Guest post: Why natural cycles only play small role in rate of global warming
Dr Karsten Haustein and Dr Friederike Otto are scientists at the University of Oxford’s Environmental Change Institute; Zeke Hausfather is the US analyst for Carbon Brief; Peter Jacobs is a PhD student at George Mason University.The role of variability due to natural ocean cycles in global warming is a long-standing debate in climate science.The scientific community overwhelmingly agrees that human activities are responsible for the observed increase in temperatures for the last half-century. However, the relative influences of natural drivers of climate change – such as volcanic eruptions, ocean cycles, and the sun – on warmer and cooler phases superimposed on the long-term warming trend is still an area of active research.In a paper published in the Journal of Climate, we find that the combination of human and natural climate forcings – increased atmospheric CO2 and other greenhouse gases, volcanoes, solar activity and aerosols – can explain virtually all of the long-term change in the temperature record over the past 150 years.While year-to-year ups and downs are related to the El Niño-Southern Oscillation (ENSO) phenomenon, we find that variability due to slow-acting ocean cycles is not necessary to explain the longer-term changes in the historical temperature record.§ Model matches observed warming
Prior studiesled to suggestionsAtlantic Multidecadal Variabilitytwo-box impulse response model§ Different components of warming
§ Comparisons to palaeoclimate changes
climate “proxies§ Future warming
still some differencescomplex climate model simulationsCMIP6 modelling projectArticle information
Haustein, K. et al. (2019) A limited role for unforced internal variability in 20th century warming, Journal of Climate, doi:10.1175/JCLI-D-18-0555.1