Abstract
In order to investigate the interaction between cumulus convection and soil moisture distribution, two-dimensional numerical experiments using a regionsl atmospheric model are performed. The model roughly resolves each convective cell and represents cloud processes by a microphysics parameterization. Two long-term (60-day) integrations with relatively dry and wet conditions are made with the atmosphere-land system in a quasi-equilibrium state. Though the initial and boundary conditions are horizontally homogeneous, horizontal contrasts in soil moisture spontaneously develop due to the spotty nature of convective events are initiated by the upward motion of this local circulation over the dry region. They mostly occur in th afternoon (1300-1700 LT), while convection that forms over regions that are wet throughout may occur at any time during the day. the intense precipiation over the dry region 'overdamps' the soil moisture contrast, which reults in the maintenance of a heterogeneous distribution of soil moisture.
Cite
CITATION STYLE
Emori, S. (1998). The interaction of cumulus convection with soil moisture distribution: an idealized simulation. Journal of Geophysical Research Atmospheres, 103(D8), 8873–8884. https://doi.org/10.1029/98JD00426
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