基于地面微波辐射测量的大气锋细观结构研究方法的改进

Alexander Efremenko, Dmitry L. Karavaev, Andrey Lebedev, Natalya Moiseeva, Georgy Schukin
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摘要

本文考虑了地面微波水汽辐射计对大气锋中尺度结构的一些实验研究结果。介绍了一种研究大气锋面中尺度结构的方法,该方法包括两个阶段:共光学(锋面)分析阶段和基于微波水汽辐射计测量大气水分和云中液态水含量的中尺度分析阶段。通过对2020年9月9-14日暖锋和冷锋经过列宁格勒地区的观测结果分析,说明了该方法的应用。在分析前人研究成果的基础上,总结了大气锋通过过程中水汽含量特征的变化特征。大气水蒸气和云中液态水含量的增长相对于上层暖云锋面先兆的出现而延迟。含水率的增长特征具有波浪形特征,这可以用锋面条形细观结构的表现来解释。所考虑的地区大气锋结构的空间异质性特征尺度的估计与P. Hobbs在北美东北海岸获得的类似特征不同。在中尺度分析过程中,可以明确穿越观测点的大气锋类型。研究结果表明,地面微波辐射计对大气锋通过过程中危险天气现象的诊断和预报方法有很大的改进前景
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of research methodology mesostructures of atmospheric fronts on the basis of ground­based microwave radiometry
The paper considers the some results of experimental studies of the mesoscale structure of atmospheric fronts using a ground-based microwave water vapor radiometer. A methodology for studying the mesoscale structure of atmospheric fronts is described, which includes two stages: the stage of syn- optic (frontological) analysis and the stage of mesoscale analysis based on measurements of atmospheric moisture and cloud liquid water content using a microwave water vapor radiometer. The application of the methodology is demonstrated by the example of the analysis of the results of observation of the case of the passage of warm and cold fronts through the Leningrad region on September 9—14, 2020. Based on the analysis of the results of previous studies, the features of changes in the characteristics of moisture content during the passage of atmospheric fronts are generalized. The growth of the atmospheric water vapor and cloud liquid water content is delayed relative to the appearance of harbingers of a warm cloud front of the upper tier. The growth of moisture content characteristics has a wave-like character, which can be explained by the manifestation of the strip mesostructure of the front. Estimates of the characteristic scales of spatial heterogeneities in the structure of atmospheric fronts for the area under consideration differ from similar characteristics obtained by P. Hobbs for the northeastern coast of North America. In the course of mesoscale analysis, the type of atmospheric front crossing the observation point can be clarified. The results obtained determine the prospects for improving the methods of diagnostics and current forecasting of dangerous weather phenomena during the passage of atmospheric fronts using ground-based microwave radiometers
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