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contributor authorFeldl, Nicole
contributor authorRoe, Gerard H.
date accessioned2017-06-09T17:07:34Z
date available2017-06-09T17:07:34Z
date copyright2013/11/01
date issued2013
identifier issn0894-8755
identifier otherams-79770.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4222586
description abstracthe climate feedback framework partitions the radiative response to climate forcing into contributions from individual atmospheric processes. The goal of this study is to understand the closure of the energy budget in as much detail and precision as possible, within as clean an experimental setup as possible. Radiative kernels and radiative forcing are diagnosed for an aquaplanet simulation under perpetual equinox conditions. The role of the meridional structure of feedbacks, heat transport, and nonlinearities in controlling the local climate response is characterized. Results display a combination of positive subtropical feedbacks and polar amplified warming. These two factors imply a critical role for transport and nonlinear effects, with the latter acting to substantially reduce global climate sensitivity. At the hemispheric scale, a rich picture emerges: anomalous divergence of heat flux away from positive feedbacks in the subtropics; nonlinear interactions among and within clear-sky feedbacks, which reinforce the pattern of tropical cooling and high-latitude warming tendencies; and strong ice-line feedbacks that drive further amplification of polar warming. These results have implications for regional climate predictability, by providing an indication of how spatial patterns in feedbacks combine to affect both the local and nonlocal climate response, and how constraining uncertainty in those feedbacks may constrain the climate response.
publisherAmerican Meteorological Society
titleThe Nonlinear and Nonlocal Nature of Climate Feedbacks
typeJournal Paper
journal volume26
journal issue21
journal titleJournal of Climate
identifier doi10.1175/JCLI-D-12-00631.1
journal fristpage8289
journal lastpage8304
treeJournal of Climate:;2013:;volume( 026 ):;issue: 021
contenttypeFulltext


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