Nonlinear Soliton-like Oscillations and Waves during Geomaterial Destruction Based on Electromagnetic Radiation Signals

V. D. Borisov
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Abstract

The work is devoted to the results of processing electromagnetic radiation signals obtained during laboratory loading of marble and diabase samples using a technique for determining the parameters of microcracks, developed and published by the author earlier. As a result of such processing, certain patterns were found in the nature of the evolution of the oscillatory process ensemble of microcracks. For example, solitary non-linear waves almost always preceded a sequence of High Frequency traces. Equations for straight lines approximating High Frequency traces in logarithmic coordinates, close to the equation of the Gutenberg–Richter law. Due to the similarity of seismic processes at different scale levels, the results of modeling at the microscale level can be used to describe seismic processes at the macroscale level, for example, to study the processes occurring immediately before destruction and at the time of destruction in order to search for repeatability and regularities. The regularities obtained can be used in the development of a predictive criterion that makes it possible to predict the time of one or another geophysical (seismic) event.
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基于电磁辐射信号的岩土材料破坏过程中的非线性类孤子振荡和波
这项工作致力于处理在大理石和辉绿岩样品的实验室加载过程中获得的电磁辐射信号,使用确定微裂纹参数的技术,由作者早些时候开发和发表。由于这样的处理,在微裂纹的振荡过程系综的演化性质中发现了某些模式。例如,孤立的非线性波几乎总是先于一系列高频迹线。在对数坐标中近似高频轨迹的直线方程,接近古腾堡-里希特定律的方程。由于地震过程在不同尺度上的相似性,微观尺度上的模拟结果可以用于描述宏观尺度上的地震过程,例如,研究地震破坏前和破坏时发生的过程,以寻找可重复性和规律性。所获得的规律可用于制定预测准则,使预测一个或另一个地球物理(地震)事件的时间成为可能。
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