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Dry and wet elastic wave hole bottom cave and subterranean cavitation detection device and method

A dry and wet dual-use, underground cavity technology, which is applied in the field of elastic wave hole bottom karst caves and underground cavity detection devices, can solve problems affecting the accuracy of probe detection data, reduce vibration transmission to receiving transducer components, and ensure stability performance, high accuracy

Pending Publication Date: 2019-09-06
武汉天宸伟业物探科技有限公司
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Problems solved by technology

However, in the detection process of this invention, water needs to be poured at the bottom of the pile, and the sonar detection probe is soaked in the water layer to realize the detection, and the use has limitations; at the same time, the probe detection process does not have a shock-absorbing structure, which will affect the probe detection data. the accuracy of

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  • Dry and wet elastic wave hole bottom cave and subterranean cavitation detection device and method
  • Dry and wet elastic wave hole bottom cave and subterranean cavitation detection device and method
  • Dry and wet elastic wave hole bottom cave and subterranean cavitation detection device and method

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Embodiment Construction

[0058] In order to make the technical means, creative features, goals and effects achieved by the present invention easy to understand, the following will further explain how the present invention is implemented in conjunction with the accompanying drawings and specific implementation methods.

[0059] Such as Figure 1 to Figure 6 As shown, the present invention provides a wet and dry elastic wave hole bottom karst cave, underground cavity detection device, including a probe 100, a host 200 and a cable 300 connecting the host 200 and the probe 100; the probe 100 includes an elastic wave emission Component 1, a plurality of receiving transducer components 2 and a probe circuit board component 3 arranged on the outer periphery of the elastic wave transmitting component 1;

[0060] The elastic wave emitting assembly 1 includes an elastic wave radiation block 11, a seismic source 12, a connecting cavity 13 and a circuit board cavity 14; a seismic source 12 is installed below the ...

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Abstract

The invention discloses a dry and wet elastic wave hole bottom cave and subterranean cavitation detection device and method. The device comprises a probe; the probe comprises an elastic wave emittingassembly, multiple receiving transducer assemblies distributed on the outer circumference of the elastic wave emitting assembly and a probe circuit board assembly; the elastic wave emitting assembly comprises a connecting cavity body, the upper part and the lower part of the connecting cavity body is provided with a circuit board cavity body and a seismic source; the circuit board cavity body is internally provided with the probe circuit board assembly; the seismic source is electrically connected with the probe circuit board assembly; each receiving transducer assembly comprises a sound wavereceiving transducer, a transducer height adjuster and a connecting pipe; one end of each connecting pipe is connected with the connecting cavity body and the other end is fixed with the correspondingtransducer height adjuster through a flange; a first damping pad is disposed between the two flanges; and the sound wave receiving transducer is electrically connected with the probe circuit board assembly. Full-area detection of the hole bottom cave in different environments can be realized; and through the contact stability between the probe and a detection surface and the signal reliability, the detection accuracy is improved.

Description

technical field [0001] The invention relates to the field of hole bottom karst cave detection, in particular to a wet and dry elastic wave hole bottom karst cave and underground cavity detection device and method. Background technique [0002] According to the requirements of the "Code for Geotechnical Engineering Survey" and other regulations, it should be found that there are no weak interlayers, fractured fracture zones and cave distribution within three times the pile diameter below the pile tip and not less than 5m, and the pile bottom stress range should be No free face of rock mass. For large-diameter rock-socketed piles of single piles, it should be checked whether there are unfavorable geological conditions such as soil caves, karst caves, broken zones or weak interlayers within the range of 3 times the pile body diameter or 5m depth below the lithology testing hole. [0003] At present, the method of advanced drilling at the bottom of the pile is mostly used in en...

Claims

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Application Information

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IPC IPC(8): G01V1/00G01V1/04G01V1/16F16F15/04
CPCG01V1/00G01V1/04G01V1/162G01V1/164G01V1/166F16F15/04
Inventor 夏代林曾成林彭洋王安银吴自来孟红霞
Owner 武汉天宸伟业物探科技有限公司
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