A high temperature and high pressure triaxial test device and method for rock mass containing organic matter

A high-temperature, high-pressure, triaxial test technology is applied in the direction of applying stable tension/pressure to test the strength of materials and the preparation of test samples. It can solve problems such as undeveloped systematic research, and achieve simple equipment, simple operation methods, good experimental results

Inactive Publication Date: 2011-12-21
CHINA UNIV OF MINING & TECH
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Problems solved by technology

However, no systematic research has been carried out in China on the retort...

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  • A high temperature and high pressure triaxial test device and method for rock mass containing organic matter
  • A high temperature and high pressure triaxial test device and method for rock mass containing organic matter

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Embodiment Construction

[0016] Implementation of the present invention will be further described below in conjunction with accompanying drawing:

[0017] Such as figure 1 As shown, the high-temperature and high-pressure triaxial test device containing organic rock mass of the present invention is mainly composed of a high-temperature pressure chamber 1, an organic matter rock mass sample 2, a collection bottle 6, and a gas collection bottle 8. The organic matter rock mass sample 2 is conventionally The method is installed in the high-temperature pressure chamber 1. The upper and lower ends of the organic rock mass sample 2 are respectively provided with upper and lower guide pressure heads, and the middle part of the lower guide pressure head 4 has a central hole. The lower guide pressure head 4 and the A high-temperature anti-blocking net 3 is arranged between the organic rock mass samples 2. The high-temperature anti-blocking net 3 has the same diameter as the organic rock mass sample, and its thi...

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Abstract

The invention relates to an organic rock mass containing high-temperature and high-pressure triaxial test device and method. The device comprises a high temperature pressure chamber, an upper pressure guide head, a lower pressure guide head and a lateral pressure solid, wherein the middle part of the lower pressure guide head is provided with a center hole; a high temperature block-proof net is arranged between the lower pressure guide head and an organic rock mass test sample; the external part of the lower pressure guide head is provided with a collection bottle arranged in a condensed water tank and a gas collection bottle; the collection bottle is provided with a gas outlet pipe; and the gas outlet pipe is provided with a gas inlet value. The method comprises the following steps of: heating the organic rock mass test sample under a buried depth of 400-600m of a preset pressure, heating from the room temperature, and performing heat preservation for two hours with every increase of50 DEG C until the organic rock mass test sample starts to resolve; pyrolyzing generated pyrolysis water, tar oil and liquid-state shale oil after being subjected to cooling and then retaining in thecollection bottle, wherein pyrolysis gases enter into the gas collection bottle filled with water through the gas outlet pipe; and recording a temperature and a pressure when the gases in the collection bottle are generated. According to the invention, a reliable research means is provided for the pyrolysis research on the big-block organic rock mass test sample.

Description

technical field [0001] The present invention relates to a high-temperature and high-pressure triaxial test method, especially a method suitable for studying pyrolysis or carbonization and mechanical properties of organic rock mass, underground coal gasification, mine fire occurrence and development mechanism research, and new energy development and utilization. High temperature and high pressure triaxial test device and method for organic rock mass. Background technique [0002] Both coal and oil shale are complex aggregates composed of high-molecular hydrocarbons and organic minerals, which are very sensitive to heat. Heating it in an isolated air or an inert atmosphere will produce a series of complex physical and chemical changes, among which as the temperature increases, a large number of gaseous substances (liquid substances) of different components and quantities will be produced. Pyrolysis reaction (dry distillation reaction) is one of its most notable features. At ...

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Application Information

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IPC IPC(8): G01N3/18G01N1/44
Inventor 万志军赵阳升马进功刘渝杜广立朱成坦
Owner CHINA UNIV OF MINING & TECH
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