Physical fields as factors of natural processes in the works of the center for astrophysical research of North Kazakhstan University

IF 0.2 Q4 PHYSICS, MULTIDISCIPLINARY
A.A. Solodovnik
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Abstract

Some features of the approach to solving both purely practical and general theoretical problems based on the application of the field approach as a causal factor in the development of a number of phenomena are considered. In particular, when studying the genesis and evolution of mesospheric silvery clouds, the determining influence of a number of large-scale tropospheric processes on their development is consistently revealed. An original method of synthetic maps is proposed in this direction. Extensive statistical analysis of the cartographic material revealed that cyclonic activity, frontogenesis, development of occlusions and thunderstorm foci have a pronounced physical effect on the formation of silvery clouds over the northern hemisphere. The extraordinary results of the work stimulated further study of the influence of the temperature field of high latitudes in the southern hemisphere of the Earth – Antarctica – on the features of the seasonal evolution of the area of the global field of silvery clouds of the southern hemisphere. For the first time in research practice, statistically convincing evidence has been obtained that the surface temperature field is the leading factor in the formation of silvery clouds. This makes it possible, in turn, to consider silvery clouds as a significant marker of climate change. Along with this, longitude variations of the area of silvery clouds of the northern hemisphere of the Earth are considered. The results suggest the influence of geophysical fields on the genesis of such clouds. The question of the nature of gravitational and inert coupling is considered separately. A hypothesis has been put forward that allows not only to clarify the view of the nature of the inert mass, but also to estimate several general characteristics of the Universe relatively simply. The work is completed by a proposal to take a fresh look at the physical nature of information, based on the field method.
北哈萨克斯坦大学天体物理研究中心工作中作为自然过程因素的物理场
该方法的一些特点,以解决纯实践和一般的理论问题为基础的应用领域的方法作为一个因果因素的发展,在一些现象被考虑。特别是在研究中间层银云的形成和演化时,不断揭示了一些大尺度对流层过程对银云发展的决定性影响。在此方向上提出了一种新颖的合成地图方法。对地图资料的广泛统计分析显示,气旋活动、锋生、闭塞的发展和雷暴焦点对北半球银色云的形成有显著的物理影响。这项工作的非凡成果促使人们进一步研究地球南半球(南极洲)高纬度地区的温度场对南半球全球银色云场区域季节性演变特征的影响。在研究实践中,首次获得了统计上令人信服的证据,表明地表温度场是银云形成的主导因素。反过来,这使得将银色云视为气候变化的重要标志成为可能。与此同时,还考虑了地球北半球银色云区域的经度变化。结果表明地球物理场对这种云的形成有影响。重力耦合和惰性耦合的性质问题是分开考虑的。有人提出了一个假说,它不仅可以澄清惰性物质的性质,而且可以相对简单地估计宇宙的几个一般特征。这项工作是通过一项建议来完成的,该建议以现场方法为基础,重新审视信息的物理性质。
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