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Integrated System for Atmospheric Boundary Layer Height Estimation (ISABLE) using a ceilometer and microwave radiometer

机译:使用Ceirometer和微波辐射计的大气边界层高度估计(Asable)集成系统

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Accurate boundary layer structure and height are critical in the analysis of the features of air pollutants and local circulation. Although surface-based remote sensing instruments provide a high temporal resolution of the boundary layer structure, there are numerous uncertainties in terms of the accurate determination of the atmospheric boundary layer heights (ABLHs). In this study, an algorithm for an integrated system for ABLH estimation (ISABLE) was developed and applied to the vertical profile data obtained using a ceilometer and a microwave radiometer in Seoul city, Korea. A maximum of 19 ABLHs were estimated via the conventional time-variance, gradient, wavelet, and clustering methods using the backscatter coefficient from the ceilometer. Meanwhile, several stable boundary layer heights were extracted through near-surface inversion and environmental lapse rate methods using the potential temperature from the microwave radiometer. The ISABLE algorithm can find an optimal ABLH from post-processing, such as k -means clustering and density-based spatial clustering of applications with noise (DBSCAN) techniques. It was found that the ABLH determined using ISABLE exhibited more significant correlation coefficients and smaller mean bias and root mean square error between the radiosonde-derived ABLHs than those obtained using the most conventional methods. Clear skies exhibited higher daytime ABLH than cloudy skies, and the daily maximum ABLH was recorded in summer because of the more intense radiation. The ABLHs estimated by ISABLE are expected to contribute to the parameterization of vertical diffusion in the atmospheric boundary layer.
机译:准确的边界层结构和高度对于分析空气污染物和局部循环的特征至关重要。尽管基于表面的遥感仪器提供了边界层结构的高时间分辨率,但是在精确地确定大气边界层高度(ABLHS)方面存在许多不确定性。在该研究中,开发了一种用于ABLH估计(Asable)的集成系统的算法,并应用于韩国首尔市的Ceilometer和微波辐射计获​​得的垂直轮廓数据。通过从CeiLometer的反向散射系数估计最多19个ABLHs估计了来自Ceirometer的反向散射系数。同时,通过使用微波辐射计的电位温度通过近表面反转和环境流逝速率方法提取几个稳定的边界层高度。 ISABLE算法可以从后处理找到最佳ALHH,例如K -Means集群和基于密度的基于密度的空间聚类,具有噪声(DBSCAN)技术。结果发现,使用可测量确定的ABLH在无线电衍生的A衍生的ALHS之间具有比使用最常规方法获得的更高的相关系数和较小的平均偏差和较小的平均偏差和根均方误差。清澈的天空表现出比多云的天空更高的白天ABLH,并且由于辐射更强烈的辐射,夏天记录了每日最大ABLH。预期由Isable估计的ABLH有助于在大气边界层中的垂直扩散的参数化。

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