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Interannual variability in cloudiness, sea surface temperature, and atmospheric circulation over the midlatitude North Pacific during summer.

机译:夏季中纬度北太平洋上空的云量,海面温度和大气环流的年际变化。

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摘要

Large-scale interannual and interdecadal variability in surface-observed marine stratiform cloud (MSC) amount and sea surface temperature (SST) are closely coupled over the central North Pacific during summer. Increased (decreased) MSC amount occurs with decreased (increased) SST, resulting from coincident meridional shifts in the regions of strong SST gradient and cloud gradient between subtropics and midlatitudes. Investigation of variability in low cloud types indicates that a shift in the SST gradient region produces corresponding shifts in the transition from subtropical cumulus to midlatitude stratus and the transition from midlatitude stratocumulus to subtropical cumulus. Since MSC reduces the amount of radiation absorbed by the ocean, these processes create the potential for a positive MSC feedback on SST; however, estimated MSC radiative anomalies are observed to have little net impact on SST, probably due to the tendency for compensation by latent heat flux anomalies.; Large-scale interannual and interdecadal variability in nimbostratus and SST are also coupled over the central North Pacific during summer, suggesting coincident meridional shifts in the storm track and region of strong SST gradient. This suggests synoptic activity also plays a role in MSC variability.
机译:夏季,在北太平洋中部,地表观测海洋层状云(MSC)量和海面温度(SST)的大规模年际和年代际变化密切相关。 MSC量增加(减少)而SST减少(增加)是由于亚热带和中纬度之间强SST梯度和云层梯度区域中的子午位移一致所致。对低云类型变化的研究表明,SST梯度区域的变化在从亚热带积云到中纬度地层的转变以及从中纬度叠层积云到亚热带积云的转变中产生了相应的变化。由于MSC减少了海洋吸收的辐射量,因此这些过程为MSC在SST上产生积极的反馈创造了可能。然而,估计的MSC辐射异常对SST的净影响很小,这可能是由于潜热通量异常有补偿的趋势。在夏季,北太平洋中部的雨云层和海温的大规模年际和年代际变化也耦合在一起,这表明风暴路径和强海温梯度地区的子午经移是同时发生的。这表明天气活动在MSC变异中也起作用。

著录项

  • 作者

    Norris, Joel Roland.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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