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  • 标题:Zonal-and-Wave Structure of Open Systems on Micro, Mega- and Macrolevels of the Universe
  • 本地全文:下载
  • 作者:Oleh Khomenko ; Tamara Barna
  • 期刊名称:Philosophy and Cosmology
  • 印刷版ISSN:2307-3705
  • 出版年度:2019
  • 卷号:22
  • 页码:24-32
  • DOI:10.29202/phil-cosm/22/3
  • 语种:English
  • 出版社:International Society of Philosophy and Cosmology
  • 摘要:The analysis of formation of wave astrodynamics as the applied science that studying zonal-andwave structure of megasystems in the Universe is executed. The perspective of disclosure of physical essence of the phenomenon of rocks zonal disintegration around underground mine workings is analysed. The results of a research that received by means of well-known and new synergetic methods, which have discovered zonal-and-wave nature of the examined phenomenon, are described. The discovered phenomenon has been designated as zonal capsulation of mine working with definition of gradients of stresses, density, temperature and other factors of a power condition of the massif with formation of ring energy zones, their quantities, amount and shape, sinusoidal-and-wave stresses and ring areas of deformation. The regularities of distribution of matter and energy in systems with various large-scale levels have been investigated and accepted as comparative data for confirmation of level of convergence of the received results. Increase in large-scale level of system from micro to mega-and macrolevel led to equivalent increase in density of a core, constant of gravitation and the period of fluctuation of a surface, and the period of attenuation of wave fluctuations and a ratio of the sizes of energy zones remained constant. The received sedate dependence of a ratio of the sizes of energy zones for the examined systems coincides with the established verification of sedate dependences that describing a ratio of the sizes of energy zones in mine working’s capsule which convergence reaches up to 100%. The received results are the incontestable proof of the uniform nature of interaction of the open evolving systems at all large-scale levels and allows to draw analogies during development of methodological approaches to the solution of similar problems.
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