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Hurricane Imaging Radiometer wind speed and rain rate retrievals during the 2010 GRIP flight experiment

机译:飓风成像辐射计风速和雨率检索2010年抓地飞行试验

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Microwave remote sensing observations of hurricanes, from NOAA and USAF hurricane surveillance aircraft, provide vital data for hurricane research and operations, for forecasting the intensity and track of tropical storms. The current operational standard for hurricane wind speed and rain rate measurements is the Stepped Frequency Microwave Radiometer (SFMR), which is a nadir viewing passive microwave airborne remote sensor [1]. The Hurricane Imaging Radiometer, HIRAD, will extend the nadir viewing SFMR capability to provide wide swath images of wind speed and rain rate, while flying on a high altitude aircraft. HIRAD was first flown in the Genesis and Rapid Intensification Processes, GRIP, NASA hurricane field experiment in 2010. This paper reports on geophysical retrieval results and provides hurricane images from GRIP flights. An overview of the HIRAD instrument and the radiative transfer theory based, wind speed/rain rate retrieval algorithm is included. Results are presented for hurricane wind speed and rain rate for Earl and Karl, with comparison to collocated SFMR retrievals and WP3D Fuselage Radar images for validation purposes.
机译:来自Noaa和USAF飓风监测飞机的微波遥感观测,为飓风研究和运营提供了重要数据,用于预测热带风暴的强度和轨道。为飓风风速和雨率测量当前操作标准是步进频率微波辐射计(SFMR),它是观看无源微波空降远程传感器[1]最低点。飓风成像辐射计Hirad将扩展Nadir查看SFMR能力,以提供风速和雨率的宽带图像,同时在高海拔飞机上飞行。 Hirad首次在2010年开始在创世纪和快速增强过程中飞行,掌握美国宇航局飓风野外实验。本文报告了地球物理检索结果,并提供了握持飞行的飓风图像。包括HiRAD仪器的概述和基于辐射转移理论的风速/雨速检索算法。结果是飓风风速和伯爵和卡尔雨率的结果,与配套的SFMR检索和WP3D机身雷达图像进行了比较,用于验证目的。

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