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Humidity variations across the edge of trade wind cumuli: Observations and dynamical implications

机译:商风积云边缘的湿度变化:观测和动力学意义

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Aircraft data are used to analyze the composite horizontal structure of shallow tropical maritime cumulus clouds across the cloud edge into the ambient clear air. The emphasis is on humidity variations, and their implications for cumulus dynamics. The Lyman-a humidity probe has the required fast response and is unaffected by wetting in-cloud. On average the water vapor mixing ratio increases gradually from the clear air towards the cloud edge, and air is often sub-saturated in the outer fringe of the cloud, implying that droplets are evaporating. Similarly, conserved variables such as the total water concentration and the wet equivalent potential temperature gradually transition in the "margin" of cumulus clouds. The gradual change of water vapor mixing ratio and conserved variables across the cloud edge highlights the significance of lateral entrainment and detrainment, and it reveals a characteristic penetration depth of mixing eddies of 10 to 15% of the cloud diameter, or about 50 m. An ~ 100 m wide region just outside the cloud is generally characterized by negatively buoyant, sinking air. The excess water vapor in this region, also documented in several recent studies, confirms that the negative buoyancy is caused by evaporative cooling in the cloud margin. Although rather weak, this cooling appears strong enough to evoke a dynamical response, even in the relative small trade wind cumuli.
机译:飞机数据用于分析跨云边缘进入环境晴朗空气的热带浅海积云的复合水平结构。重点是湿度变化及其对积云动态的影响。 Lyman-a湿度探头具有所需的快速响应,并且不受云中湿润的影响。平均而言,水蒸气的混合比从清澈的空气向云的边缘逐渐增加,并且空气通常在云的外部边缘中不饱和,这意味着液滴正在蒸发。类似地,诸如积水总浓度和湿当量潜在温度之类的守恒变量在积云的“边缘”逐渐过渡。水汽混合比和整个云边缘的守恒变量的逐渐变化突出了侧向夹带和减气的重要性,并且揭示了混合涡流的特征渗透深度为云直径的10%至15%,即约50 m。云外一个约100 m宽的区域通常以负浮力,下沉的空气为特征。最近在一些研究中也记录了该区域中过量的水蒸气,证实了负浮力是由云层边缘的蒸发冷却引起的。尽管相当微弱,但这种冷却似乎足以引起动态响应,即使在相对较小的贸易风积云中也是如此。

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  • 来源
    《Atmospheric research》 |2010年第2期|P.144-156|共13页
  • 作者

    Yonggang Wang; Bart Geerts;

  • 作者单位

    Department of Atmospheric Sciences, University of Wyoming, Laramie WY 82071, USA;

    rnDepartment of Atmospheric Sciences, University of Wyoming, Laramie WY 82071, USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:36:08

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