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Synergetic use of LiDAR and microwave radiometer observations for boundary-layer height detection

机译:LiDAR和微波辐射计观测值协同用于边界层高度检测

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A synergetic approach for estimation of the nocturnal stable boundary-layer (SBL) height is presented. Aerosol backscatter from a lidar ceilometer and potential temperature from a microwave radiometer (MWR) are combined by using an extended Kalman filter (EKF). While height-resolved spatial-variance from the ceilometer backscatter signal provides a signature for the stratification of aerosols in the SBL, temperature data from the MWR helps to correctly incorporate information about the thermodynamic stability of atmosphere. The method is applied to data from a Vaisala CT25K ceilometer and a Humidity-and-Temperature Profiler (HAT-PRO) MWR collected during the HD(CP) Observational Prototype Experiment (HOPE) campaign at Jülich, Germany.
机译:提出了一种估计夜间稳定边界层(SBL)高度的协同方法。通过使用扩展的卡尔曼滤波器(EKF),将来自激光雷达云高仪的气溶胶反向散射和来自微波辐射计(MWR)的潜在温度结合在一起。虽然来自云高仪反向散射信号的高度分辨空间差异为SBL中的气溶胶分层提供了特征,但MWR的温度数据有助于正确整合有关大气热力学稳定性的信息。该方法适用于在德国Jülich进行的HD(CP)观测原型实验(HOPE)活动中收集的Vaisala CT25K云高仪和湿度和温度剖面仪(HAT-PRO)MWR的数据。

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