Vertical distribution of microphysical properties in radiation fogs — A case study

Vertical distribution of microphysical properties in radiation fogs — A case study
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辐射雾中微物理特性的垂直分布——案例研究

DOI:
10.1016/j.atmosres.2014.05.027
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发表时间:
2014
影响因子:
5.5
通讯作者:
Bendix
Bendix
中科院分区:
地球科学1区
文献类型:
--
作者:
Bendix

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本研究调查的有效性理论液态水含量(LWC)配置文件目前用于基于卫星的地面雾探测雾层,特别侧重于雾生命周期的时间动态。为此目的,LWC廓线记录在两个不同的雾事件通过系留气球测量系统的介绍和讨论。结果表明,在雾生命周期的成熟阶段,实测和理论LWC剖面之间的趋势和梯度有很好的一致性。在耗散阶段获得的轮廓显示较少符合理论轮廓。为了提高理论和实测LWC配置文件之间的协议,在雾的生命周期的演变阶段,应纳入。然而,在预先指出的测量的可变性指出,moreLWC配置文件在各种各样的不同的雾事件必须收集一个合理的适应理论LWC配置文件,考虑雾的生命周期阶段在未来。一般来说,这突出了现有的知识差距,在自然雾的微物理特性的垂直分布。
The present study investigates the validity of a theoretical liquid water content (LWC) profile in fog layers currently used for satellite based ground fog detection, with a special focus on the temporal dynamics during fog life cycle. For this purpose,LWCprofiles recorded during two different fog events by means of a tethered balloon borne measurement system are presented and discussed. The results indicate a good agreement in trend and gradient between measured and theoreticalLWCprofiles during the mature stage of the fog life cycle. The profile obtained during the dissipation stage shows less accordance with the theoretical profile. To improve the agreement between theoretical and measuredLWCprofiles, the evolutionary stages during the fog life cycle should be incorporated. However, the variability within the prenoted measurements points out that moreLWCprofiles during a great variety of different fog events have to be collected for a well-justified adaptation of the theoreticalLWCprofile, considering fog life cycle phases in the future. In general, this underlines the existing knowledge gap regarding the vertical distribution of microphysical properties in natural fogs.
DOI: 10.1175/1520-0450-34.2.460
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