Rock slope deformation pre-warning method based on microearthquake apparent stress

A technology for rock slope and micro-seismic, applied in the field of geotechnical engineering, can solve the problems of complex rock failure mechanism, unsatisfactory early warning effect of local deformation of shallow rock mass, etc., and achieve good prediction and early warning effect and accurate early warning effect.

Active Publication Date: 2018-02-23
SICHUAN UNIV
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Problems solved by technology

However, for shallow rock masses with low geostress, especially rock slopes, due to the formation of large-area free surfaces, the mechanism of rock mass failure is complicated, and the initiation, development, expansion, and penetration of cracks will be affected by various factors. Impact
Under different construction intensities, the frequency of microseismic events in different parts of shallow rock mass, especially in

Method used

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  • Rock slope deformation pre-warning method based on microearthquake apparent stress
  • Rock slope deformation pre-warning method based on microearthquake apparent stress
  • Rock slope deformation pre-warning method based on microearthquake apparent stress

Examples

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Embodiment 1

[0034] Taking the rock slope at the dam foundation of a large hydropower station as an example, the rock slope deformation warning method provided by the present invention is specifically described, and the steps are as follows:

[0035] 1. Delineate the rock slope area of ​​the dam foundation of the large-scale hydropower station as the monitoring area, and install the sensors of the ESG microseismic monitoring system (ESG Corporation of Canada) in the monitoring area, such as figure 1 as shown, figure 1 Among them, S1~S18 are the sensor numbers, C 3 、C 3-1 , F 17 、LS 337 、LS 337 、LS 3319 Number the structural faces. There are 18 sensors. The numbers and spatial coordinates of each sensor are shown in Table 1. Each sensor forms a spatial network structure and covers the monitoring area. In the same plane, each sensor is connected with the acquisition instrument of the ESG microseismic monitoring system, and then the acquisition instrument is connected with the host par...

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Abstract

The invention provides a rock slope deformation pre-warning method based on microearthquake apparent stress. The method includes the steps of (1) installing and arranging an ESG microearthquake monitoring system in a monitoring area; (2) conducting blasting excavation construction on the monitoring area, wherein since blasting excavation construction can cause microearthquake events in the monitoring area, the monitoring area is monitored through the ESG microearthquake monitoring system; (3) during monitoring, when the occurrence frequency of a high apparent stress microearthquake event within 4 days in partial regions in the monitoring area is larger than or equal to 2, drawing a curve graph of average microearthquake apparent stress changing along with the time and a curve graph of accumulated microearthquake apparent volume changing along with the time separately; if an average microearthquake apparent stress curve in the curve graph sharp increases from a gentle state to a peak value and then sharp decreases and meanwhile an accumulated apparent volume curve changes from a gentle state to a constantly increasing state, giving a rock slope deformation pre-warning to the partialregions. The method can effectively improve the accuracy of the rock slope deformation pre-warning.

Description

technical field [0001] The invention belongs to the field of geotechnical engineering, in particular to a rock slope deformation early warning method based on microseismic apparent stress. Background technique [0002] After the rock mass is excited by the external disturbance stress, there will be a local elastic-plastic energy concentration phenomenon inside it. When the energy accumulates to a certain critical value, it will cause the generation and expansion of micro-cracks in the rock mass, and the generation and expansion of micro-cracks Accompanied by the release of elastic or stress waves and rapidly propagating in the surrounding rock mass, such elastic waves are called microseisms in geology. The microseismic monitoring technology collects elastic wave information by arranging sensors in the monitoring area, obtains the time, location and nature of rock mass microseismic occurrence through the inversion method, and evaluates the damage status and safety status of t...

Claims

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Application Information

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IPC IPC(8): E21F17/18
CPCE21F17/18
Inventor 徐奴文张敏戴峰蒋雄
Owner SICHUAN UNIV
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