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Tropical cyclones are extreme weather phenomena characterized by intense Seasonal prediction of tropical cyclones. Potential applications of the FGOALS-f3-H model in the subseasonal to We discuss the current insufficiencies and futureĭirections of improvement for the simulation of tropical cyclones and the Potential intensity and the wind shear terms were used to diagnose theĮffects of resolution. Genesis potential index and the vorticity, relative humidity, maximum Improvement in the response between the El Niño–Southern OscillationĪnd the number of tropical cyclones and the accumulated cyclone energy inįGOALS-f3 contributed to the realistic simulation of tropical cyclones. Physical linkage between the performance of the tropical cyclone simulationĪnd the horizontal resolution were revealed by further analyses. Realistic in the simulation using the high-resolution model.
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Wind–pressure relationship and the horizontal structure) were more TheĬharacteristics of tropical cyclones (e.g., the average lifetime, the Simulated average and interannual variabilities of the number of tropicalĬyclones and the accumulated cyclone energy were both significantly improvedįrom FGOALS-f3-L to FGOALS-f3-H over most of the ocean basins. To replicate the timing of the seasonal cycle of tropical cyclones. Observed values in the peak month, both FGOALS-f3-L and FGOALS-f3-H appear Increased by about 50 % at the higher resolution and better matched the Movement and intensity of the climatology of tropical cyclones thanįGOALS-f3-L at 100 km resolution. (25 km resolution) simulated more realistic distributions of the formation, Simulating tropical cyclones was evaluated using observations. The performance of FGOALS-f3-H and FGOALS-f3-L in The only differences between the two models are the horizontal resolutionĪnd the time step. Have the same model parameterizations with the exactly the same parameters. Tier 1 experiment required by HighResMIP. Resolution) FGOALS-f3 (FGOALS-f3-H) models were used to achieve the standard Both the low-resolution (about 100 km resolution)įGOALS-f3 model (FGOALS-f3-L) and the high-resolution (about 25 km Intercomparison Project (HighResMIP) for the Coupled Model Intercomparison Ocean–Atmosphere–Land System Finite-Volume version 3 (FGOALS-f3)Ĭlimate system model from the High-Resolution Model Tropical cyclones were studied using the Chinese Academy of Sciences
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The effects of horizontal resolution on the simulation of Meteorological Disasters, Nanjing University of Information Science andĬorrespondence: Qing Bao Hide author detailsĬorrespondence: Qing Bao Received: – Discussion started: – Revised: – Accepted: – Published: 7 Collaborative Innovation Center on Forecast and Evaluation of.Science and Technology, Nanjing 210044, China 6 School of Atmospheric Sciences, Nanjing University of Information.5 College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.Laboratory of Sichuan Province, Chengdu University of Information 4 School of Atmospheric Sciences/Plateau Atmosphere and Environment Key.3 Southern Marine Science and Engineering Guangdong Laboratory,.2 State Key Laboratory of Earth Surface Processes and Resource Ecology,įaculty of Geographical Science, Beijing Normal University, Beijing 100875,.1 State Key Laboratory of Numerical Modeling for Atmospheric SciencesĪnd Geophysical Fluid Dynamics, Institute of Atmospheric Physics, ChineseĪcademy of Sciences, Beijing 100029, China.