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QBO/Solar Modulation of the Boreal Winter Madden-Julian Oscillation: The Role of Extratropical Wave Forcing in Late Fall / Early Winter
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<p>The tropical Madden-Julian oscillation (MJO) is the strongest of the intraseasonal climate oscillations. &#160;It generates a Rossby wave train that can be associated with high-impact weather events at northern midlatitudes in winter and spring. &#160;Here, we investigate using 41 years of ECMWF reanalysis data (1979-2019) why static stabilities in the tropical lower stratosphere are unusually low under easterly QBO and solar minimum conditions, leading to stronger MJO episodes. &#160;Results indicate an important role for extratropical wave forcing events, including stratospheric warmings, occurring preferentially in late fall and early winter during QBOE and SMIN. &#160;This increases the tropical upwelling rate beyond that caused by the QBO induced meridional circulation alone, further reducing lower stratospheric temperatures and static stability during northern winter. &#160;In many but not all years, major sudden stratospheric warmings (SSWs) contribute significantly to the results obtained here. &#160;Of the 11 clear QBOE years in the study period, six had SSWs in early winter prior to Jan. 15. &#160;Of the 12 clear QBOW years, none had early winter SSWs while six had SSWs in late winter after Jan. 15. &#160;There are two main implications of these results: (1) Observations of wave forcing and tropical static stabilities in late fall / early winter, combined with the known QBO and solar phases, may provide a means of projecting the likely strength of the MJO in a given winter; (2) A necessary prerequisite for a successful simulation of the QBO/solar - MJO connection in a global climate model may be the ability to simulate a preferred occurrence of extratropical wave forcing events, including SSWs, in early winter under QBOE and SMIN conditions.&#160;</p>
Title: QBO/Solar Modulation of the Boreal Winter Madden-Julian Oscillation: The Role of Extratropical Wave Forcing in Late Fall / Early Winter
Description:
<p>The tropical Madden-Julian oscillation (MJO) is the strongest of the intraseasonal climate oscillations.
&#160;It generates a Rossby wave train that can be associated with high-impact weather events at northern midlatitudes in winter and spring.
&#160;Here, we investigate using 41 years of ECMWF reanalysis data (1979-2019) why static stabilities in the tropical lower stratosphere are unusually low under easterly QBO and solar minimum conditions, leading to stronger MJO episodes.
&#160;Results indicate an important role for extratropical wave forcing events, including stratospheric warmings, occurring preferentially in late fall and early winter during QBOE and SMIN.
&#160;This increases the tropical upwelling rate beyond that caused by the QBO induced meridional circulation alone, further reducing lower stratospheric temperatures and static stability during northern winter.
&#160;In many but not all years, major sudden stratospheric warmings (SSWs) contribute significantly to the results obtained here.
&#160;Of the 11 clear QBOE years in the study period, six had SSWs in early winter prior to Jan.
15.
&#160;Of the 12 clear QBOW years, none had early winter SSWs while six had SSWs in late winter after Jan.
15.
&#160;There are two main implications of these results: (1) Observations of wave forcing and tropical static stabilities in late fall / early winter, combined with the known QBO and solar phases, may provide a means of projecting the likely strength of the MJO in a given winter; (2) A necessary prerequisite for a successful simulation of the QBO/solar - MJO connection in a global climate model may be the ability to simulate a preferred occurrence of extratropical wave forcing events, including SSWs, in early winter under QBOE and SMIN conditions.
&#160;</p>.
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