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Device and method for testing fluid migration law in creep of soft rock samples containing ice

A sample and soft rock technology, which is applied in the field of devices for testing the laws of fluid migration in the creep of ice-bearing soft rock samples, can solve the problem that it is difficult to simulate the real occurrence state of ice-bearing soft rock, the boundary effect is obvious, and the confining pressure cannot be changed And other issues

Active Publication Date: 2022-06-21
CHINA UNIV OF MINING & TECH (BEIJING)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Among them, the consolidation instrument is generally used for soil research, and cannot change the size of the confining pressure; the uniaxial instrument is used for soil or rock research, and can only achieve axial loading, and cannot apply confining pressure and pore pressure; the triaxial instrument can be used for soil body or rock research, but the sample size used by the existing triaxial instrument is small, and the boundary effect is obvious; in addition, it is difficult to simulate the real occurrence state of ice-bearing soft rock with pseudo-triaxial loading, and there is a lack of microscopic observation means
Moreover, the existing rock-soil creep test equipment generally has low efficiency. The experiment for each sample takes a few days at least, and it takes a month at most. It often takes several months to complete the test of several samples, which cannot meet the needs of the project.

Method used

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  • Device and method for testing fluid migration law in creep of soft rock samples containing ice
  • Device and method for testing fluid migration law in creep of soft rock samples containing ice
  • Device and method for testing fluid migration law in creep of soft rock samples containing ice

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Effect test

Embodiment 1

[0033] Ice-bearing soft rock (including moraine layer, frozen soil or hydrate layer) is subject to high confining pressure conditions and the temperature of the environment is low, so a special high-pressure creep instrument that can provide temperature and pressure control is required to conduct experiments. At home and abroad, there is no equipment used to study the fluid transport in the creep process of icy soft rock. Since the ice-bearing soft rock has more components than the usual rock and soil, the changes of the microstructure of the samples are more complicated during the experiment. Combining various monitoring equipment such as geotechnical CT, acoustic emission, conductivity meter and gas chromatograph with the true triaxial high-pressure creep experimental device, the experimental device for fluid migration in the creep process of ice-bearing soft rock is obtained. . Through this test device, not only stress can be applied from three vertical directions, but als...

Embodiment 2

[0064] The embodiment of the present invention provides a method for simulating the fluid migration law in the creep of ice-bearing soft rock samples. include:

[0065] Prepare icy soft rock samples and place them in sample jars;

[0066] Use the XYZ true triaxial pressure system to apply pressure to the sample to carry out the creep test, test the development curve of the deformation of hydrate-containing sediment or soft rock with time, test the ultrasonic velocity and attenuation, and the change curve of resistivity with time, measure the deformation, The curve of ultrasonic wave and resistance with time;

[0067] Use the temperature control system to cool down in stages according to the preset classification temperature, and recover the fracturing fluid after the temperature is stable, and analyze the seepage characteristics;

[0068] The plate pressing device is used to apply local pressure or global pressure to the sample in any direction of XYZ, measure the deformatio...

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Abstract

The invention discloses a device and a method for testing the law of fluid migration in the creep of soft rock samples containing ice. The device includes: multi-connected sample tank, XYZ true triaxial pressure system, temperature control system, CT scanner, various parameter sensors and data collector; a plate pressurization device is set in the sample tank, and the plate pressurization device Used to apply local pressure or global pressure to the sample in any direction of XYZ, the plate pressurization device includes a pressurization controller and a pressurization plate, and the pressurization plate includes an upper end pressure plate, a buffer plug and a lower end connected in sequence Pressure plate. The device and method provided by the present invention can not only simulate the graded loading creep, unloading creep, dynamic load creep, cooling-pressure ice-thawing creep test of moraine-containing layer, frozen soil or hydrate layer more realistically, but also can Carry out mechanical parameter analysis test. Moreover, it can detect and analyze the deformation and failure characteristics of rock mechanical structures through various test parameters such as permeability, CT detection, acoustic emission, and conductivity analysis.

Description

technical field [0001] The invention relates to the technical fields of tunnel engineering and mine safety mining, in particular to a device and method for testing the fluid migration law in the creep of ice-bearing soft rock samples. Background technique [0002] During the construction of alpine mountainous areas and submarine underground projects in western my country, loose permafrost, moraine layers and weak hydrate formations are often passed through. Due to the strong low-temperature creep characteristics of ice-bearing soft rock, it is prone to large deformation, water and sand gushing, and gas release, which brings a series of difficulties to site construction, which seriously restricts safe construction and efficient mining of mineral resources. Studies have shown that in complex geological environments such as excavation disturbance, unloading, temperature changes, and multiphase seepage, the creep process of ice-bearing soft rock will be accompanied by phase tran...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N3/08G01N11/00G01N13/04G01N15/08
CPCG01N3/08G01N11/00G01N13/04G01N15/082G01N2203/0256
Inventor 杨柳郑元涵孟思炜郭平业王炯何满潮
Owner CHINA UNIV OF MINING & TECH (BEIJING)
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