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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Correlations of small cumuli droplet and drizzle drop concentrations with cloud condensation nuclei concentrations
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Correlations of small cumuli droplet and drizzle drop concentrations with cloud condensation nuclei concentrations

机译:小积云滴和毛毛雨滴浓度与云凝结核浓度的相关性

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Aircraft field measurements of cloud condensation nuclei (CCN) and cloud microphysics in maritime air masses showed ubiquitous influence of CCN. Flight averages of CCN concentrations and cloud droplet and drizzle drop concentrations were examined for as many as 17 flights during the Rain in Cumulus over the Ocean (RICO) project. CCN concentrations at only one supersaturation (S) of 1% measured at 100-m altitude were compared with cloud droplet and drizzle drop concentrations at six altitude bands between 600 and 3000 m. High positive correlations (R) between these CCN concentrations and the small size threshold of the cumulative cloud droplet concentrations (i.e., total activated cloud droplets) were found at all altitudes. These high R values also persisted for cloud parcels with a wide span of liquid water contents (LWCs), most of which were far below adiabatic (unmixed) values. For all but the lowest LWC parcels, R was essentially constant. There was an even more consistent negative R between CCN and large cloud droplet and drizzle drop concentrations. There was a sharp transition from positive to negative R over a small size range. The size at which this R transition occurred increased with altitude and LWC as overall droplet sizes increased with altitude or LWC. Entrainment seemed to show an opposite, effect on R, but this was only apparent at the highest altitudes where entrainment was greatest and only for the smallest droplet sizes. These results indicate that the effect of CCN concentrations on cloud microphysics was pervasive with altitude, LWC, cloud droplet, and drizzle drop concentrations. This indicates greater impact of the indirect aerosol effect (IAE) in both of its manifestations, first IAE cloud radiation and second IAE precipitation.
机译:飞机在海上气团中对云凝结核(CCN)和云微物理学的飞机场测量表明,CCN的影响无处不在。在海洋积雨(RICO)项目中,对多达17个航班的CCN浓度,云滴和毛毛雨滴浓度的飞行平均值进行了检查。在100-m海拔高度仅测量1%的过饱和(S)时的CCN浓度与600-3000 m六个海拔带的云滴和毛毛雨水滴浓度进行比较。在所有海拔高度下,这些CCN浓度与累积云滴浓度(即总活化云滴)的小尺寸阈值之间都具有高度正相关(R)。对于具有较大液态水含量(LWC)的云包裹,这些高R值也持续存在,其中大多数远低于绝热(未混合)值。除了最低的LWC地块外,所有其他地方的R基本上都是恒定的。 CCN与大的云滴和毛毛雨滴浓度之间存在甚至更一致的负R。在较小的尺寸范围内,从正R到负R都有急剧的转变。 R跃迁发生的大小随高度和LWC的增加而增加,而总液滴尺寸随高度或LWC的增加而增加。夹带似乎对R表现出相反的作用,但这仅在夹带最大的最高海拔高度且仅在最小液滴尺寸下才明显。这些结果表明,CCN浓度对云微观物理学的影响随高度,LWC,云滴和毛毛雨滴浓度而普遍存在。这表明间接气溶胶效应(IAE)在其两种表现形式(第一IAE云辐射和第二IAE降水)中的影响更大。

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