【2h】

Radar observations of individual rain drops in the free atmosphere

机译:在自由大气层中对单个雨滴的雷达观测

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摘要

Atmospheric remote sensing has played a pivotal role in the increasingly sophisticated representation of clouds in the numerical models used to assess global and regional climate change. This has been accomplished because the underlying bulk cloud properties can be derived from a statistical analysis of the returned microwave signals scattered by a diverse ensemble comprised of numerous cloud hydrometeors. A new Doppler radar, previously used to track small debris particles shed from the NASA space shuttle during launch, is shown to also have the capacity to detect individual cloud hydrometeors in the free atmosphere. Similar to the traces left behind on film by subatomic particles, larger cloud particles were observed to leave a well-defined radar signature (or streak), which could be analyzed to infer the underlying particle properties. We examine the unique radar and environmental conditions leading to the formation of the radar streaks and develop a theoretical framework which reveals the regulating role of the background radar reflectivity on their observed characteristics. This main expectation from theory is examined through an analysis of the drop properties inferred from radar and in situ aircraft measurements obtained in two contrasting regions of an observed multicellular storm system. The observations are placed in context of the parent storm circulation through the use of the radar’s unique high-resolution waveforms, which allow the bulk and individual hydrometeor properties to be inferred at the same time.
机译:大气遥感在用于评估全球和区域气候变化的数值模型中越来越复杂的云表示中起着关键作用。之所以能够做到这一点,是因为可以从对由大量云水凝物组成的各种集合散射回来的微波信号的统计分析中得出基本的整体云特性。一种新的多普勒雷达以前被用来追踪发射过程中从NASA航天飞机上散落的小碎片,它也具有探测自由大气中单个云水凝物的能力。类似于亚原子粒子在胶片上留下的痕迹,观察到较大的云粒子留下清晰的雷达特征(或条纹),可以对其进行分析以推断出潜在的粒子特性。我们研究了导致雷达条纹形成的独特雷达和环境条件,并建立了一个理论框架,揭示了背景雷达反射率对其观测特性的调节作用。通过对从观察到的多细胞风暴系统的两个对比区域中获得的雷达和现场飞机测量得出的跌落特性进行分析,可以检验对理论的主要期望。通过使用雷达独特的高分辨率波形,将观测结果置于父风暴循环的背景下,从而可以同时推断出大块和单个水凝物的特性。

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