The Physical Climate at Global Warming Thresholds as Seen in the U.K. Earth System Model

Author:

Abstract

AbstractA key goal of the 2015 Paris Climate Agreement is to keep global mean temperature change at 2°C and if possible under 1.5°C by the end of the century. To investigate the likelihood of achieving this target, we calculate the year of exceedance of a given global warming threshold (GWT) temperature across 32 CMIP6 models for Shared Socioeconomic Pathway (SSP) and radiative forcing combinations included in the Tier 1 ScenarioMIP simulations. Threshold exceedance year calculations reveal that a majority of CMIP6 models project warming beyond 2°C by the end of the century under every scenario or pathway apart from the lowest emission scenarios considered, SSP1–1.9 and SSP1–2.6, which is largely a function of the ScenarioMIP experiment design. The U.K. Earth System Model (UKESM1) ScenarioMIP projections are analyzed in detail to assess the regional and seasonal variations in climate at different warming levels. The warming signal emerging by midcentury is identified as significant and distinct from internal climate variability in all scenarios considered and includes warming summers in the Mediterranean, drying in the Amazon, and heavier Indian monsoons. Arctic sea ice depletion results in prominent amplification of warming and tropical warming patterns emerge that are distinct from interannual variability. Climate changes projected for a 2°C warmer world are in almost all cases exacerbated with further global warming (e.g., to a 4°C warmer world).

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference166 articles.

1. Differential climate impacts for policy-relevant limits to global warming: The case of 1.5°C and 2°C;Schleussner;Earth Syst. Dyn.,2016

2. andCoauthors Framing context and methods Climate Change The Physical Basis Cambridge University Press https www ipcc ch report sixth assessment report working group i in press;Chen;Science,2021

3. andL South American fires and their impacts on ecosystems increase with continued emissions Meteor https org in press;Burton;Soc,2021

4. Climate model projections from the Scenario Model Intercomparison Project (ScenarioMIP) of CMIP6;Tebaldi;Earth Syst. Dyn.,2021

5. The central role of diminishing sea ice in recent Arctic temperature amplification;Screen;Nature,2010

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