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Electromagnetic Emissions from Quartz Subjected to Shear Stress: Spectral Signatures and Geophysical Implications

机译:从剪切应力进行石英的电磁排放:光谱签名和地球物理意义

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Shear tests on quartz rocks and single quartz crystals have been conducted to understand the possible relationship between the intensity of detectable stress in fault areas and the energy released in the form of electromagnetic waves in the range 30 KHz-1 MHz (LF–MF). For these tests, a new type of piston-cylinder has been developed, instrumented to collect the electromagnetic signals generated by the quartz during shear stress tests and that allows energy measurements on electromagnetic emissions (EMR) to be performed. The data obtained indicate that shear-stressed quartz crystals can generate electromagnetic emissions in the LF–MF range. These emissions represent a tiny fraction of the total energy dissipated in the fracturing process. The spectrum of radio emissions consists of continuous radiation and overlapping peaks. For the first time, a characteristic migration of peak frequencies was observed, proportional to the evolution of the fracturing process. In particular, the continuous recording of the radio emission spectra shows a migration of the peaks toward higher frequencies, as stress continues over time and smaller and larger fractures form. This migration could be used to distinguish possible natural signals emitted by quartz in tectonically active environments from possible signals of other geophysical and possibly anthropogenic origin.
机译:已经进行了石英岩和单曲形晶体的剪切测试,以了解故障区域中可检测应力强度和以电磁波的形式在30kHz-1MHz(LF-MF)中释放的能量之间的可能关系。对于这些测试,已经开发了一种新型的活塞缸,仪表被仪器用于在剪切应力测试期间收集由石英产生的电磁信号,并且允许进行电磁排放(EMR)的能量测量。获得的数据表明剪切应力的石英晶体可以在LF-MF范围内产生电磁排放。这些排放代表了压裂过程中总能量的微小分数。无线电排放的光谱由连续的辐射和重叠峰组成。首次,观察到峰值频率的特征迁移,与压裂过程的演变成比例。特别地,无线发射光谱的连续记录显示峰值朝向较高频率的迁移,因为应力随时间继续和更小且较大的裂缝形式。该迁移可用于区分石英中的可能的自然信号,从各种地球物理和可能的人为源的可能信号中区分石英。

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