基于 2010-2021 年激光探测数据的西西伯利亚上空云基高度变化情况

IF 0.9 Q4 OPTICS Atmospheric and Oceanic Optics Pub Date : 2024-03-23 DOI:10.1134/S102485602401010X
K. N. Pustovalov, E. V. Kharyutkina, E. I. Moraru
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摘要

摘要 利用激光传感数据分析了 2010-2021 年西西伯利亚低层云和积雨云基底高度的变化。研究发现,从总体上看,低层云的基底高度有所下降,积雨云的基底高度有所上升。低层云的基底高度由北向南增加。积雨云的高度分布似乎更具经向特征。南部地区低层云和积雨云基底高度的季节性变化在夏季达到最大值。中部和北部有两个最大值:低层云在夏季和春季,积雨云在冬季和夏季。聚类分析显示,在不同站点测量到的积雨云基底高度差异很大。这可能是由于底层表面的不同特征以及大气环流和对流过程的区域特征造成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Variability of the Cloud Base Height over the Territory of Western Siberia Based on Laser Sounding Data for the Period 2010–2021

Laser sensing data are used to analyze the variations in the base height of low-level clouds and cumulonimbus clouds in Western Siberia for 2010–2021. It is found that, on the whole, the base height of lower clouds decreases and the base height of cumulonimbus clouds increases. The base height of lower clouds increases from north toward south. The distribution of the height of cumulonimbus clouds seems to be more meridional in character. The seasonal behavior of the base height of lower and cumulonimbus clouds in the south of the territory shows a maximum in summer months. In the center and north there are two maxima: in summer and spring for lower clouds and in winter and summer for cumulonimbus clouds. The cluster analysis showed that the base heights of cumulonimbus clouds, measured at diverse stations, strongly differ. Presumably, this is due to different characters of the underlying surface, as well as to regional features of atmospheric circulation and convective processes.

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来源期刊
CiteScore
2.40
自引率
42.90%
发文量
84
期刊介绍: Atmospheric and Oceanic Optics  is an international peer reviewed journal that presents experimental and theoretical articles relevant to a wide range of problems of atmospheric and oceanic optics, ecology, and climate. The journal coverage includes: scattering and transfer of optical waves, spectroscopy of atmospheric gases, turbulent and nonlinear optical phenomena, adaptive optics, remote (ground-based, airborne, and spaceborne) sensing of the atmosphere and the surface, methods for solving of inverse problems, new equipment for optical investigations, development of computer programs and databases for optical studies. Thematic issues are devoted to the studies of atmospheric ozone, adaptive, nonlinear, and coherent optics, regional climate and environmental monitoring, and other subjects.
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