Earthquake prediction method based on resonance package monitoring data

A technology for monitoring data and earthquake prediction, applied in the direction of earthquake signal processing, etc., can solve the problems of poor signal recognition ability and low accuracy of earthquake prediction, and achieve the effect of improving reliability and preventing misjudgment

Active Publication Date: 2015-06-24
曾雄飞
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Problems solved by technology

[0005] In order to solve the problems of poor signal recognition ability and low earthquake prediction accuracy existing

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  • Earthquake prediction method based on resonance package monitoring data
  • Earthquake prediction method based on resonance package monitoring data
  • Earthquake prediction method based on resonance package monitoring data

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[0038] Combine below Attached drawing The specific embodiments of the present invention will be described in detail, but it should be understood that the protection scope of the present invention is not limited by the specific embodiments.

[0039] In order to solve the problems of poor signal recognition ability and low earthquake prediction accuracy in the prior art, the present invention proposes an earthquake prediction method based on resonance packet monitoring data.

[0040] The realization of the problem of earthquake prediction requires a theoretical breakthrough first, revealing the mechanism of earthquakes, allowing sunlight to illuminate the "black box", cracking the essence of HRT waves, and establishing a recognition method based on scientific physical and mathematical models.

[0041] The present invention is based on the innovation of seismic theory, which is the dynamic theory of seismic structure burst. In the past, it was generally believed that earthquakes were t...

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Abstract

The invention discloses an earthquake prediction method based on resonance package monitoring data. The earthquake prediction method based on the resonance package monitoring data comprises the steps that resonance package monitoring data in one statistical cycle are acquitted continuously, wherein the statistical cycle refers to the period from the day before the day a tidal wave resonance package appears for the first time to the day after the day the tidal wave resonance package appears for the last time; the amplitudes, the cycles and the travel time sequences of resonance waves and tidal waves are obtained according to the resonance package monitoring data, and the earthquake magnitude, the seismic center and the earthquake occurrence time are determined by recognizing three element signals of an earthquake according to the earthquake burst kinetics precursor theoretical method. By the adoption of the earthquake prediction method based on the resonance package monitoring data, an amplitude signal, a resonance signal and a time travel time signal can be extracted to different precision extents by means of any methods which can record earthquake precursor information, misjudgment is unlikely to happen, and the reliability of earthquake predicting and forecasting is remarkably improved.

Description

technical field [0001] The invention relates to the technical field of earthquake prediction and forecasting, in particular to a method for earthquake prediction using precursor wave data of seismic inclusions and monitoring data of tidal wave resonance packets. Background technique [0002] Earthquake is the most serious natural disaster for thousands of years, and human beings eagerly hope to be able to predict earthquakes. Although a very small number of earthquakes have been predicted, such as the Haicheng earthquake in China in 1976, the vast majority of earthquakes are still unpredictable and always occur unexpectedly. Until Qian Fuye, Zhao Yulin, Zhao Biru and others invented the HRT wave earthquake prediction and monitoring system (application number: 200820000524.0), also known as PS100 geoelectric instrument, the introduction of CDMA technology significantly improved the anti-interference ability, and the test accuracy increased by two orders of magnitude , throug...

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Application Information

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IPC IPC(8): G01V1/30
Inventor 曾雄飞曾燕曾江
Owner 曾雄飞
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