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The Madden–Julian Oscillation in the Energy Exascale Earth System Model Version 1

Title
The Madden–Julian Oscillation in the Energy Exascale Earth System Model Version 1
Authors
Kim D.Kang D.Ahn M.-S.DeMott C.Hsu C.-W.Yoo C.Leung L.R.Hagos S.Rasch P.J.
Ewha Authors
유창현
SCOPUS Author ID
유창현scopus
Issue Date
2022
Journal Title
Journal of Advances in Modeling Earth Systems
ISSN
1942-2466JCR Link
Citation
Journal of Advances in Modeling Earth Systems vol. 14, no. 2
Keywords
Earth system modelingMadden-Julian oscillationprocess-oriented diagnostics
Publisher
John Wiley and Sons Inc
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
The present study examines the characteristics of the Madden–Julian Oscillation (MJO) events represented in the Energy Exascale Earth System Model version 1 (E3SMv1), DOE’s new Earth system model. The coupled E3SMv1 realistically simulates the eastward propagation of precipitation and moist static energy (MSE) anomalies associated with the MJO. As in observations, horizontal moisture advection and longwave radiative feedback are found to be the dominant processes in E3SMv1 that lead to the eastward movement and maintenance of the MJO MSE anomalies, respectively. Modulation of the diurnal cycle of precipitation in the Maritime Continent region by the MJO is also well represented in the model despite systematic biases in the magnitude and phase of the precipitation diurnal cycle. On the MJO impact over the midlatitude, E3SMv1 reasonably captures the pattern of the MJO teleconnections across the North Pacific and North America, with improvement in the performance in a high-resolution version, despite the magnitude being a bit weaker than the observed. Regarding the interannual variability of the MJO, the El Niño-Southern Oscillation (ENSO) modulation of the zonal extent of MJO’s eastward propagation, as well as associated changes in the mean state moisture gradient in the tropical west Pacific, are well reproduced in the model. However, MJO in E3SMv1 exhibits no sensitivity to the Quasi-Biennial Oscillation (QBO), with the MJO propagation characteristics being almost identical between easterly QBO and westerly QBO years. Processes that have been suggested as critical to MJO simulation are also examined by utilizing recently developed process-oriented diagnostics. © 2022 The Authors. Journal of Advances in Modeling Earth Systems published by Wiley Periodicals LLC on behalf of American Geophysical Union.
DOI
10.1029/2021MS002842
Appears in Collections:
공과대학 > 기후에너지시스템공학과 > Journal papers
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