TY - JOUR
T1 - Predictability of the recent slowdown and subsequent recovery of large-scale surface warming using statistical methods
AU - Mann, Michael E.
AU - Steinman, Byron A.
AU - Miller, Sonya K.
AU - Frankcombe, Leela M.
AU - England, Matthew H.
AU - Cheung, Anson H.
N1 - Publisher Copyright:
© 2016. American Geophysical Union. All Rights Reserved.
PY - 2016/4/16
Y1 - 2016/4/16
N2 - The temporary slowdown in large-scale surface warming during the early 2000s has been attributed to both external and internal sources of climate variability. Using semiempirical estimates of the internal low-frequency variability component in Northern Hemisphere, Atlantic, and Pacific surface temperatures in concert with statistical hindcast experiments, we investigate whether the slowdown and its recent recovery were predictable. We conclude that the internal variability of the North Pacific, which played a critical role in the slowdown, does not appear to have been predictable using statistical forecast methods. An additional minor contribution from the North Atlantic, by contrast, appears to exhibit some predictability. While our analyses focus on combining semiempirical estimates of internal climatic variability with statistical hindcast experiments, possible implications for initialized model predictions are also discussed.
AB - The temporary slowdown in large-scale surface warming during the early 2000s has been attributed to both external and internal sources of climate variability. Using semiempirical estimates of the internal low-frequency variability component in Northern Hemisphere, Atlantic, and Pacific surface temperatures in concert with statistical hindcast experiments, we investigate whether the slowdown and its recent recovery were predictable. We conclude that the internal variability of the North Pacific, which played a critical role in the slowdown, does not appear to have been predictable using statistical forecast methods. An additional minor contribution from the North Atlantic, by contrast, appears to exhibit some predictability. While our analyses focus on combining semiempirical estimates of internal climatic variability with statistical hindcast experiments, possible implications for initialized model predictions are also discussed.
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U2 - 10.1002/2016GL068159
DO - 10.1002/2016GL068159
M3 - Article
AN - SCOPUS:84979489337
SN - 0094-8276
VL - 43
SP - 3459
EP - 3467
JO - Geophysical Research Letters
JF - Geophysical Research Letters
IS - 7
ER -