Role of Planetary Boundary Layer Processes in the Simulation of Tropical Cyclones Over the Bay of Bengal
Author(s) -
K. V. V. Ananthalakshmi Kumari,
S. Karuna Sagar,
Yesubabu Viswanadhapalli,
Hari Prasad Dasari,
S. Vijaya Bhaskara Rao
Publication year - 2018
Publication title -
pure and applied geophysics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.716
H-Index - 87
eISSN - 1420-9136
pISSN - 0033-4553
DOI - 10.1007/s00024-018-2017-4
Subject(s) - tropical cyclone , weather research and forecasting model , meteorology , intensity (physics) , initialization , climatology , environmental science , bengal , track (disk drive) , storm , planetary boundary layer , bay , rainband , eye , tropical cyclone forecast model , boundary layer , geology , physics , computer science , oceanography , turbulence , quantum mechanics , thermodynamics , programming language , operating system
The behaviour of planetary boundary layer (PBL) schemes initialized at different life stages of a tropical cyclone (TC) is studied by considering seven Bay of Bengal TC cases. In each TC case, the Advanced Research Weather Research and Forecasting (WRF-ARW) model is initialized at four life stages (depression to very severe cyclone storm) with National Center for Environmental Prediction (NCEP) Global analysis and integrated up to 96 h. A set of six PBL sensitivity experiments are conducted at four stages for all seven TC cases to analyse the impact of the model boundary layer in simulating the TC track and intensity parameters. The model-produced track, intensity and rainfall patterns are evaluated with the best track, intensity and gridded rainfall estimates obtained from the India Meteorological Department (IMD). The spatial and radius/height section simulated fields are evaluated with satellite retrievals. Results depict that the six PBL schemes during model initialization at different stages of a TC have produced sizable differences in the simulation of track and intensity parameters. The local and nonlocal schemes produced different results based on the TC stage at which the model is initialized. The results also suggest that if the model is initialized with a non-organized cyclonic vortex such as depression stage of the storm, PBL schemes exhibit high sensitivity and spread in terms of both track and intensity. While the spread between PBL schemes was significantly reduced and found close to the observed estimates when the model was initialized at the advanced stages of the TC. In addition, the local 1.5-order closure scheme simulated the storm parameters relatively better when the cyclone vortex was not well organized in the model's initial conditions, while the non-local and first-order closure schemes perform better with initial model conditions of a well-defined cyclonic vortex.
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