METHOD OF DETERMINATION OF GAS DEPENDENCE INTENSIFICATION FROM DESTROYED COAL Russian patent published in 2018 - IPC E21F17/18 G01N7/14 

Abstract RU 2672070 C1

FIELD: mining.

SUBSTANCE: invention relates to mining and can be used to determine the ejection hazard of coal seams in underground mining. In the mining conditions, coal samples are taken in a hole drilled from a preparatory development with a diameter of 43 mm, from a depth of 3.5÷5.5 m with a core picker that is mechanically connected to a borax made of twisted steel, and placed in a sealed steel beaker having an external manometer for measuring the gas pressure in the cover, a resistance in the inner region with the contacts removed for temperature measurement and a steel rod for breaking the coal sample during rotation. After that, within 1.5÷2 hours a glass with a sample of coal is delivered to the laboratory and the gas pressure in the glass is determined by the manometer. Further, the sample of coal in the beaker is destroyed for 1 minute and the final temperature, the increment of the gas pressure are fixed and the weighted average radius of the coal particles is determined. Coal sample is successively cut 3 to 5 times, each time fixing the final temperature, incrementing the gas pressure and determining the weighted average radius of the coal particles. After that, a graph is constructed of the dependence of the pressure increment in the beaker on the average weighted radius of the coal particles, by means of which the number of moles of gas per unit mass of coal released during the breakdown of the coal sample is calculated. Specific intensity of gas evolution from the destroyed coal is then determined.

EFFECT: technical result of the invention is to increase the accuracy of determining the intensity of gas evolution from the destroyed coal.

1 cl, 2 dwg

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RU 2 672 070 C1

Authors

Dyrdin Valerij Vasilevich

Fofanov Andrej Alekseevich

Kim Tatyana Leonidovna

Plotnikov Evgenij Anatolevich

Smirnov Vyacheslav Gennadevich

Shepeleva Sofya Alekseevna

Dates

2018-11-09Published

2017-11-07Filed