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How Do Outer Spiral Rainbands Affect Tropical Cyclone Structure and Intensity?*
Author(s) -
Yuqing Wang
Publication year - 2008
Publication title -
journal of the atmospheric sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.853
H-Index - 173
eISSN - 1520-0469
pISSN - 0022-4928
DOI - 10.1175/2008jas2737.1
Subject(s) - eye , tropical cyclone , rainband , atmospheric sciences , diabatic , intensity (physics) , pressure gradient force , mechanics , cyclone (programming language) , geology , surface pressure , storm , environmental science , climatology , meteorology , physics , adiabatic process , thermodynamics , quantum mechanics , field programmable gate array , computer science , computer hardware
A long-standing issue on how outer spiral rainbands affect the structure and intensity of tropical cyclones is studied through a series of numerical experiments using the cloud-resolving tropical cyclone model TCM4. Because diabatic heating due to phase changes is the main driving force of outer spiral rainbands, their effect on the tropical cyclone structure and intensity is evaluated by artificially modifying the heating and cooling rate due to cloud microphysical processes in the model. The view proposed here is that the effect of diabatic heating in outer spiral rainbands on the storm structure and intensity results mainly from hydrostatic adjustment; that is, heating (cooling) of an atmospheric column decreases (increases) the surface pressure underneath the column. The change in surface pressure due to heating in the outer spiral rainbands is significant on the inward side of the rainbands where the inertial stability is generally high. Outside the rainbands in the far field, where the iner...

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