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Satellite data assimilation in numerical weather prediction models. Part II: Uses of rain-affected radiances from microwave observations for hurricane vortex analysis

机译:数值天气预报模型中的卫星数据同化。第二部分:微波观测中受雨影响的辐射在飓风涡旋分析中的应用

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A hybrid variational scheme (HVAR) is developed to produce the vortex analysis associated with tropical storms. This scheme allows for direct assimilation of rain- affected radiances from satellite microwave instruments. In the HVAR, the atmospheric temperature and surface parameters in the storms are derived from a one-dimension variational data assimilation (1DVAR) scheme, which minimizes the cost function of both background information and satellite measurements. In the minimization process, a radiative transfer model including scattering and emission is used for radiance simulation ( see Part I of this study). Through the use of 4DVAR, atmospheric temperatures from the Advanced Microwave Sounding Unit (AMSU) and surface parameters from the Advanced Microwave Scanning Radiometer (AMSR-E) are assimilated into global forecast model outputs to produce an improved analysis. This new scheme is generally applicable for variable stages of storms. In the 2005 hurricane season, the HVAR was applied for two hurricane cases, resulting in improved analyses of three-dimensional structures of temperature and wind fields as compared with operational model analysis fields. It is found that HVAR reproduces detailed structures for the hurricane warm core at the upper troposphere. Both lower-level wind speed and upper-level divergence are enhanced with reasonable asymmetric structure.
机译:开发了一种混合变分方案(HVAR)来产生与热带风暴有关的涡旋分析。该方案允许直接吸收来自卫星微波仪器的受雨影响的辐射。在HVAR中,风暴中的大气温度和地面参数来自一维变分数据同化(1DVAR)方案,该方案最大程度地减少了背景信息和卫星测量的成本函数。在最小化过程中,将包含散射和发射的辐射转移模型用于辐射度仿真(请参阅本研究的第一部分)。通过使用4DVAR,高级微波探测单元(AMSU)的大气温度和高级微波扫描辐射计(AMSR-E)的地表参数被同化为全局预测模型输出,以进行改进的分析。这种新方案通常适用于风暴的可变阶段。在2005年的飓风季节,HVAR被用于两个飓风案例,与运行模型分析领域相比,改进了对温度和风场的三维结构的分析。发现HVAR再现了对流层上层飓风暖核的详细结构。较低的风速和较高的发散度都有合理的不对称结构。

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