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Toward the GMF for Wind Speed and Surface Stress Retrieval in Hurricanes Based on the Collocated GPS-Dropsonde and Remote Sensing Data

机译:基于旋转的GPS-Dropsonde和遥感数据,朝向GMF进行风速和表面应力检索

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摘要

This article describes the first step toward the development of the geophysical model function (GMF) for the retrieval of wind speed and wind stress in hurricanes, based on developing a relation between the cross-polarized satellite SAR data from Sentinel-1 and winds/stress observed from collocated NOAA GPS-dropsondes data. Field measurements and remote sensing data for tropical cyclones in the Atlantic Ocean were analyzed. Using the data measured by GPS-dropsondes, average wind velocity profiles were obtained, while the parameters of the wind boundary layer (drag coefficient and friction velocity) were restored from the “wake” part of the velocity profiles using the self-similarity property. The self-similarity of the velocity profile “defect” in the boundary layer, known from the fluid dynamics, was used to retrieve the parameters of the atmospheric boundary layer (the surface wind velocity, drag coefficient, and friction velocity) from the dropsonde wind velocity profiles in ten major hurricanes. Based on the processing of the measurements in the hurricanes Irma 2017/09/07 and Maria 2017/09/21 and 2017/09/23 at a time close to the time of acquisition of the Sentinel-1 images, the dependencies of the cross-polarized normalized radar cross section on the wind speed and wind friction velocity were obtained and used for constructing the GMFs.
机译:本文介绍朝向地球物理模型函数(GMF)的用于在飓风的风速和风向的压力,基于显影从哨兵-1和圈/应力交叉极化卫星SAR数据之间的关联的检索的发展的第一步从并置NOAA GPS-投式探空仪数据中观察到。现场测量和大西洋热带气旋的遥感数据进行了分析。使用由GPS-投式探空仪测得的数据,得到平均风速轮廓,而风边界层(阻力系数和摩擦速度)的参数是从使用自相似性速度轮廓的“唤醒”部分恢复。速度分布“缺陷”在边界层中,从流体动力学已知的,所述的自相似性被用于从投式探空仪风检索大气边界层(表面风速,阻力系数,和摩擦速度)的参数速度分布在十个主要飓风。基于在飓风伊尔玛2017年9月7日和2017年9月21日玛利亚和2017年9月23日的测量的处理在时间接近采集哨兵-1的图像中,交叉的依赖关系的时间获得的风速和风向摩擦速度偏振光归一化雷达横截面,并用于构建GMFS。

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