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Studies ofthe influence of rainfall upon scatterometer estimates for sea surface stress: Applications to boundary layer parameterization and drag coefficient models within tropical cyclone environments

机译:海面应力散射仪估计对散射计估计的影响:应用于热带气旋环境中边界层参数化和拖曳系数模型

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The use of satellite scatterometers to probe the winds in and near strong tropical cyclones (TCs) is a valuable tool for both numerical weather prediction (NWP) and weather forecasters. The presence of widespread rain in these storms complicates the estimation of surface winds from the satellite. Improvements in the techniques to infer surface winds from the satellite observations, which remove the effects of rain contamination at the ocean surface, will improve the modeling efforts as they pertain to the prediction of TC intensity. This study will demonstrate the use of collated and simultaneous high-resolution rain measurements obtained from nearby Next-Generation Radar (NEXRAD) and NASA Quick Scatterometer (QuikSCAT) measurements, respectively. Through the application of the National Oceanic and Atmospheric Administration (NOAA)/Atlantic Oceanographic and Meteorological Laboratories (AOML)/Hurricane Research Division (HRD) TC wind analysis (H*WIND; Powell and Houston [1996] ), we will study the dependence of a surface normalized radar cross-section (NRCS) on the TC wind-speed and rain-rate. The objective is to better observe and understand the dependence of the drag coefficient upon the surface stress across a wide range of conditions and spatial scales within these storms.
机译:使用卫星散射仪来探测强大的热带气旋(TCS)中的风,是数字天气预报(NWP)和天气预报员的宝贵工具。这些风暴中的广泛雨的存在使表面风的估计从卫星复杂化。从卫星观测中推断出表面风的技术的改进,除去海面上的雨污染的影响,将提高模型努力,因为它们与TC强度的预测有关。本研究将分别证明使用从附近的下一代雷达(Nexrad)和NASA快速散射计(Quikscat)测量获得的整理和同时的高分辨率雨量测量。通过国家海洋和大气管理局(NOAA)/大西洋动物和气象实验室(AOML)/飓风研究师(HRD)TC风分析(H * WING; POWELL和HOUSTON [1996]),我们将研究依赖表面归一化雷达横截面(NRCS)对TC风速和雨率。目的是更好地观察并理解拖动系数对这些风暴内各种条件和空间尺度的表面应力的依赖性。

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