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首页> 外文期刊>Energies >Coupled Effects of Moisture Content and Inherent Clay Minerals on the Cohesive Strength of Remodelled Coal
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Coupled Effects of Moisture Content and Inherent Clay Minerals on the Cohesive Strength of Remodelled Coal

机译:水分和固有粘土矿物对重塑煤粘结强度的耦合效应

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Injecting water into a coal seam to enhance the cohesive strength of coal and thus minimize and reduce the coal wall spalling risk must be considered in underground coal mining systems. In general, coal with low cohesive strength contains clay minerals which may affect the stability of coal by interacting with water. Therefore, the coupled effects of moisture content and inherent clay minerals on the physical properties (i.e., cohesive strength and internal friction angle) of coal samples should be addressed. In this paper, direct shear tests were conducted by remodelling the Yiluo coal with various moisture contents ranging from 6.6% to 20.7%. According to Mohr–Coulomb failure criterion, cohesive strength and internal friction angle of coal were obtained. Afterwards, effects of moisture content and clay minerals (i.e., Kaolinite, Smectite and Illite) on the cohesive strength of coal were analysed using X-ray diffraction (XRD) method. The results show that cohesive strength increases when the moisture content rises from 6.6% to 17.6%, after which it decreases with increasing moisture content. This trend can be well illustrated by the relationship between typical water retention curve (WRC) and suction stress of soil. Therefore, a moisture content of 17.6% would be an optimal value to enhance the stability of the Yiluo coal seam.
机译:在地下采煤系统中,必须考虑向煤层注水以增强煤的粘结强度,从而最大程度地减少和降低煤壁剥落的风险。通常,具有低内聚强度的煤包含粘土矿物,它们可能与水相互作用而影响煤的稳定性。因此,应解决水分含量和固有粘土矿物对煤样品的物理性能(即内聚强度和内摩擦角)的耦合影响。本文通过对不同水分含量为6.6%至20.7%的伊洛煤进行重塑来进行直接剪切试验。根据Mohr-Coulomb破坏准则,获得了煤的内聚强度和内摩擦角。然后,使用X射线衍射(XRD)方法分析了水分和粘土矿物(即高岭石,绿土和伊利石)对煤的内聚强度的影响。结果表明,当水分含量从6.6%增加到17.6%时,内聚强度增加,此后随着水分含量的增加而降低。这种趋势可以通过典型的保水曲线(WRC)和土壤吸力之间的关系很好地说明。因此,水分含量为17.6%是提高伊洛煤层稳定性的最佳值。

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