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Discreteness of spatial-temporal manifestations of solar activity and solar-terrestrial phenomena
The discreteness of the time series of the solar-related geophysical phenomena is justified. The balance of the formation and decomposition (neglecting diffusion) of fractal elements during the evolution of the equilibrium systems as applied to the heliophysical and geomagnetic phenomena is the orig...
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Published in: | Geomagnetism and Aeronomy 2009-10, Vol.49 (5), p.551-556 |
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container_title | Geomagnetism and Aeronomy |
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creator | Val’chuk, T. E. Mogilevsky, E. I. |
description | The discreteness of the time series of the solar-related geophysical phenomena is justified. The balance of the formation and decomposition (neglecting diffusion) of fractal elements during the evolution of the equilibrium systems as applied to the heliophysical and geomagnetic phenomena is the original position in this case. The discreteness properties of the spatial-temporal characteristics of solar activity are simply justified based on a fractal analysis. The performed calculations in the solar wind medium in the near-Earth space make it possible to classify the fluxes depending on their fractal dimension. The possible mechanism by which high-speed solar wind streams are generated is also briefly discussed in the scope of the fractal paradigm. |
doi_str_mv | 10.1134/S0016793209050016 |
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subjects | Earth and Environmental Science Earth Sciences Geophysics/Geodesy Physics Solar activity Solar energy Time series Unexplained phenomena |
title | Discreteness of spatial-temporal manifestations of solar activity and solar-terrestrial phenomena |
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