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Atmospheric boundary-layer structure from simultaneous SODAR, RASS, and ceilometer measurements

机译:来自SODAR,RASS和云高仪同时测量的大气边界层结构

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摘要

A comparison of the determination of boundary-layer structures by a SODAR, by a RASS, and by a ceilometer is presented. One important structure is the mixing-layer height (MLH). The comparison is focused on 3 days with an evolution of a convective boundary layer over a larger city in Germany. The three instruments give information that partly agree and partly complement each other. By this, a picture of the diurnal evolution of the vertical structure of this urban boundary layer is presented. The ceilometer gives information on the aerosol content of the air and the RASS provides a direct measurement of the vertical temperature distribution in the boundary layer. The RASS and the ceilometer add information on the moisture structure of the boundary layer that is not detected by the SODAR. On the other hand this comparison validates known techniques by which the MLH is derived from SODAR data. Especially the temperature information from the RASS agrees well with lifted inversions derived from the analysis of the SODAR data. The ceilometer, being the smallest instrument, has a potential to be used in future MLH studies. (C) 2003 Elsevier Ltd. All rights reserved. [References: 23]
机译:介绍了通过SODAR,RASS和云高仪确定边界层结构的比较。一种重要的结构是混合层高度(MLH)。比较的重点是3天,对流边界层在德国较大城市的演变。这三种工具所提供的信息部分是一致的,部分是相互补充的。由此,呈现了该城市边界层的垂直结构的日变化图。云高仪可提供有关空气中气溶胶含量的信息,而RASS可直接测量边界层中的垂直温度分布。 RASS和云高仪添加了SODAR无法检测到的边界层水分结构信息。另一方面,该比较验证了从SODAR数据得出MLH的已知技术。特别是来自RASS的温度信息与从SODAR数据分析得出的反演结果非常吻合。云高仪是最小的仪器,有潜力用于未来的MLH研究中。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:23]

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