Journal Article

·2021

The Compact System Electromagnetically Equivalent to the Earth's Natural Events and Disasters with Application to Seismic Processes: The Completely Compact Electromagnetically Equivalent Earth Network (CCEEEN)

T. Şengör YTU

Abstract

This research concerns with modeling both the seismicity and climate related geo-data as the self-optimization process of an electromagnetically equivalent, say EMeq and globally compact complex multi-network. There are maps set up between the parameter spaces of the geo-data and the characteristics of the EMeq network models. The temporal variations of the geo-data are correlated to the self-optimizing the specific characteristics of the EMeq complex systems in the model presented in this work. The inverses of the mapping generate the evaluations giving the detectability conditions involving some certain restrictions. The model expounds both the interaction mechanisms of natural events with electromagnetism during significant disasters and the way of detecting the significant seismic activity, say sSA, in future with the natural iterations of the geo-data on both the region under the observation and some locations neither related to the observation region as geologically, seismically, climatically, nor phenomenologically.

Keywords

Induced seismicity Process (computing) Set (abstract data type) Earth model Computer science Geology Data modeling Natural (archaeology) Seismology Geophysics Physics

Subject Areas

Earthquake Detection and Analysis ·Geophysics ·Physical Sciences
Seismology and Earthquake Studies ·Artificial Intelligence ·Physical Sciences
Seismic Waves and Analysis ·Geophysics ·Physical Sciences

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