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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Application of surface pressure measurements of O-2-band differential absorption radar system in three-dimensional data assimilation on hurricane: Part II - A quasi-observational study
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Application of surface pressure measurements of O-2-band differential absorption radar system in three-dimensional data assimilation on hurricane: Part II - A quasi-observational study

机译:O-2波段差分吸收雷达系统在飓风三维数据同化中的应用 - 第II - A第II - A型 - 拟观察研究

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This is the second part on assessing the impacts of assimilating various distributions of sea-level pressure (SLP) on hurricane simulations, using the Weather and Research Forecast (WRF) three dimensional variational data assimilation system (3DVAR). One key purpose of this series of study is to explore the potential of using remotely sensed sea surface barometric data from O-2-band differential absorption radar system currently under development for server weather including hurricane forecasts. In this part II we further validate the conclusions of observational system simulation experiments (OSSEs) in the part I using observed SLP for three hurricanes that passed over the Florida peninsula. Three SLP patterns are tested again, including all available data near the Florida peninsula, and a band of observations either through the center or tangent to the hurricane position. Before the assimilation, a vortex SLP reconstruction technique is employed for the use of observed SLP as discussed in the part I. In agreement with the results from OSSEs, the performance of assimilating SLP is enhanced for the two hurricanes with stronger initial minimum SLP, leading to a significant improvement in the track and position relative to the control where no data are assimilated. On the other hand, however, the improvement in the hurricane intensity is generally limited to the first 24-48 h of integration, while a high resolution nested domain simulation, along with assimilation of SLP in the coarse domain, shows more profound improvement in the intensity. A diagnostic analysis of the potential vorticity suggests that the improved track forecasts are attributed to the combined effects of adjusting the steering wind fields in a consistent manner with having a deeper vortex, and the associated changes in the convective activity. (C) 2014 Published by Elsevier Ltd.
机译:这是评估吸收海平面压力(SLP)对飓风模拟的各种分布的影响的第二部分,使用天气和研究预测(WRF)三维变分数据同化系统(3DVAR)。这一系列研究的一个关键目的是探讨来自目前正在开发的O-2带差动吸收雷达系统中使用远程感测的海面气压数据的潜力,以便在包括飓风预测。在本部分中,我们进一步验证了我使用观察到的SLP的观察系统模拟实验(OSSES)的结论,用于通过佛罗里达半岛的三个飓风。再次测试三种SLP模式,包括佛罗里达半岛附近的所有可用数据,以及通过中心或切线到飓风位置的观察条带。在同化之前,涡旋SLP重建技术用于使用所观察到的SLP,如I部分中所讨论的。与OSSES的结果一致,两种飓风增强了SLP的性能,具有较强的最低限度SLP,领先的两个飓风在没有同化数据的控制的轨道和位置的显着改进。然而,另一方面,飓风强度的改善通常限于集成的前24-48小时,而高分辨率嵌套域模拟,以及在粗域中的SLP的同化,显示出更深刻的改善强度。对潜在涡流的诊断分析表明,改进的轨道预测归因于通过具有更深的涡流的一致方式调节转向风场的组合效果,以及对流活动的相关变化。 (c)2014年由elestvier有限公司发布

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