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Advanced detection device and method for unfavorable geology and rock mass mechanical properties of deep and long tunnels

A technology of rock mechanics and advanced detection, which is applied in geophysical measurement, soil material testing, instruments, etc., can solve the problems of high cost, inconvenient drilling of rock cores, long indoor test period, etc., and achieves high detection accuracy and easy operation. Simple, easy-to-measure results

Active Publication Date: 2013-04-03
SHANDONG UNIV
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Problems solved by technology

[0003] 1. The indoor test period is long and expensive, and the mechanical parameters of the rock mass measured in the laboratory environment may differ from the actual field values, because the laboratory is separated from the original environmental field, and there are no constraints such as stress and temperature, so , it is difficult to obtain the physical and mechanical parameters under undisturbed
[0004] 2. Previous advanced geological prediction methods, such as TSP (abbreviation for tunnel seismic prediction) and ground radar, cannot obtain the water body conditions within 30 meters in front of the tunnel, and drilling often has the limitation of "one-hole view" or "three-hole view" , That is to say, one borehole cannot drill the water body in the geological area ahead, and sometimes three boreholes cannot drill the water body in front of the face, so it is impossible to fully and accurately obtain the existence of the water body in front of the tunnel face
[0005] 3. The mechanical parameters of conventional tunnel rock mass are obtained by drilling cores in advance, and then measured in the laboratory. Part of the rock core cannot represent the geological conditions of the entire tunnel. The real-time drilling monitoring of the tunnel can obtain the rock mass mechanical parameters and lithological changes in various parts of the tunnel.

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  • Advanced detection device and method for unfavorable geology and rock mass mechanical properties of deep and long tunnels
  • Advanced detection device and method for unfavorable geology and rock mass mechanical properties of deep and long tunnels
  • Advanced detection device and method for unfavorable geology and rock mass mechanical properties of deep and long tunnels

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Embodiment Construction

[0048] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0049] combine Figure 1 to Figure 5 A device for advanced detection of adverse geology and mechanical properties of rock mass in deep and long tunnels, comprising a drilling rig, an induction system, a data conversion system, and a data analysis system, the induction system is installed on the drilling rig, and the induction system, the data conversion system, and the data analysis system are connected in sequence, The sensing system includes a drill bit displacement acquisition unit, a rotational speed acquisition unit and a pressure acquisition unit.

[0050] Described drilling rig comprises drill stand, and drill stand is connected with slide block 5, and drill stand is provided with power head auxiliary device 6, and power head auxiliary device 6 is connected with power head 7, and power head 7 is connected with drilling rod 8, and described data c...

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Abstract

The invention discloses an advanced detection device and method for unfavorable geology and rock mass mechanical properties of deep and long tunnels. The device comprises a drilling machine, a sensing system, a data conversion system and a data analysis system. The sensing system is installed on the drilling machine; the sensing system, the data conversion system and the data analysis system are connected successively; and the sensing system comprises a drill bit displacement acquisition unit, a rotation speed acquisition unit and a pressure acquisition unit. According to the advanced detection device and method, boreholes and borehole radars are combined, and a sensor technology is used for acquiring parameters of rotation speeds, drill bit displacement, torque, propulsion, impact energy, pumping pressure and the like in real time, and accordingly, rock mass physical and mechanical parameters and joint fissure distribution and occurrences in the geologic body within 30 meters ahead are forecast accurately, whether water body situations exist in a 10m range around a borehole is detected accurately, the cost is low, and the occupied construction time is short.

Description

technical field [0001] The invention relates to the technical field of advanced geological prediction, in particular to a device and method for advanced detection of unfavorable geology and mechanical properties of rock mass in deep and long tunnels. Background technique [0002] Tunnel engineering is a kind of geological engineering. Although the tunnel design and engineering geological survey before construction predict and predict the geological conditions of the tunnel to a certain extent, due to the complexity of the rock mass, the survey data and the tunnel excavation The actual situation may be quite different. There are a large number of tunnel projects in the field of water conservancy, hydropower and transportation in my country. Geological disasters are the key factors restricting tunnel construction. Often due to the unknown geological conditions in front of the tunnel and the inability of survey data to fully and accurately reflect the geological conditions in f...

Claims

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Application Information

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IPC IPC(8): G01V11/00G01N33/24
Inventor 李术才薛翊国田昊李海燕刘斌刘人太
Owner SHANDONG UNIV
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