Adsorption-desorption-seepage experiment system for loaded coal containing gas under condition of varying temperatures

An experimental system and technology for gaseous coal, which is applied in the field of adsorption-desorption-seepage experimental system of gas-containing coal under variable temperature conditions, can solve the problem that it is difficult to reflect the real characteristics of gas-containing coal, cannot meet the needs of scientific research, and the air tightness is not good enough. And other issues

Inactive Publication Date: 2012-12-19
HENAN POLYTECHNIC UNIV
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

[0004] (1) There is no comprehensive consideration of factors such as temperature control, loading process, adsorption-desorption effect, coal sample deformation, and a relatively complete overall design
[0005] (2) The range of applied loads (including confining pressure, axial pressure, pore pressure, etc.) is small, unable to characterize the load characteristics under deep mining conditions, and cannot meet the scientific research needs of in-depth research on loaded gas-containing coal
[0006] (3) It is difficult to achieve long-term loading, res

Method used

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  • Adsorption-desorption-seepage experiment system for loaded coal containing gas under condition of varying temperatures

Examples

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Embodiment Construction

[0022] Depend on figure 1 The shown a gas-containing coal adsorption-desorption-seepage experimental system under variable temperature conditions includes a pool body 17 for holding a constant temperature water bath, a triaxial pressure chamber 1 is arranged in the pool body 17, and a coal room.

[0023] The triaxial pressure chamber 1 is airtight, including the top plate 2, the bottom plate 3 facing up and down, and the side plates surrounded between the top and bottom plates 2, 3. The top plate 2 of the triaxial pressure chamber 1 is inserted with a vertical column Indenter 8, the bottom end of the indenter 8 is located in the triaxial pressure chamber 1, and the top end of the indenter 8 protrudes upwards out of the triaxial pressure chamber 1. The coal chamber is composed of a coal chamber base 9 and a vertical heat-shrinkable tube 7, the coal chamber base 9 is fixed on the upper side of the bottom plate 3 of the triaxial pressure chamber 1, the coal chamber base 9 is opp...

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Abstract

The invention discloses an adsorption-desorption-seepage experiment system for loaded coal containing gas under the condition of varying temperatures. The experiment system comprises a tank body used for holding constant-temperature water bath. A triaxial pressure chamber is arranged in the tank body; a coal chamber is arranged in the triaxial pressure chamber; a coal sample is installed in the coal chamber; a foil gauge is adhered onto the coal sample and is connected with a dynamic strain meter; one end of the coal chamber is provided with an opening, and a pressure head is mounted in the opening and connected with a pressure unit; the coal chamber is communicated with a vacuum pipeline and a high pressure gas-transmission pipeline; and a confining pressure pipeline used for conveying hydraulic oil is communicated with a cavity between the coal chamber and the triaxial pressure chamber. The adsorption-desorption-seepage experiment system for loaded coal containing gas under the condition of varying temperatures in the invention has the advantages of a simple structure, convenient operation, reasonable design, high experiment precision and a low price.

Description

technical field [0001] The invention relates to an experimental research technology for the adsorption-desorption-seepage law of loaded gas-containing coal in the coal mining process, and is an adsorption-desorption-seepage experimental system suitable for gas-containing coal under variable temperature conditions. Background technique [0002] In the process of coal mining, there is a very complex interactive relationship between coal and gas. The migration of gas in coal is affected by gas adsorption analysis, gas pressure, in-situ stress state, groundwater, ground temperature, coal structure, etc. Restricted by many factors, there is a strong multi-factor dynamic coupling relationship between coal deformation and gas migration. Coal mine gas accidents, especially coal and gas outbursts, are an external reflection and manifestation of the coupling of these factors under specific conditions. With the continuous increase of coal mining depth in my country, the coal body is i...

Claims

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Application Information

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IPC IPC(8): G01N33/22G01N15/00
Inventor 魏建平王登科温志辉王云刚李波
Owner HENAN POLYTECHNIC UNIV
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