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Application of factor analysis for quantification of climate-forming processes in the eastern part of the Baltic Sea region

机译:因子分析在波罗的海东部地区气候形成过程量化中的应用

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摘要

ABSTRACT: Factor analysis (FA) is applied to identify climate-forming factors and quantitatively evaluate their importance in the eastern part of the Baltic Sea region. Monthly data from 7 meteorological stations are used: average maximum and average minimum of air temperature (T1 and T2), atmospheric pressure (P), wind speed at a height of 10 m (v), monthly precipitation (Q), duration of sunshine (S) and partial pressure of water vapour (e). FA reveals that the variables form 2 main groups (meteorological complexes): a hygrothermal complex?T1, T2 and e?and a baric-radiational complex?P, Q and S. Both meteorological complexes exist almost independently of each other (in cold seasons in particular), i.e. it is possible to distinguish the 2 most important types of climate-forming processes in the eastern part of the Baltic Sea region. One of them is advection related to the input of various air masses whose features are best reflected by air temperature and humidity. The other process mostly takes place within 1 pressure system (cyclone or anticyclone): air mass transformation, vertical mixing, formation of clouds and related precipitation and input of solar radiation.
机译:摘要:因子分析(FA)用于识别气候形成因素,并定量评估其在波罗的海地区东部的重要性。使用来自7个气象站的每月数据:气温的最高和最低平均值(T 1 和 T 2 ),大气压(P),10 m (v)高度的风速,月降水量(Q),持续时间日照(S)和水蒸气(e )的分压。 FA揭示变量分为2个主要组(气象复合体):一个湿热复合体? T 1 , T 2 和 e ?以及重辐射复合体? P , Q 和 S 。两种气象复合体几乎彼此独立存在(特别是在寒冷季节),即可以区分波罗的海地区东部的两种最重要的气候形成过程类型。其中之一是与各种空气质量的输入有关的对流,其特征最能反映出空气的温度和湿度。其他过程主要在一个压力系统(旋风或反旋风)内发生:空气质量转变,垂直混合,云层形成以及相关的降水和太阳辐射的输入。

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