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DOI10.1007/s00382-019-04780-7
Simulated future changes in ENSO dynamics in the framework of the linear recharge oscillator model
Dommenget D.; Vijayeta A.
发表日期2019
ISSN0930-7575
起始页码4233
结束页码4248
卷号53期号:2020-07-08
英文摘要This study analysed the changes in El Niño Southern Oscillation (ENSO) dynamics as they are simulated in 25 models of the CMIP5 simulations for the RCP8.5 scenario relative to the historical control simulation. The ENSO linear recharge oscillator (ReOsc) framework is used to focus on changes in the growth rate of eastern equatorial Pacific sea surface temperature (T) and mean equatorial Pacific thermocline depth (h) anomalies, the coupling between the two and the noise forcing driving the ENSO variability. We further focused on the feedbacks controlling the growth rate of T, namely the Bjerknes wind to sea surface temperature (SST) feedback, the atmospheric net heat flux and the residual oceanic feedback. We find significant changes in nearly all of these important elements of the ENSO dynamics, despite the fact that the ensemble shows very little changes in the overall ENSO variability. The growth rate of T weakens resulting from a combination of increased negative atmospheric net heat flux feedbacks, increased positive Bjerknes wind-SST feedback and increased residual oceanic feedbacks. Further notable changes are, an increase in the growth rate of h and a stronger coupling of T to h. Sensitivity analysis of the ReOsc model can explain why these strong dynamical changes lead to effectively no changes in the overall ENSO variability, but are likely to affect the predictability of ENSO. © 2019, Springer-Verlag GmbH Germany, part of Springer Nature.
语种英语
scopus关键词atmosphere-ocean coupling; climate modeling; CMIP; El Nino-Southern Oscillation; future prospect; regional climate; sea surface temperature; thermocline; Pacific Ocean; Pacific Ocean (Equatorial)
来源期刊Climate Dynamics
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/145980
作者单位School of Earth, Atmosphere and Environment, Monash University, Clayton, VIC 3800, Australia
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Dommenget D.,Vijayeta A.. Simulated future changes in ENSO dynamics in the framework of the linear recharge oscillator model[J],2019,53(2020-07-08).
APA Dommenget D.,&Vijayeta A..(2019).Simulated future changes in ENSO dynamics in the framework of the linear recharge oscillator model.Climate Dynamics,53(2020-07-08).
MLA Dommenget D.,et al."Simulated future changes in ENSO dynamics in the framework of the linear recharge oscillator model".Climate Dynamics 53.2020-07-08(2019).
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