首页> 外文会议>Conference on Optics in Atmospheric Propagation and Adaptive Systems V, Sep 24-27, 2002, Agia Pelagia, Crete, Greece >Probing boundary layer turbulence with models and lidar measurements through data assimilation
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Probing boundary layer turbulence with models and lidar measurements through data assimilation

机译:通过数据同化使用模型和激光雷达测量来探测边界层湍流

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摘要

This study represents an integrated research capability based on (1) data from a scanning water vapor lidar, (2) a hydrodynamic model (HIGRAD) with a observing routine (VIEWER) that simulates the lidar scanning, and (3) an extended Kalman filter (EKF) algorithm for data assimilation which merges data into a model for the best estimate of the system under study. The purpose is to understand the degree to which the lidar measurements represent faithfully the atmospheric boundary layer's spatial and temporal features and to extend this utility in studying other remote sensing capabilities employed in both field and laboratory experiments. Raman lidar water vapor data collected over the Pacific warm pool and the HIGRAD simulations were first compared with each other. Potential aliasing effects of the measurements are identified due to the relatively long duration of the lidar scanning. The problem is being handled by the EKF data assimilation technique which incorporates measurements, that are unevenly distributed in space and time, into a model that simulates the flow being observed. The results of this study in terms of assimilated data will help to resolve and describe the scales and mechanisms that govern the surface evaporation.
机译:这项研究基于(1)来自扫描水蒸气激光雷达的数据,(2)具有模拟激光雷达扫描的观测例程(VIEWER)的流体力学模型(HIGRAD)和(3)扩展卡尔曼滤波器的综合研究能力(EKF)数据同化算法,该算法将数据合并到模型中,以对正在研究的系统进行最佳估计。目的是了解激光雷达测量值忠实地代表大气边界层的空间和时间特征的程度,并将此实用程序扩展到研究在野外和实验室实验中使用的其他遥感功能。首先将在太平洋暖池和HIGRAD模拟中收集的拉曼激光雷达水蒸气数据进行了比较。由于激光雷达扫描的持续时间较长,因此确定了测量的潜在混叠效应。 EKF数据同化技术正在解决该问题,该技术将时空分布不均的测量结果合并到一个模拟观察到的流量的模型中。这项研究在同化数据方面的结果将有助于解决和描述控制表面蒸发的尺度和机制。

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