Role of the Oceanic Vertical Thermal Structure in the Modulation of Heavy Precipitations Over the Ligurian Sea

被引:0
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作者
A. N. Meroni
L. Renault
A. Parodi
C. Pasquero
机构
[1] University of Milano-Bicocca,Department of Earth and Environmental Sciences
[2] University of California,Department of Atmospheric and Oceanic Sciences
[3] Laboratoire d’Étude en Géophysique et Océanographie Spatiale,undefined
[4] CNRS/IRD/UPS/CNES,undefined
[5] CIMA Research Foundation,undefined
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关键词
Heavy precipitation events; mesoscale convective systems; air–sea interactions; coupled numerical simulations;
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摘要
The importance of the upper ocean thermal vertical structure (mixed-layer depth and stratification) in the control of the precipitation during a heavy-rain-producing mesoscale convective system is investigated by means of numerical simulations. In particular, the fully compressible, nonhydrostatic Euler equations for the atmosphere and the hydrostatic Boussinesq equations for the ocean are numerically integrated to study the effect of the ocean–atmosphere coupling both with realistic initial and boundary conditions and with simpler, analytical vertical temperature profile forcing. It is found that the action of the winds associated with the synoptic system, in which the heavy precipitation event is embedded, can entrain deep and cold water in the oceanic mixed layer, generating surface cooling. In the case of a shallow mixed layer and strongly stratified water column, this decrease in sea surface temperature can significantly reduce the air column instability and, thus, the total amount of precipitation produced.
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页码:4111 / 4130
页数:19
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