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The seepage properties and permeability enhancement mechanism in coal under temperature shocks during unloading confining pressures

机译:卸载限制压力期间温度冲击下煤中渗漏性能和渗透性增强机制

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摘要

To understand the gas penetration properties during unloading confining pressures and permeability enhancement mechanism in coal, temperature shocks, seepage tests, NMR, CT and SEM scanning tests were carried out with trimmed coal samples. The results showed that the coal permeability increased with the decrease of confining pressures after temperature shocks performed, and that the coal permeability fully followed an exponential change law. To achieve a higher gas permeability, heating-cooling shocks should be executed in low stress regions and stress-releasing areas in coal. According to the NMR results, the increase in pore volume improved the gas diffusion coefficient of coal. The CT and SEM scanning results declared that the growth and extension of internal and surface cracks eventually enhanced the coal permeability. After temperature shocks performed, it can be concluded that coal anisotropy and excessive thermal stresses are the essential causes of the coal damage and gas permeability enhancement.
机译:为了了解煤,温度冲击,渗流试验,NMR,CT和SEM扫描试验的造成蓄电池期间的气体渗透性能。结果表明,在进行温度冲击后,煤渗透率随着限制压力的降低而增加,煤渗透充分遵循指数变化法。为了实现更高的透气性,加热冷却冲击应在低应力区域和煤中的应力释放区域执行。根据NMR结果,孔体积的增加改善了煤的气体扩散系数。 CT和SEM扫描结果宣布,内部和表面裂缝的生长和延伸最终增强了煤渗透性。在进行温度冲击之后,可以得出结论,煤各向异性和过度的热应力是煤损伤和透气性增强的必要原因。

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