Volume 41 Issue 4
Jul.  2021
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AISA Yisimayili, FENG Zhisheng, CHEN Jiehong, XING Hao, MAO Zhiqiang, ZU Qiang, ZHAO Jiaqing. Geomagnetic Day by Day Ratio and Its Relationship with Strong Earthquakes in Xinjiang and Its Adjacent Areas[J]. Chinese Journal of Space Science, 2021, 41(4): 617-625. doi: 10.11728/cjss2021.04.617
Citation: AISA Yisimayili, FENG Zhisheng, CHEN Jiehong, XING Hao, MAO Zhiqiang, ZU Qiang, ZHAO Jiaqing. Geomagnetic Day by Day Ratio and Its Relationship with Strong Earthquakes in Xinjiang and Its Adjacent Areas[J]. Chinese Journal of Space Science, 2021, 41(4): 617-625. doi: 10.11728/cjss2021.04.617

Geomagnetic Day by Day Ratio and Its Relationship with Strong Earthquakes in Xinjiang and Its Adjacent Areas

doi: 10.11728/cjss2021.04.617
  • Received Date: 2020-07-18
  • Rev Recd Date: 2021-06-07
  • Publish Date: 2021-07-15
  • Daily variation of geomagnetic vertical component has important position in the study of earthquake precursor analysis. The variation magnetic field makes an induced magnetic field because of the Earth, conductivity, and the induced magnetic field includes the information not only from the outer magnetic field but also about the electrical conductivity of underground. The Earth's magnetic field geomagnetic vertical component reflects more changes of underground activity than other components. The method of day by day ratio with amplitude of geomagnetic vertical component is based on this theory. Because of this, This paper calculates the daily ratio of daily amplitude of geomagnetic vertical component by using the data at stations in Xinjiang and its surrounding areas, analyzes the characteristics of daily ratio and the earthquake cases in Xinjiang and its surrounding areas, analyzes the characteristics of daily ratio and the earthquake cases in north-south seismic belt. Opposed-phase induced magnetic field on opposite sides of the current was caused by daily ratio anomalies induced by underground current, and this formation mechanism is similar with the geomagnetic low point displacement anomaly. The study strengthened the reliability of using the method of day by day ratio to judge earthquake geomagnetic precursory anomaly information.

     

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