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Amplified risk of spatially compounding droughts during co-occurrences of modes of natural ocean variability
by
Singh, Jitendra
, Ashfaq, Moetasim
, Anderson, Weston B.
, Skinner, Christopher B.
, Singh, Deepti
in
704/106
/ 704/106/694
/ Amplification
/ At risk populations
/ Atmospheric Sciences
/ Climate Change/Climate Change Impacts
/ Climate models
/ Climate system
/ Climatology
/ Cold
/ Compounding
/ Dipoles
/ Drought
/ Earth and Environmental Science
/ Earth Sciences
/ El Nino
/ Environmental risk
/ ENVIRONMENTAL SCIENCES
/ Food industry
/ Global economy
/ Precipitation
/ Seasonal variations
/ Tropical environments
2021
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Amplified risk of spatially compounding droughts during co-occurrences of modes of natural ocean variability
by
Singh, Jitendra
, Ashfaq, Moetasim
, Anderson, Weston B.
, Skinner, Christopher B.
, Singh, Deepti
in
704/106
/ 704/106/694
/ Amplification
/ At risk populations
/ Atmospheric Sciences
/ Climate Change/Climate Change Impacts
/ Climate models
/ Climate system
/ Climatology
/ Cold
/ Compounding
/ Dipoles
/ Drought
/ Earth and Environmental Science
/ Earth Sciences
/ El Nino
/ Environmental risk
/ ENVIRONMENTAL SCIENCES
/ Food industry
/ Global economy
/ Precipitation
/ Seasonal variations
/ Tropical environments
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Amplified risk of spatially compounding droughts during co-occurrences of modes of natural ocean variability
by
Singh, Jitendra
, Ashfaq, Moetasim
, Anderson, Weston B.
, Skinner, Christopher B.
, Singh, Deepti
in
704/106
/ 704/106/694
/ Amplification
/ At risk populations
/ Atmospheric Sciences
/ Climate Change/Climate Change Impacts
/ Climate models
/ Climate system
/ Climatology
/ Cold
/ Compounding
/ Dipoles
/ Drought
/ Earth and Environmental Science
/ Earth Sciences
/ El Nino
/ Environmental risk
/ ENVIRONMENTAL SCIENCES
/ Food industry
/ Global economy
/ Precipitation
/ Seasonal variations
/ Tropical environments
2021
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Amplified risk of spatially compounding droughts during co-occurrences of modes of natural ocean variability
Journal Article
Amplified risk of spatially compounding droughts during co-occurrences of modes of natural ocean variability
2021
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Overview
Spatially compounding droughts over multiple regions pose amplifying pressures on the global food system, the reinsurance industry, and the global economy. Using observations and climate model simulations, we analyze the influence of various natural Ocean variability modes on the likelihood, extent, and severity of compound droughts across ten regions that have similar precipitation seasonality and cover important breadbaskets and vulnerable populations. Although a majority of compound droughts are associated with El Niños, a positive Indian Ocean Dipole, and cold phases of the Atlantic Niño and Tropical North Atlantic (TNA) can substantially modulate their characteristics. Cold TNA conditions have the largest amplifying effect on El Niño-related compound droughts. While the probability of compound droughts is ~3 times higher during El Niño conditions relative to neutral conditions, it is ~7 times higher when cold TNA and El Niño conditions co-occur. The probability of widespread and severe compound droughts is also amplified by a factor of ~3 and ~2.5 during these co-occurring modes relative to El Niño conditions alone. Our analysis demonstrates that co-occurrences of these modes result in widespread precipitation deficits across the tropics by inducing anomalous subsidence, and reducing lower-level moisture convergence over the study regions. Our results emphasize the need for considering interactions within the larger climate system in characterizing compound drought risks rather than focusing on teleconnections from individual modes. Understanding the physical drivers and characteristics of compound droughts has important implications for predicting their occurrence and characterizing their impacts on interconnected societal systems.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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