基于扩散动力学实验的超声激励含水煤促扩散机制研究

    Study on diffusion-promoting mechanism of ultrasonically-excited water-bearing coal based on diffusion kinetics experiments

    • 摘要: 为探究超声波对实际煤层的增渗促进瓦斯扩散的机制,本文进行了扩散动力学实验,分析了超声波功率、煤体含水量及超声波作用时间对煤体瓦斯扩散参数的影响。结果表明:超声波处理之后,煤体瓦斯吸附解吸及扩散特性基本不变,但煤体吸附解吸量及扩散能力显著改变。18 kW超声处理后,煤体瓦斯解吸提高18.17%~24.29%。超声波处理后原煤、干煤样和饱水煤的瓦斯扩散系数分别增大12.29%、8.32%和17.26%,煤中含水有助于提升超声增透效应。

       

      Abstract: In order to investigate the mechanism of ultrasonic wave on the actual coal seam to increase the permeability and promote the gas diffusion, this paper carried out diffusion kinetic experiments to analyze the effects of ultrasonic power, water content of the coal body and ultrasonic time on the parameters of the gas diffusion of the coal body. The results show that after ultrasonic treatment, the gas adsorption and desorption and diffusion characteristics of coal body are basically unchanged, but the adsorption and desorption amount and diffusion capacity of coal body are significantly changed. 18kW ultrasonic treatment increased the gas desorption of coal body by 18.17%~24.29%. The gas diffusion coefficients of raw coal, dry coal samples and water-saturated coal increased by 12.29%, 8.32% and 17.26%, respectively, after ultrasonic treatment, and the water content of the coal helped to enhance the ultrasonic penetration effect.

       

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