfall (67 %) than COARE2 does (57 %). Li et al. (2000) conducted a 2D coupled ocean–cloud-resolving atmosphere simulation with the forcing from TOGA COARE and showed remarkable similarity of surface fluxes between simulations and observations in both phase and amplitude (Fig. 7). However, the model simulations differ from the observations in three ways. First, simulated surface wind stresses are much smaller than observed wind stresses on 21–23 December 1992.

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J Atmos Sci 55:1846–1858 Pruppacher HR, Klett JO (1978) Microphysics of clouds and precipitation. Reidel, Dordrecht, The Netherlands Redelsperger JL, Sommeria G (1981a) Methode de representation de la turbulence d’echelle inferieure a la maille pour un medele tri-dimensional de convection nuageuse. Bound Layer Meteor 21:509–530 Redelsperger JL, Sommeria G (1981b) Three-dimensional simulations of a convective storm: sensitivity studies on subgrid parameterization and spatial resolution. J Atmos Sci 43:2619– 2635 Redelsperger JL, Sommeria G (1982) Methode de representation de la turbulence associee aux precipitations dans un modele tri-dimensional de convection nuageuse.

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