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Mixing-layer height retrieval with ceilometer and Doppler lidar: from case studies to long-term assessment

机译:利用云高仪和多普勒激光雷达进行混合层高度检索:从案例研究到长期评估

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Aerosol signatures observed by ceilometers are frequently used to derive mixing-layer height (MLH) which is an essential variable for air quality modelling. However, Doppler wind lidar measurements of vertical velocity can provide a more direct estimation of MLH via simple thresholding. A case study reveals difficulties in the aerosol-based MLH retrieval during transition times when the mixing layer builds up in the morning and when turbulence decays in the afternoon. The difficulties can be explained by the fact that the aerosol distribution is related to the history of the mixing process and aerosol characteristics are modified by humidification. The results of the case study are generalized by evaluating one year of joint measurements by a Vaisala CT25K and a HALO Photonics Streamline wind lidar. On average the aerosol-based retrieval gives higher MLH than the wind lidar with an overestimation of MLH by about 300 m (600 m) in the morning (late afternoon). Also, the daily aerosol-based maximum MLH is larger and occurs later during the day and the average morning growth rates are smaller than those derived from the vertical wind. In fair weather conditions classified by less than 4 octa cloud cover the mean diurnal cycle of cloud base height corresponds well to the mixing-layer height showing potential for a simplified MLH estimation.
机译:云高仪观测到的气溶胶特征经常用于推导混合层高度(MLH),这是空气质量建模的基本变量。但是,垂直速度的多普勒风激光雷达测量可以通过简单的阈值化提供更直接的MLH估计。案例研究表明,在过渡时间内,当混合层在早上堆积而湍流在下午衰减时,基于气溶胶的MLH提取将遇到困难。可以通过以下事实解释这些困难,即,气溶胶分布与混合过程的历史有关,并且通过加湿来改变气溶胶特性。该案例研究的结果通过评估Vaisala CT25K和HALO Photonics Streamline风激光雷达联合测量一年来得到概括。平均而言,基于气溶胶的反演比风雷达产生的MLH更高,而早晨(傍晚)的MLH高估了约300 m(600 m)。此外,基于气溶胶的最大最大MLH值较大,并且发生在一天的晚些时候,并且早晨的平均增长率低于垂直风的增长率。在分类为小于4八八角星云量的晴天下,云层底高度的平均昼夜周期与混合层高度很好地对应,显示出简化MLH估算的潜力。

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