郝天轩, 李帆, 唐一举. 不同瓦斯压力的煤在单轴受压条件下温度变化规律[J]. 中国矿业, 2021, 30(6): 165-170. DOI: 10.12075/j.issn.1004-4051.2021.06.001
    引用本文: 郝天轩, 李帆, 唐一举. 不同瓦斯压力的煤在单轴受压条件下温度变化规律[J]. 中国矿业, 2021, 30(6): 165-170. DOI: 10.12075/j.issn.1004-4051.2021.06.001
    HAO Tianxuan, LI Fan, TANG Yiju. Temperature variation law of coal with different gas pressure under uniaxial compression[J]. CHINA MINING MAGAZINE, 2021, 30(6): 165-170. DOI: 10.12075/j.issn.1004-4051.2021.06.001
    Citation: HAO Tianxuan, LI Fan, TANG Yiju. Temperature variation law of coal with different gas pressure under uniaxial compression[J]. CHINA MINING MAGAZINE, 2021, 30(6): 165-170. DOI: 10.12075/j.issn.1004-4051.2021.06.001

    不同瓦斯压力的煤在单轴受压条件下温度变化规律

    Temperature variation law of coal with different gas pressure under uniaxial compression

    • 摘要: 为了利用煤体温度预测技术预防煤与瓦斯突出灾害,本文依据热力学、渗流力学、岩石力学等学科的基础理论以及煤与瓦斯突出假说,构建了含瓦斯煤的热流固耦合模型。利用COMSOL软件对含瓦斯煤体的单轴加载过程进行数值模拟,主要对不同瓦斯压力状态下的煤体受压后表面的温度变化规律进行研究。结果表明,当煤体内瓦斯压力为0.1 MPa时,即煤体内不含瓦斯对煤体施压,煤体表面温度呈上升趋势;当瓦斯压力升高至0.5 MPa、1.0 MPa、1.5 MPa时,煤体表面温度曲线表现为下降趋势,并且随着瓦斯压力越大,温度下降幅度也越大。温度的下降速率随着时间推移呈减缓状态,当瓦斯压力不大时表现得更为明显。

       

      Abstract: In order to prevent coal and gas outburst disaster by using coal temperature prediction technology, this paper constructs the thermal fluid solid coupling model of gas-containing coal based on the basic theories of thermodynamics, seepage mechanics, rock mechanics and the hypothesis of coal and gas outburst.COMSOL software is used to simulate the uniaxial loading process of gas-containing coal body, in which the temperature change of coal body surface under different gas pressure is studied.The results show that when the gas pressure in the coal is 0.1 MPa, that is to say that there is no gas in the coal to exert pressure on the coal body, the surface temperature of the coal body shows an upward trend; when the gas pressure rises to 0.5 MPa, 1.0 MPa, 1.5 MPa, the surface temperature curve of the coal body shows a downward trend, and the greater the gas pressure is, the greater the temperature drop is.The decreasing rate of temperature slows down with time, especially when the gas pressure is not large.

       

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