Physical modelling of earthquake precursor by the electro‐optical parameters of gabbro rock under compressive stress

IF 2.2 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Terra Nova Pub Date : 2024-07-20 DOI:10.1111/ter.12740
Mohammad Mir, Babak Haghighi, Rohollah Taghavi Mendi, Iman Motie
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Abstract

Earthquakes occur when tectonic stresses develop deep within the Earth. In the earthquake zone, the rocks are igneous, including gabbro. Gabbro rocks produce electron–hole pairs under tectonic stresses. These holes flow in the volume of gabbro rock under tectonic pressures and cause changes in electric charge and as a result, produce variable electric and magnetic fields that lead to a signal of electromagnetic waves at the place of pressure. This electromagnetic signal is received on the surface of the Earth after passing through different layers of the Earth. In this work, by applying uniaxial hydraulic pressure on the gabbro rock, a new physical model similar to an earthquake is presented, which by receiving and monitoring electromagnetic signals, can help to investigate the tectonic changes in the Earth. By utilizing the electrical and optical parameters, the intensity of the electromagnetic signal of the earthquake created on the Earth's surface is calculated.
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利用压应力作用下辉长岩的电光参数建立地震前兆的物理模型
当地球深处产生构造应力时,就会发生地震。在地震带,岩石是火成岩,包括辉长岩。辉长岩在构造应力作用下产生电子-空穴对。在构造压力作用下,这些孔在辉长岩体积内流动,引起电荷变化,从而产生可变的电场和磁场,在受压处产生电磁波信号。电磁波信号穿过地球的不同地层后,在地球表面被接收。在这项工作中,通过对辉长岩施加单轴水压,提出了一种类似地震的新物理模型,通过接收和监测电磁信号,有助于研究地球的构造变化。利用电学和光学参数,可以计算出地震在地球表面产生的电磁信号强度。
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来源期刊
Terra Nova
Terra Nova 地学-地球科学综合
CiteScore
4.80
自引率
8.30%
发文量
59
审稿时长
2.3 months
期刊介绍: Terra Nova publishes short, innovative and provocative papers of interest to a wide readership and covering the broadest spectrum of the Solid Earth and Planetary Sciences. Terra Nova encompasses geology, geophysics and geochemistry, and extends to the fluid envelopes (atmosphere, ocean, environment) whenever coupling with the Solid Earth is involved.
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