TY - JOUR
T1 - Contrasting Responses of Atlantic and Pacific Tropical Cyclone Activity to Atlantic Multidecadal Variability
AU - Huang, Huanping
AU - Collins, William D.
AU - Patricola, Christina M.
AU - Ruprich-Robert, Yohan
AU - Ullrich, Paul A.
AU - Baker, Alexander J.
N1 - Data Availability Statement:
The DCPP climate model outputs at daily and monthly timescales can be accessed through the Earth System Grid Federation nodes (https://esgf-index1.ceda.ac.uk/search/cmip6-ceda).
Subdaily outputs from the EC-Earth3P-HR, EC-Earth3P, and CNRM-CM6-1 simulations can be accessed at the UK Centre for Environmental Data Analysis's JASMIN platform (https://www.ceda.ac.uk/services/jasmin/).
The tropical cyclone tracks derived from the EC-Earth3P-HR, EC-Earth3P, and CNRM-CM6-1 simulations are archived at the NERSC portal (https://portal.nersc.gov/archive/home/projects/cascade/www/TC_tracks_AMV).
PY - 2023/5/28
Y1 - 2023/5/28
N2 - This research assesses the influences of Atlantic Multidecadal Variability (AMV) on global tropical cyclones (TCs) using two large ensembles of idealized global climate model simulations with opposite signs of AMV forcings superimposed (i.e., AMV+ and AMV–). We first detect TCs and then compare TC activity by basin in the two AMV experiments. We find contrasting responses of Atlantic and Pacific TC frequency to the AMV anomalies. Compared to AMV–, AMV+ significantly increases TC frequency in the North Atlantic, including those making landfalls. The increase is explained by warmer sea surface temperature, higher relative humidity, increased relative vorticity, and weaker vertical wind shear under AMV+. By contrast, AMV+ decreases TC occurrence over the western North Pacific and South Pacific, which is tied to stronger vertical wind shear and lower relative humidity. The opposite responses of TC activity to AMV+ are attributed to strengthened Walker Circulation between the Atlantic and Pacific.
AB - This research assesses the influences of Atlantic Multidecadal Variability (AMV) on global tropical cyclones (TCs) using two large ensembles of idealized global climate model simulations with opposite signs of AMV forcings superimposed (i.e., AMV+ and AMV–). We first detect TCs and then compare TC activity by basin in the two AMV experiments. We find contrasting responses of Atlantic and Pacific TC frequency to the AMV anomalies. Compared to AMV–, AMV+ significantly increases TC frequency in the North Atlantic, including those making landfalls. The increase is explained by warmer sea surface temperature, higher relative humidity, increased relative vorticity, and weaker vertical wind shear under AMV+. By contrast, AMV+ decreases TC occurrence over the western North Pacific and South Pacific, which is tied to stronger vertical wind shear and lower relative humidity. The opposite responses of TC activity to AMV+ are attributed to strengthened Walker Circulation between the Atlantic and Pacific.
UR - https://www.scopus.com/pages/publications/85160543067
U2 - 10.1029/2023GL102959
DO - 10.1029/2023GL102959
M3 - Article
AN - SCOPUS:85160543067
SN - 0094-8276
VL - 50
JO - Geophysical Research Letters
JF - Geophysical Research Letters
IS - 10
M1 - e2023GL102959
ER -