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Artículo

Future Atmospheric Rivers and Impacts on Precipitation: Overview of the ARTMIP Tier 2 High-Resolution Global Warming Experiment

Shields, Christine A.; Payne, Ashley E.; Shearer, Eric Jay; Wehner, Michael; O'Brien, Travis Allen; Rutz, Jonathan J.; Leung, Ruby; Ralph, F. Martin; Marquardt Collow, Allison B.; Ullrich, Paul; Dong, Qizhen; Gershunov, Alexander; Griffith, Helen; Guan, Bin; Lora, Juan Manuel; Lu, Mengqian; McClenny, Elizabeth; Nardi, Kyle M.; Pan, Mengxin; Qian, Yun; Ramos, Alexandre M.; Shulgina, Tamara; Viale, MaximilianoIcon ; Sarangi, Chandan; Tomé, Ricardo; Zarzycki, Colin
Fecha de publicación: 14/03/2023
Editorial: American Geophysical Union
Revista: Geophysical Research Letters
ISSN: 0094-8276
e-ISSN: 1944-8007
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Meteorología y Ciencias Atmosféricas

Resumen

Atmospheric rivers (ARs) are long, narrow synoptic scale weather features important for Earth’s hydrological cycle typically transporting water vapor poleward, delivering precipitation important for local climates. Understanding ARs in a warming climate is problematic because the AR response to climate change is tied to how the feature is defined. The Atmospheric River Tracking Method Intercomparison Project (ARTMIP) provides insights into this problem by comparing 16 atmospheric river detection tools (ARDTs) to a common data set consisting of high resolution climate change simulations from a global atmospheric general circulation model. ARDTs mostly show increases in frequency and intensity, but the scale of the response is largely dependent on algorithmic criteria. Across ARDTs, bulk characteristics suggest intensity and spatial footprint are inversely correlated, and most focus regions experience increases in precipitation volume coming from extreme ARs. The spread of the AR precipitation response under climate change is large and dependent on ARDT selection.
Palabras clave: ATMOSPHERIC RIVER DETECTION TOOLS , ATMOSPHERIC RIVERS , CLIMATOLOGY , HIGH RESOLUTION CLIMATE CHANGE , PRECIPITATION AND EXTREMES , UNCERTAINTY QUANTIFICATION
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution 2.5 Unported (CC BY 2.5)
Identificadores
URI: http://hdl.handle.net/11336/233400
URL: https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2022GL102091
DOI: http://dx.doi.org/10.1029/2022GL102091
Colecciones
Articulos(IANIGLA)
Articulos de INST. ARG. DE NIVOLOGIA, GLACIOLOGIA Y CS. AMBIENT
Citación
Shields, Christine A.; Payne, Ashley E.; Shearer, Eric Jay; Wehner, Michael; O'Brien, Travis Allen; et al.; Future Atmospheric Rivers and Impacts on Precipitation: Overview of the ARTMIP Tier 2 High-Resolution Global Warming Experiment; American Geophysical Union; Geophysical Research Letters; 50; 6; 14-3-2023; 1 - 9
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