Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40
This study investigates seasonal modulations of the quasi‐biennial oscillation (QBO) of the tropical stratosphere. For this purpose, the Max Planck Institute Earth System Model (MPI‐ESM), which internally generates a realistic QBO compared to the ERA‐40 data set, is employed. The modeled QBO is forc...
| Published in: | Journal of Advances in Modeling Earth Systems |
|---|---|
| Main Authors: | , , |
| Format: | Article |
| Language: | English |
| Published: |
American Geophysical Union (AGU)
2013-06-01
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| Subjects: | |
| Online Access: | https://doi.org/10.1002/jame.20024 |
| _version_ | 1852710973732814848 |
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| author | Thomas R. Krismer Marco A. Giorgetta Monika Esch |
| author_facet | Thomas R. Krismer Marco A. Giorgetta Monika Esch |
| author_sort | Thomas R. Krismer |
| collection | DOAJ |
| container_title | Journal of Advances in Modeling Earth Systems |
| description | This study investigates seasonal modulations of the quasi‐biennial oscillation (QBO) of the tropical stratosphere. For this purpose, the Max Planck Institute Earth System Model (MPI‐ESM), which internally generates a realistic QBO compared to the ERA‐40 data set, is employed. The modeled QBO is forced with resolved and parametrized waves. At 5 hPa, the seasonal distribution of the onset of QBO westerly jets clusters in spring and fall due to the coupling of the QBO and the semiannual oscillation. This seasonal clustering of the westerly jets extends throughout the stratosphere, shifting to later months with increasing pressure. QBO westerly jets starting in the upper stratosphere in fall propagate to the middle stratosphere more slowly than westerly jets starting in spring. This is attributed to seasonal modulations of the QBO forcing and enhanced wave filtering by the QBO westerly jet in the lower stratosphere in fall and winter compared to spring and summer. The observed stalling of the QBO easterly jet in the lower stratosphere and the accompanied prolonged persistence of the QBO westerly jet in the vicinity of the tropopause are attributed equally to seasonal variations of the resolved and parameterized wave forcing and the advective forcing. |
| format | Article |
| id | doaj-art-bbd590c1ff8b4dc6adc05abd79ecd8a3 |
| institution | Directory of Open Access Journals |
| issn | 1942-2466 |
| language | English |
| publishDate | 2013-06-01 |
| publisher | American Geophysical Union (AGU) |
| record_format | Article |
| spelling | doaj-art-bbd590c1ff8b4dc6adc05abd79ecd8a32025-08-19T21:16:25ZengAmerican Geophysical Union (AGU)Journal of Advances in Modeling Earth Systems1942-24662013-06-015240642110.1002/jame.20024Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40Thomas R. Krismer0Marco A. Giorgetta1Monika Esch2Max Planck Institute for MeteorologyHamburg GermanyMax Planck Institute for MeteorologyHamburg GermanyMax Planck Institute for MeteorologyHamburg GermanyThis study investigates seasonal modulations of the quasi‐biennial oscillation (QBO) of the tropical stratosphere. For this purpose, the Max Planck Institute Earth System Model (MPI‐ESM), which internally generates a realistic QBO compared to the ERA‐40 data set, is employed. The modeled QBO is forced with resolved and parametrized waves. At 5 hPa, the seasonal distribution of the onset of QBO westerly jets clusters in spring and fall due to the coupling of the QBO and the semiannual oscillation. This seasonal clustering of the westerly jets extends throughout the stratosphere, shifting to later months with increasing pressure. QBO westerly jets starting in the upper stratosphere in fall propagate to the middle stratosphere more slowly than westerly jets starting in spring. This is attributed to seasonal modulations of the QBO forcing and enhanced wave filtering by the QBO westerly jet in the lower stratosphere in fall and winter compared to spring and summer. The observed stalling of the QBO easterly jet in the lower stratosphere and the accompanied prolonged persistence of the QBO westerly jet in the vicinity of the tropopause are attributed equally to seasonal variations of the resolved and parameterized wave forcing and the advective forcing.https://doi.org/10.1002/jame.20024quasi‐biennial oscillationsemiannual oscillationQBO/SAO couplingseasonal modulation of QBO forcingstalling of QBO jets in lower stratosphere |
| spellingShingle | Thomas R. Krismer Marco A. Giorgetta Monika Esch Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40 quasi‐biennial oscillation semiannual oscillation QBO/SAO coupling seasonal modulation of QBO forcing stalling of QBO jets in lower stratosphere |
| title | Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40 |
| title_full | Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40 |
| title_fullStr | Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40 |
| title_full_unstemmed | Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40 |
| title_short | Seasonal aspects of the quasi‐biennial oscillation in the Max Planck Institute Earth System Model and ERA‐40 |
| title_sort | seasonal aspects of the quasi biennial oscillation in the max planck institute earth system model and era 40 |
| topic | quasi‐biennial oscillation semiannual oscillation QBO/SAO coupling seasonal modulation of QBO forcing stalling of QBO jets in lower stratosphere |
| url | https://doi.org/10.1002/jame.20024 |
| work_keys_str_mv | AT thomasrkrismer seasonalaspectsofthequasibiennialoscillationinthemaxplanckinstituteearthsystemmodelandera40 AT marcoagiorgetta seasonalaspectsofthequasibiennialoscillationinthemaxplanckinstituteearthsystemmodelandera40 AT monikaesch seasonalaspectsofthequasibiennialoscillationinthemaxplanckinstituteearthsystemmodelandera40 |
