Surface ocean warming near the core of hurricane Sam and its representation in forecast models

被引:1
作者
Chiodi, Andrew M. [1 ,2 ]
Hristova, Hristina [1 ,3 ]
Foltz, Gregory R. [4 ]
Zhang, Jun A. [4 ,5 ]
Mordy, Calvin W. [1 ,2 ]
Edwards, Catherine R. [6 ]
Zhang, Chidong [1 ]
Meinig, Christian [1 ,11 ]
Zhang, Dongxiao [1 ,2 ]
Mazza, Edoardo [2 ]
Cokelet, Edward D. [1 ]
Burger, Eugene F. [1 ]
Bringas, Francis [4 ]
Goni, Gustavo [4 ]
Kim, Hyun-Sook [4 ]
Chen, Sue [7 ]
Trinanes, Joaquin [4 ,5 ,8 ]
Bailey, Kathleen [9 ]
O'Brien, Kevin M. [1 ,2 ]
Morales-Caez, Maria [10 ]
Lawrence-Slavas, Noah [1 ]
Chen, Shuyi S. [2 ]
Chen, Xingchao [10 ]
机构
[1] NOAA, Pacific Marine Environm Lab, Seattle, WA 98115 USA
[2] Univ Washington, Cooperat Inst Climate Ocean & Ecosyst Studies, Seattle, WA 98195 USA
[3] Univ Hawaii, Cooperat Inst Marine & Atmospher Res, Honolulu, HI USA
[4] NOAA, Atlantic Ocean & Meteorol Lab, Miami, FL USA
[5] Univ Miami, Cooperat Inst Marine & Atmospher Studies, Miami, FL USA
[6] Univ Georgia, Skidaway Inst Oceanog, Savannah, GA USA
[7] US Naval Res Lab, Marine Meteorol Div, Monterey, CA USA
[8] Univ Santiago De Compostela, Technol Res Inst, Lab Syst, Santiago, Spain
[9] NOAA, US Integrated Ocean Observing Syst, Silver Spring, MD USA
[10] Penn State Univ, State Coll, PA USA
[11] Pacific Northwest Natl Lab, Marineand Coastal Res Lab, Sequim, WA USA
关键词
tropical cyclones; saildrone intercept; enthalpy flux; salinity stratification; temperature inversions; ARGO; seagliders; hurricane monitoring and forecasting; ATMOSPHERE-WAVE-OCEAN; ORINOCO RIVER PLUME; AIR-SEA INTERACTION; TROPICAL CYCLONE; AMAZON; FLUX; VERIFICATION; ATLANTIC; VEHICLE; IMPACT;
D O I
10.3389/fmars.2023.1297974
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
On September 30, 2021, a saildrone uncrewed surface vehicle intercepted Hurricane Sam in the northwestern tropical Atlantic and provided continuous observations near the eyewall. Measured surface ocean temperature unexpectedly increased during the first half of the storm. Saildrone current shear and upper-ocean structure from the nearest Argo profiles show an initial trapping of wind momentum by a strong halocline in the upper 30 m, followed by deeper mixing and entrainment of warmer subsurface water into the mixed layer. The ocean initial conditions provided to operational forecast models failed to capture the observed upper-ocean structure. The forecast models failed to simulate the warming and developed a surface cold bias of similar to 0.5degree celsius by the time peak winds were observed, resulting in a 12-17% underestimation of surface enthalpy flux near the eyewall. Results imply that enhanced upper-ocean observations and, critically, improved assimilation into the hurricane forecast systems, could directly benefit hurricane intensity forecasts.
引用
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页数:17
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