subject: Hurricanes creator: Daniel Robert Chavas, 0000-0001-9172-8328
10.4231/NKX4-MM81
03/06/2025
A simple model for predicting tropical cyclone minimum central pressure from intensity and size
Hurricanes Risk assessment tropical cyclone weather forecasting
10.4231/3FQ4-1E11
04/15/2022
Simple MATLAB code to predict Rmax from R34kt as explained in Chavas and Knaff (2022) Eq. 2-4 + Eq 7.
climate impacts damages EAPS Hurricanes Risk Analysis Risk assessment Weather
10.4231/WMMS-XY76
05/06/2022
Simple MATLAB code to predict Rmax from R34kt as explained in Chavas and Knaff (2022) Eq. 2-4 + Eq 7.
Climate Change EAPS Flood Damage Hurricanes Modeling Risk Analysis tropical cyclones
10.4231/CZ4P-D448
06/06/2022
This code will output a tropical cyclone near-surface wind profile as defined in Chavas et al (2015, JAS); MATLAB or python version
Climate Change damage EAPS hazard Hurricanes impact Risk assessment tropical cyclone wind field wind profile
10.4231/3AKW-VX52
Daniel Robert Chavas
,
Jie Chen
04/03/2023
This dataset provides the CM1 scripts to reproduce the idealized TC landfalls, and simulation outputs of the landfall experiments examined in the paper.
EAPS Hurricanes TC hazards TC landfalls TC structure theoretical TC wind field model tropical cyclones
10.4231/GSVZ-D752
01/30/2025
Simple model equation to predict minimum pressure in a tropical cyclone from maximum wind speed and size
Hurricanes intensity minimum pressure Risk assessment tropical cyclone weather forecasting
10.4231/7N7B-2494
03/11/2025
Data files for the figures in Chavas Camargo Tippett (2025, JC). Chavas, D.R., Camargo, S.J. and Tippett, M.K., 2025. Tropical cyclone genesis potential using a ventilated potential intensity. Journal of Climate. https://doi.org/10.11
Climate Change Global Climate Models Hurricanes Risk Analysis tropical cyclone
10.4231/FQQN-DR77
03/03/2025
Simple MATLAB code to predict Rmax from R34kt as explained in Chavas and Knaff (2022) Eq. 2-4 + Eq 7.
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