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首页> 外文期刊>Geophysical Research Letters >Atmospheric sounding over the winter Kuroshio Extension: Effect of surface stability on atmospheric boundary layer structure
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Atmospheric sounding over the winter Kuroshio Extension: Effect of surface stability on atmospheric boundary layer structure

机译:冬季黑潮延伸期的大气探测:表面稳定性对大气边界层结构的影响

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摘要

Shipboard radiosonde surveys were conducted during the 2003-04 winter east of Japan to study atmospheric boundary layer (ABL) structure over the Kuroshio Extension. ABL displayed large variations in vertical structure, most of which are attributable to changes in atmospheric surface stability. Where the surface atmosphere was unstable (neutral) as measured by the sea-air temperature difference, surface turbulent heat flux increased (decreased) and a mixed-layer developed (undeveloped) with weakened (intensified) vertical wind shear. A linear regression analysis indicates that ABL height tends to increase by 1km as the sea-air temperature difference increases by 7 degrees C or surface turbulent heat flux by 500 Wm(-2). While meridional thermal advection by weather disturbances seems to cause much of atmospheric stability variability during the 43-day surveys, the strong sensitivity of vertical mixing and wind shear to stability is consistent with the observed in-phase covariability of SST and surface wind from satellite on monthly and longer timescales.
机译:在日本东部2003-04冬季冬季进行了舰载无线电探空仪调查,以研究黑潮延伸段上方的大气边界层(ABL)结构。 ABL在垂直结构上显示出很大的变化,其中大部分可归因于大气表面稳定性的变化。通过海温差测量,表面大气不稳定(中性),表面湍流热通量增加(减少),混合层展开(未展开),垂直风切变减弱(增强)。线性回归分析表明,随着海水温度差增加7摄氏度或表面湍流通量增加500 Wm(-2),ABL高度会增加1km。尽管在43天的调查中,天气扰动引起的子午热平流似乎引起了大部分大气稳定性的变化,但垂直混合和风切变对稳定性的强烈敏感性与观测到的SST和卫星表面风的同相协变一致。每月或更长时间。

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