Numerical Simulation of the Sensitivity of Summer Monsoon Circulation and Rainfall over India to Land Surface Processes

被引:0
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作者
S. Raman
U. C. Mohanty
N. C. Reddy
K. Alapaty
R. V. Madala
机构
[1] Department of Marine,
[2] Earth and Atmospheric Sciences,undefined
[3] North Carolina State University,undefined
[4] Raleigh,undefined
[5] NC 27695-8208,undefined
[6] U.S.A.,undefined
[7] Centre for Atmospheric Sciences,undefined
[8] Indian Institute of Technology,undefined
[9] New Delhi,undefined
[10] India.,undefined
[11] Naval Research Laboratory,undefined
[12] Washington,undefined
[13] D.C.,undefined
[14] U.S.A.,undefined
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Key words: Numerical simulation, summer monsoon, circulation, land surface, parameterization.;
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摘要
—The influence of soil moisture and vegetation variation on simulation of monsoon circulation and rainfall is investigated. For this purpose a simple land surface parameterization scheme is incorporated in a three-dimensional regional high resolution nested grid atmospheric model. Based on the land surface parameterization scheme, latent heat and sensible heat fluxes are explicitly estimated over the entire domain of the model. Two sensitivity studies are conducted; one with bare dry soil conditions (no latent heat flux from land surface) and the other with realistic representation of the land surface parameters such as soil moisture, vegetation cover and landuse patterns in the numerical simulation. The sensitivity of main monsoon features such as Somali jet, monsoon trough and tropical easterly jet to land surface processes are discussed.¶Results suggest the necessity of including a detailed land surface parameterization in the realistic short-range weather numerical predictions. An enhanced short-range prediction of hydrological cycle including precipitation was produced by the model, with land surface processes parameterized. This parameterization appears to simulate all the main circulation features associated with the summer monsoon in a realistic manner.
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页码:781 / 809
页数:28
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