Experiment device for simulating natural firing in goaf and test method

A spontaneous combustion and experimental device technology, applied in measuring devices, instruments, chemical analysis by means of combustion, etc., can solve the problem of inability to lay the roof and floor of coal seams, the inability to simulate the process of roof collapse in goafs, Problems such as limited laying height

Active Publication Date: 2018-07-27
SHANDONG UNIV OF SCI & TECH
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

[0013] (1) The size of the existing coal spontaneous combustion simulation experiment device in the goaf is small, so it is difficult to more realistically simulate the spontaneous combustion process of the remaining coal in the goaf from a larger spatial scale;
[0014] (2) The existing goaf coal spontaneous combustion simulation experiment device cannot lay similar materials on the roof and floor of the coal seam, or the laying height is limited, so it is impossible to more realistically simulate the...

Method used

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  • Experiment device for simulating natural firing in goaf and test method
  • Experiment device for simulating natural firing in goaf and test method
  • Experiment device for simulating natural firing in goaf and test method

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Embodiment Construction

[0038] The present invention will be described in detail below in combination with specific embodiments.

[0039] It mainly consists of five parts: the experimental furnace body, the similar material part of the goaf, the air supply and exhaust part, the gas collection and analysis part, and the automatic temperature measurement and monitoring system.

[0040] The experimental furnace is as Figure 1 to Figure 3 As shown, it includes: furnace outer layer steel plate 1, ordinary brick layer 2, polyurethane insulation layer 3, water interlayer 4, refractory brick layer 5, air inlet pipe 19, return air pipe 20, top cover 7, coal outlet 6, Air inlet pipe 19 and air return pipe 20, air inlet lane 32, air return lane 33, arched hollow protective pipe 18. The experimental furnace body of the present invention is a cylinder as a whole, the outer diameter of the experimental furnace is 3.73m, the inner diameter of the experimental furnace body is 2.8m, and the net height of the experi...

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Abstract

The invention discloses an experiment device for simulating natural firing in a goaf and a test method. The experiment device is characterized in that an experiment furnace body is provided with a coal outlet, an air intake pipe and an air return pipe; a coal bed, a similar material bottom plate, a preset water bag, a to-be-settled similar material bottom plate, a first similar material top plateand a second similar material top plate are arranged in the experiment furnace body; multiple-point thermocouple testing rods and an air intake bundle pipe are arranged above the second similar material top plate; a covering layer is arranged between the multiple-point thermocouple testing rods; a plurality of thermocouples are arranged on the multiple-point thermocouple testing rods; the multiple-point thermocouple testing rods and the air intake bundle pipe are in tight contact with a similar material; both ends of a coal mining work face on the coal bed are provided with an air intake tunnel and an air return tunnel, an arch-shaped hollow protecting pipe is paved among the air intake tunnel, the coal mining work face and the air return tunnel, and a certain passage space is formed on asupport coal body, so as to build an air intake and return system for the goaf and the work face. The experiment device has the beneficial effect that the whole process of coal natural firing in the goaf under the air leakage condition can be accurately and effectively simulated in the laboratory.

Description

technical field [0001] The invention belongs to the technical field of coal, and relates to an experimental device and a test method for simulating spontaneous combustion in goafs. Background technique [0002] Coal spontaneous combustion is one of the common disasters in the process of coal mining, storage and transportation, which causes a great waste of resources and seriously threatens people's lives and properties. Previous studies have shown that the occurrence and development of coal spontaneous combustion is an extremely complex, dynamically changing, and automatically accelerating physical and chemical process. In addition, coal is a heterogeneous body with extremely complex physical structure and chemical mineral composition. The molecular structure model is still inconclusive, and it is difficult to understand the process of spontaneous combustion of coal theoretically. In addition, since coal spontaneous combustion often occurs in goafs hundreds of meters deep u...

Claims

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Application Information

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IPC IPC(8): G01N31/12G01D21/02
CPCG01D21/02G01N31/12
Inventor 谢军辛林程卫民付海政王刚宋玥刘震刘晨
Owner SHANDONG UNIV OF SCI & TECH
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