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Convective Boundary-Layer Height Estimation from Combined Radar and Doppler Lidar Observations in VORTEX-SE

机译:来自涡旋-SE的组合雷达和多普勒LIDAR观测的对流边界层高度估计

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The Verification of the Origins of Rotation in Tornadoes Experiment - Southeast (VORTEX-SE) provides a wealth of long-duration, high-resolution, vertically pointing observations from active and passive ground-based remote sensing systems enabling characterization of the Atmospheric Boundary Layer (ABL) development over distinct regions that are well known for their relatively high tornado frequency. Application of the Extended Kalman Filter (EKF) to BL height estimation in the convective regime (CBLH) of the diurnal cycle from S-band radar reflectivity observations1 has shown to yield accurate results under simple CBL conditions. In this work, we revisit the radar-EKF technique and investigate its main limitations. For example, during daytime clear-sky conditions such as those prevailing in the BL morning transition, weak turbulence leads to very low reflectivity returns, limiting application of this technique. Additionally, turbulent mixing layers capped with a residual layer, and/or multi-layer scenarios can lead the filter to lose track of the BL signature over time. Doppler Wind Lidar (DWL) observations of the vertical wind velocity variance2 provide complementary CBLH estimates to those of the radar-EKF combination, providing potential to disambiguate more complex convective cases. DWL estimates are, however, strongly influenced by the variance threshold selected. The complementarity of radar and DWL for CBLH estimation is studied in reference to radiosoundings.
机译:旋转的在龙卷风实验起源的验证 - 东南(VORTEX-SE)提供了丰富的长持续时间,高分辨率,从有源和无源的基于地面的遥感系统使大气边界层的表征垂直指向观测(的abl)开发以其相对高的龙卷风频率众所周知的不同区域。将扩展的Kalman滤波器(EKF)应用于来自S波段雷达反射率观测的日循环的对流状态(CBLH)中的BL高度估计表明,在简单的CBL条件下,在简单的CBL条件下产生准确的结果。在这项工作中,我们重新审视雷达-EKF技术并调查其主要局限性。例如,在白天清晰的天空条件下,如在BL早晨过渡中普遍的那些,弱湍流导致非常低的反射率回报,限制了这种技术的应用。另外,用残余层盖住湍流混合层,和/或多层场景可以引导过滤器以丢失随时间的BL签名。垂直风速方差2的多普勒风光亮度(DWL)观察结果为雷达 - EKF组合的互补CBLH估计,提供了消除更复杂的对流情况的潜力。然而,DWL估计受到选择的方差阈值的强烈影响。参考Radiosoundings研究了CBLH估计的雷达和DWL的互补性。

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