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      <ref-type name="Journal Article">17</ref-type>
      <work-type>ACL : Articles dans des revues avec comité de lecture répertoriées par l'AERES</work-type>
      <contributors>
        <authors>
          <author>
            <style face="normal" font="default" size="100%">Bellon, G.</style>
          </author>
          <author>
            <style face="normal" font="default" size="100%">Sobel, A. H.</style>
          </author>
          <author>
            <style face="bold" font="default" size="100%">Vialard, Jérôme</style>
          </author>
        </authors>
      </contributors>
      <titles>
        <title>Ocean-atmosphere coupling in the monsoon intraseasonal oscillation : a simple model study</title>
        <secondary-title>Journal of Climate</secondary-title>
      </titles>
      <pages>5254-5270</pages>
      <dates>
        <year>2008</year>
      </dates>
      <call-num>fdi:010044088</call-num>
      <language>ENG</language>
      <periodical>
        <full-title>Journal of Climate</full-title>
      </periodical>
      <isbn>0894-8755</isbn>
      <accession-num>ISI:000260012200006</accession-num>
      <number>20</number>
      <electronic-resource-num>10.1175/2008jcli2305.1</electronic-resource-num>
      <urls>
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          <url>https://www.documentation.ird.fr/hor/fdi:010044088</url>
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          <url>https://www.documentation.ird.fr/intranet/publi/2008/11/010044088.pdf</url>
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      </urls>
      <volume>21</volume>
      <remote-database-provider>Horizon (IRD)</remote-database-provider>
      <abstract>A simple coupled model is used in a zonally symmetric aquaplanet configuration to investigate the effect of ocean-atmosphere coupling on the Asian monsoon intraseasonal oscillation. The model consists of a linear atmospheric model of intermediate complexity based on quasi-equilibrium theory coupled to a simple, linear model of the upper ocean. This model has one unstable eigenmode with a period in the 30-60-day range and a structure similar to the observed northward-propagating intraseasonal oscillation in the Bay of Bengal/west Pacific sector. The ocean-atmosphere coupling is shown to have little impact on either the growth rate or latitudinal structure of the atmospheric oscillation, but it reduces the oscillation's period by a quarter. At latitudes corresponding to the north of the Indian Ocean, the sea surface temperature (SST) anomalies lead the precipitation anomalies by a quarter of a period, similarly to what has been observed in the Bay of Bengal. The mixed layer depth is in phase opposition to the SST: a monsoon break corresponds to both a warming and a shoaling of the mixed layer. This behavior results from the similarity between the patterns of the predominant processes: wind-induced surface heat flux and wind stirring. The instability of the seasonal monsoon flow is sensitive to the seasonal mixed layer depth: the oscillation is damped when the oceanic mixed layer is thin (about 10 m deep or thinner), as in previous experiments with several models aimed at addressing the boreal winter Madden-Julian oscillation. This suggests that the weak thermal inertia of land might explain the minima of intraseasonal variance observed over the Asian continent.</abstract>
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