Abstract

Critical issue of ecological risk management in urban areas is to predict the evolution of the dangerous natural processes intensity. The special situation in the realization of these risks take the earthquake threat and the stresses emergency fluctuations in the geological environment of the buildings and structures bases. This article is devoted to one of the main problems of earthquake engineering - verification of the dominant mechanisms and causality of the earthquakes intensity dangerous evolution. In it discusses the comparative analysis results of the Earth gravitational interaction energy variations amplitudes with the Sun, with the Moon and the solar system planets. Also presented the comparative evaluations results of the Earth geospheres gravitational perturbations amplitudes with the Earth solar radiation energy with the energy of its own heat of the Earth. It is shown that the energy of his own heat and Sun exposure of the Earth much less energy to gravitational perturbations in the near-earth space. In the article presents the spectral analysis results of earthquakes global daily energy on the Earth before and after the Shoemaker-Levy comet explosion on Jupiter. It is shown that the seismic events number on Earth with magnitude greater than 2.5 on the Richter scale after the comet explosion increased in 10 times. In the earthquakes global daily energy spectrum shows the spectral manifestations of solar system planets gravitational resonances. In given article the researches results of natural disasters cosmogenic sources power allow us to argue that ecological risk effective management is impossible without the evolution forecast of the cosmogenic effects intensity on natural processes for sustainable urban development.

Highlights

  • The issue mainstreaming of the environmental risk management effectiveness has received high priority at a high international level [1, 2, 3]

  • The research considering results of natural disasters cosmogenic sources power allow us to argue that ecological risk effective management is impossible without the evolution forecast of the cosmogenic effects intensity on natural processes for the urban planning period

  • Critical issue of environmental risk management in urban areas is to predict the evolution of the dangerous natural processes intensity

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Summary

Introduction

The issue mainstreaming of the environmental risk management effectiveness has received high priority at a high international level [1, 2, 3]. Despite the scientists assumptions in the early twentieth century about the gravitational effects of the solar system planets movement to solar activity, and other evolutionary processes in all Earth spheres (atmosphere, hydrosphere, lithosphere, biosphere, society and other spheres of the Earth) this mechanism still remains one of the little-studied problems in the Cosmo-terrestrial relations field This problem stems from the fact that unexplained fluctuations in cycles of the climatic and geophysical processes intensity variations on Earth did not correspond to the stable orbital periods of gravitational perturbations in the solar system space. The special interest of the Hlystunovs scientific school to this problem has arisen in connection with the unique result of this schools research in the orbital microgravity field and the theoretical opening in 1992, the radial gravidynamic resonances orbital space objects [10] This discovery helped to explain the cause of gravitational perturbations instability cycles and the corresponding oscillation periods of the Geosphere processes intensity variations. Individual research results of the author's discoveries with colleagues on this topic have been published in a articles series dedicated to the total influence of orbital and resonant gravitational disturbances in near-earth space environment on the global meteorological and seismic processes evolution

Radial Gravidynamic Resonance of Space Objects
The Parameters of the Orbital and Resonant Gravitational Perturbation
Spectrum Analysis of Seismic Activity Daily Variations on Earth
Findings
Conclusion
Full Text
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