王潞, 冯增朝, 赵东. 不同温度及注水压力条件下瓦斯解吸特性实验[J]. 煤矿安全, 2015, 46(12): 4-7.
    引用本文: 王潞, 冯增朝, 赵东. 不同温度及注水压力条件下瓦斯解吸特性实验[J]. 煤矿安全, 2015, 46(12): 4-7.
    WANG Lu, FENG Zengchao, ZHAO Dong. Test on Methane Desorption Characteristics Under Different Temperature and Water Injection Pressure[J]. Safety in Coal Mines, 2015, 46(12): 4-7.
    Citation: WANG Lu, FENG Zengchao, ZHAO Dong. Test on Methane Desorption Characteristics Under Different Temperature and Water Injection Pressure[J]. Safety in Coal Mines, 2015, 46(12): 4-7.

    不同温度及注水压力条件下瓦斯解吸特性实验

    Test on Methane Desorption Characteristics Under Different Temperature and Water Injection Pressure

    • 摘要: 为了研究高压注水后含瓦斯煤体的恒温及升温解吸规律,采用自主研制的吸附-注水-加热-解吸成套实验系统,针对不同条件下含瓦斯煤体的解吸特性,从沁水煤田古城煤矿和高河煤矿现场取样,进行了相应的实验研究,得出含瓦斯煤体在不同注水压力、不同吸附压力和不同温度条件下,其解吸特性的变化规律。实验结果表明:相同吸附压力下的未注水自然解吸,高河煤样的解吸率高于古城煤样;随着注水压力的增加,恒温条件下含瓦斯煤体的解吸率呈非线性规律衰减,当到达一定高的注水压力时,衰减会趋于稳定;升温可以有效促进注水后含瓦斯煤体的解吸,并且随着注水压力的增加,加热的促进作用越明显。

       

      Abstract: To study constant temperature and rising temperature desorption laws of coal body containing gas after high pressure water injection, using self-developed adsorption-water injection-heating-desorption experimental system, and according to desorption characteristics of coal body containing gas under different conditions, the experimental coal specimens are from Gaohe Coal Mine and Gucheng Coal Mine in Qinshui Coal Basin. From the experiment, the desorption laws of CBM at different water injection pressure, adsorption pressure and temperature were obtained. The results show that the desorption capacity of Gaohe Coal Mine is higher than that in Gucheng at the same adsorption pressure in natural state without water injection;with the increase of water injection pressure, the ultimate desorption ratio of coal body containing gas at constant temperature is gradually decreased in nonlinear law. The decreasing law tends to steady once it is up to critical water injection pressure;heating process has an effectively promote on desorption capacity for coal body containing gas after water injection. with the increase of water injection pressure, desorption capacity after heating process is rapidly increased.

       

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