Persistent Ocean Anomalies as a Response to Northern Hemisphere Heating Induced by Biomass Burning Variability

Author:

Yamaguchi Ryohei1ORCID,Kim Ji-Eun23,Rodgers Keith B.23,Stein Karl23,Timmermann Axel23,Lee Sun-Seon23,Huang Lei4,Stuecker Malte F.5,Fasullo John T.6,Danabasoglu Gokhan6,Deser Clara6,Lamarque Jean-Francois6,Rosenbloom Nan A.6,Edwards Jim6

Affiliation:

1. a Research Institute for Global Change, Japan Agency for Marine-Earth Science and Technology, Yokosuka, Japan

2. b Center for Climate Physics, Institute for Basic Science, Busan, South Korea

3. c Pusan National University, Busan, South Korea

4. d College of Resource Environment and Tourism, Capital Normal University, China

5. e Department of Oceanography and International Pacific Research Center, School of Ocean and Earth Science and Technology, University of Hawai‘i at Mānoa, Honolulu, Hawaii

6. f Climate and Global Dynamics Laboratory, National Center for Atmospheric Research, Boulder, Colorado

Abstract

Abstract Biomass burning aerosol (BBA) emissions in the Coupled Model Intercomparison Project phase 6 (CMIP6) historical forcing fields have enhanced temporal variability during the years 1997–2014 compared to earlier periods. Recent studies document that the corresponding inhomogeneous shortwave forcing over this period can cause changes in clouds, permafrost, and soil moisture, which contribute to a net terrestrial Northern Hemisphere warming relative to earlier periods. Here, we investigate the ocean response to the hemispherically asymmetric warming, using a 100-member ensemble of the Community Earth System Model version 2 Large Ensemble forced by two different BBA emissions (CMIP6 default and temporally smoothed over 1990–2020). Differences between the two subensemble means show that ocean temperature anomalies occur during periods of high BBA variability and subsequently persist over multiple decades. In the North Atlantic, surface warming is efficiently compensated for by decreased northward oceanic heat transport due to a slowdown of the Atlantic meridional overturning circulation. In the North Pacific, surface warming is compensated for by an anomalous cross-equatorial cell (CEC) that reduces northward oceanic heat transport. The heat that converges in the South Pacific through the anomalous CEC is shunted into the subsurface and contributes to formation of long-lasting ocean temperature anomalies. The anomalous CEC is maintained through latitude-dependent contributions from narrow western boundary currents and basinwide near-surface Ekman transport. These results indicate that interannual variability in forcing fields may significantly change the background climate state over long time scales, presenting a potential uncertainty in CMIP6-class climate projections forced without interannual variability.

Funder

National Science Foundation

National Oceanic and Atmospheric Administration

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference48 articles.

1. Defining pyromes and global syndromes of fire regimes;Archibald, S.,2013

2. Causes of interannual–decadal variability in the meridional overturning circulation of the midlatitude North Atlantic Ocean;Biastoch, A.,2008

3. The path to CAM6: Coupled simulations with CAM5.4 and CAM5.5;Bogenschutz, P. A.,2018

4. Response of the ITCZ to Northern Hemisphere cooling;Broccoli, A. J.,2006

5. Extratropical cooling, interhemispheric thermal gradients, and tropical climate change;Chiang, J. C. H.,2012

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