Investigation of the consistency of changes in the wavelet phase characteristics of heliocosmic and climate variables and changes in the components of the world water balance. Part 1

V. I. Alekseev
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Abstract

The relevance of research is due to the need to establish the true causes and patterns of changes in the hydrometric characteristics of the world water balance, which determine the global climate on Earth. The purpose of research: to establish the patterns and causes of changes in the world water balance variables on Earth: the availability of ground and groundwater, river flows on continents, on land, components of the World Ocean water balance in anomalies, changes in the atmospheric regime, the level of lakes, the Caspian Sea, mountain glaciers, clouds and other natural environments, given in the form of time series, due to changes in heliocosmic and climatic factors under the influence of the barycentric movements of the Sun, which determine the climate on Earth. The objects of research: time series of heliocosmic and global climate variables, hydrometric components of the world water balance. The methods of research: a method developed by the author for the interaction of observations of a variable or variables with groups of given heliocosmic and climatic factors in the frequency and time domains, obtained using wavelet transforms with the calculation of phase-frequency and phase-time characteristics of observations in equal time intervals; comparative analysis of changes in the obtained phase characteristics of groups of variables with the calculation of their consistency matrices and plotting in the frequency and time domains. Results: two groups of variables are involved in cyclic climate change on Earth, hydrometric characteristics of the world water balance, natural environments: heliocosmic (barycentric motions of the Sun, solar activity, long-term solar insolation, volcanic eruptions and greenhouse gases, ozone concentration in the ionosphere, elements of the Earth's orbit, geomagnetic field, magnetic field of the Sun) and global temperature climatic variables due to changes in heliocosmic factors, the leading of which is the barycentric motion of the Sun. By analyzing the wavelet phase-frequency and phase-time characteristics of the group of hydrometric characteristics of the world water balance, heliocosmic and climatic variables in the phase-frequency and phase-time domains, the dependences of changes in the hydrometric characteristics of the world water balance by changes in heliocosmic and climatic variables in the phase-frequency and phase- temporary areas. These dependencies are presented in two figures with many graphs and two correlation matrices. They characterize the variability of the components of the world water balance by changes in heliocosmic and climatic variables in two areas in the observed time interval and are reflections of changes in the self-organizing climate system. In changes in the phase-time characteristics of groups of factors, lattice structures of differently and unidirectional changes in variables are observed, which characterize the cyclical nature of climate changes on Earth.
日、气候变量小波相位特征变化与世界水平衡分量变化的一致性研究。第1部分
研究的相关性是由于需要确定世界水平衡的水文特征变化的真正原因和模式,这决定了地球上的全球气候。研究的目的:确定地球上世界水平衡变量变化的模式和原因;地面和地下水的可用性、大陆和陆地上的河流流量、世界海洋水平衡的异常成分、大气状态的变化、湖泊、里海、山地冰川、云和其他自然环境,由于太阳重心运动影响下的日冕和气候因素的变化,以时间序列的形式给出,这些因素决定了地球上的气候。研究对象:日月和全球气候变量的时间序列,世界水平衡的水文分量。研究方法:作者提出了一种利用小波变换计算等时间间隔内观测值的相频和相时特征,将一个或多个变量的观测值与一组给定的日、气候因子在频域和时域上相互作用的方法;对得到的一组变量的相位特性变化进行对比分析,计算它们的一致性矩阵,并在频域和时域上作图。结果:两组变量涉及地球循环气候变化、世界水平衡、自然环境的水文特征;日冕(太阳质心运动、太阳活动、长期太阳日照、火山爆发和温室气体、电离层臭氧浓度、地球轨道元素、地磁场、太阳磁场)和全球温度气候变量由于日冕因素的变化而变化,其中以太阳质心运动为主导。通过对世界水平衡水文特征组、日、气候变量在相频、相时域的小波相频、相时特征的分析,揭示了世界水平衡水文特征变化与日、气候变量在相频、相暂域变化的依赖关系。这些依赖关系用两个图形和两个相关矩阵表示。它们通过观测到的时间间隔内两个地区的日月和气候变量的变化来表征世界水平衡各组成部分的变率,并反映了自组织气候系统的变化。在因子群的相时特征变化中,观测到变量的不同和单向变化的晶格结构,表征了地球气候变化的周期性。
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