Study on the gas desorption law and indicator influencing factors of fixed-size coal samples

The prediction of dangerous hazards in working faces is an important link to prevent coal and gas outbursts. Improving the accuracy of predictive indicators is of great significance for reducing the phenomenon of being prominently below the critical value and ensuring safe production. The fixed-size...

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Veröffentlicht in:Scientific reports 2019-11, Vol.9 (1), p.17134-11, Article 17134
Hauptverfasser: Li, Lei, Sun, Zhongguang, Wang, Fakai, Zhang, Kaizhi
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Sprache:eng
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Zusammenfassung:The prediction of dangerous hazards in working faces is an important link to prevent coal and gas outbursts. Improving the accuracy of predictive indicators is of great significance for reducing the phenomenon of being prominently below the critical value and ensuring safe production. The fixed-size desorption index K 1 is one of the important indicators for coal face and gas outburst prediction. Based on the diffusion theory and the physical meaning of fixed-size coal samples, the mathematical expression of K 1 is established by the self-developed high/low temperature pressure swing adsorption-desorption experimental system. According to the equation, the effects of gas pressure, loss time, coal particle size and diffusion coefficient on K 1 are studied. The results show that the K 1 index is logarithmically related to the gas pressure. Under the same conditions, the longer the loss time is, the smaller the measured K 1 is, and the smaller the particle sizes of the drill cuttings are, the more notable the performance is; the diffusion coefficient represents the ability of gas to bypass micropores and the coal matrix. The greater the ability to bypass the matrix is, the larger the diffusion coefficient under the same conditions is, and the larger K 1 is; the coal particle size has a greater influence on K 1 , and the smaller the size is, the more likely it is that the phenomenon of being prominently below the critical value occurs. Therefore, the particle size composition of coal during on-site measurements is crucial for obtaining the true K 1 and the exact critical values.
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-019-53211-4