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On the bogussing of tropical cyclones in numerical models: A comparison of vortex profiles
Authors:L M Leslie  G J Holland
Institution:(1) Bureau of Meteorology Research Centre, 13 Floor, Celsius House, 150 Lonsdale Street, GPO Box 1289 K, 3001 Melbourne, Vic., Australia;(2) Present address: The School of Mathematics, University of New South Wales, Sydney, Australia
Abstract:Summary At the resolutions currently in use, and with the sparse oceanic data coverage, numerical analyses cannot adequately represent tropical cyclone circulations for use in numerical weather prediction models. In many cases there is no circulation present at all. Most numerical weather prediction centers therefore employ a ldquobogussingrdquo scheme to force a tropical cyclone vortex into the numerical analysis. The standard procedure is to define a synthetic data distribution based on an analytically prescribed vortex, which is passed to the analysis scheme as a set of high quality observations.In this study, four commonly used bogus vortices are examined by comparing resultant forecast tracks in an environment at rest, and in a background flow that simulates a typical monsoon trough-subtropical ridge structure. There are three main findings, each of which has significance for operational tropical cyclone track prediction. First, great care is needed in the choice of the characteristics of the bogus vortex, such as the radius and magnitude of the maximum wind. Second, the tropical cyclone trajectories can be very sensitive to their initial position in the idealised environment. Third, the bogus vortex can substantially influence the environment, especially over longer time periods and for vortices of larger size.With 9 Figures
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