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Deep rock mass rock blasting forecasting and early warning method based on blast vibration monitoring

A blasting vibration and rockburst technology, applied in the field of rockburst prediction and early warning in deep rock mass, can solve the problems of difficult monitoring system layout, insufficient investment, low precision, etc., and achieve the effect of small equipment size, short construction period and high precision

Inactive Publication Date: 2014-05-07
WUHAN UNIV
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  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For projects with a small investment scale, or large-length traffic and water diversion tunnels, etc., the working surface is small and changes rapidly with the construction progress. The traditional monitoring system layout is relatively difficult, and there are factors such as low accuracy and insufficient investment.

Method used

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  • Deep rock mass rock blasting forecasting and early warning method based on blast vibration monitoring
  • Deep rock mass rock blasting forecasting and early warning method based on blast vibration monitoring
  • Deep rock mass rock blasting forecasting and early warning method based on blast vibration monitoring

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Embodiment Construction

[0027] Below in conjunction with accompanying drawing, the present invention is further described, as Figure 1-5 As shown, a deep rock mass rockburst prediction and early warning method based on blasting vibration monitoring includes the following steps:

[0028] 1. Install the blasting vibration sensor on the side wall or floor of the cave and the adjacent cave, and use the method of mixing gypsum on site to tightly bond the sensor to the surrounding rock;

[0029] 2. The rock mass usually produces many small micro-cracks before the macro-destruction, and these micro-cracks will generate elastic waves in the form of elastic energy release. Studies have shown that rock microseismic events will simultaneously generate high-frequency and low-frequency elastic waves, but high The frequency part will rapidly attenuate below 1KHz during the propagation of the rock mass; therefore, the blasting vibration sensor is used to monitor the low frequency component of the microseismic sign...

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Abstract

A deep rock mass rock blasting forecasting and early warning method based on blast vibration monitoring comprises the following steps: setting a blast vibration sensor, collecting a signal and converting the signal into an electric signal for recording, amplifying the electric signal through a signal amplifier, forwarding the electric signal to a far-end signal analyzing and processing system through a wireless electric signal transponder, transmitting the received signal to a vibration signal identification and filter system of a computer, carrying out spectral analysis, recognition and separation on the vibration waveform, extracting characteristic parameters of a separated wave signal, and forecasting or evaluating disasters. The deep rock mass rock blasting forecasting and early warning method based on blast vibration monitoring has the advantages that the deep rock mass rock blasting is forecast and warned early through signal analysis via vibration monitoring equipment, easiness, convenience and practicability are achieved, great manpower and material resource input is not required, site construction is not disturbed, flexibility and convenience are achieved, and the deep rock mass rock blasting forecasting and early warning method is high in adaptability to different projects.

Description

technical field [0001] The invention relates to a method for predicting and early warning of rockburst in deep rock mass based on blasting vibration monitoring, which is suitable for strong rockburst (rockburst) during the excavation of deep underground caverns or deep mining in the fields of water conservancy and hydropower projects, transportation, mines, etc. predictions and early warnings. Background technique [0002] Because rockburst is a very complex phenomenon of dynamic geological disasters, there are many influencing factors, which also determine the diversity and complexity of rockburst prediction. Analyze the rockburst in terms of fractal and sudden change, and put forward various hypotheses and criteria. For example, the rockburst discrimination criterion of Rusesenes, Turchaninov, Jia Yuru, Wang Yuanhan et al.; the construction geological advance forecast method and ?? / ?R criterion prediction method of Xu Linsheng et al.; the energy storage test analysis and ...

Claims

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Application Information

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IPC IPC(8): G01V1/00
Inventor 严鹏赵振国卢文波陈明
Owner WUHAN UNIV
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