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Eye of the Storm Observing Hurricanes with a Small Unmanned Aircraft System

机译:用小型无人机系统观察飓风的风暴眼

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Unique data from seven flights of the Coyote small unmanned aircraft system (sUAS) were collected in Hurricanes Maria (2017) and Michael (2018). Using NOAA's P-3 reconnaissance aircraft as a deployment vehicle, the sUAS collected high-frequency (>1 Hz) measurements in the turbulent boundary layer of hurricane eyewalls, including measurements of wind speed, wind direction, pressure, temperature, moisture, and sea surface temperature, which are valuable for advancing knowledge of hurricane structure and the process of hurricane intensification. This study presents an overview of the sUAS system and preliminary analyses that were enabled by these unique data. Among the most notable results are measurements of turbulence kinetic energy and momentum flux for the first time at low levels (<150 m) in a hurricane eyewall. At higher altitudes and lower wind speeds, where data were collected from previous flights of the NOAA P-3, the Coyote sUAS momentum flux values are encouragingly similar, thus demonstrating the ability of an sUAS to measure important turbulence properties in hurricane boundary layers. Analyses from a large-eddy simulation (LES) are used to place the Coyote measurements into context of the complicated high-wind eyewall region. Thermodynamic data are also used to evaluate the operational HWRF model, showing a cool, dry, and thermodynamically unstable bias near the surface. Preliminary data assimilation experiments also show how sUAS data can be used to improve analyses of storm structure. These results highlight the potential of sUAS operations in hurricanes and suggest opportunities for future work using these promising new observing platforms.
机译:来自Coyote小无人机系统(SUAS)的七个航班的独特数据在飓风玛丽亚(2017年)和Michael(2018年)收集。使用NOAA的P-3侦察机作为部署车辆,SUAS收集了飓风眼罩的湍流边界层中的高频(> 1 Hz)测量,包括风速,风向,压力,温度,水分和海的测量表面温度,对于推进飓风结构知识和飓风强化过程是有价值的。本研究概述了这些独特数据启用的SUAS系统和初步分析。在最值得注意的结果中,湍流动能和动量通量在飓风眼中的低水平(<150米)中的第一次进行湍流动能和动量通量。在较高的海拔高度和较低的风速下,从NOAA P-3之前的飞行中收集数据,Coyote Suas动量助焊剂值是鼓励性的,因此证明了Suas在飓风边界层中测量重要湍流性能的能力。来自大涡模拟(LES)的分析用于将Coyote测量放入复杂的高风视角区域的背景下。热力学数据还用于评估操作的HWRF模型,显示在表面附近的冷,干燥和热力学不稳定的偏压。初步数据同化实验还显示了SUAS数据如何用于改善风暴结构的分析。这些结果突出了飓风中苏斯运营的潜力,并建议使用这些有前途的新观测平台的未来工作的机会。

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