王司建, 李志强. 构造煤多尺度孔隙中瓦斯扩散的动扩散系数新模型[J]. 煤矿安全, 2015, 46(5): 16-19.
    引用本文: 王司建, 李志强. 构造煤多尺度孔隙中瓦斯扩散的动扩散系数新模型[J]. 煤矿安全, 2015, 46(5): 16-19.
    WANG Sijian, LI Zhiqiang. Dynamic Diffusion Coefficient New Model for Gas Diffusion in Multi-scale Pore of Tectonic Coal[J]. Safety in Coal Mines, 2015, 46(5): 16-19.
    Citation: WANG Sijian, LI Zhiqiang. Dynamic Diffusion Coefficient New Model for Gas Diffusion in Multi-scale Pore of Tectonic Coal[J]. Safety in Coal Mines, 2015, 46(5): 16-19.

    构造煤多尺度孔隙中瓦斯扩散的动扩散系数新模型

    Dynamic Diffusion Coefficient New Model for Gas Diffusion in Multi-scale Pore of Tectonic Coal

    • 摘要: 针对原生煤和构造煤2类煤种的瓦斯扩散进行对比实验,结果表明:与原生煤相比,构造煤的瓦斯扩散率前期增加更加迅速,后期衰减也更加迅速;构造煤的全过程扩散率一直大于原生煤。实验发现,扩散系数是随时间增大而逐渐衰减的变量,为此提出动扩散系数的表达式,建立了动扩散系数新扩散模型。通过验证,新扩散模型对不同煤种的构造煤瓦斯扩散全程能够准确描述,拟合精度均高于经典模型,表明新扩散模型更加精确、适用范围更广泛。

       

      Abstract: A gas diffusion contrast experiment between tectonic coal and undeformed coal had been carried out. The results show that the gas diffusion rate of the tectonic coal increases more rapidly in the early and also decay more quickly in the late compared with the undeformed coal; the diffusion rate of tectonic coal is larger than that of undeformed coal in the whole process of diffusion. The experiment indicated that the diffusion coefficient is a variable gradually decaying with the increase of time. Therefore, the expression of dynamic diffusion coefficient is proposed and dynamic diffusion coefficient new model is established. Through the verification, the new diffusion model can accurately describe the gas diffusion process of different types of tectonic coal all the way and the fitting precision is higher than that of classical model. It means that the new diffusion model is more precise and has a wider range of application.

       

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