汪开旺. 高压空气爆破致裂效果影响因素分析[J]. 煤矿安全, 2017, 48(5): 184-186,190.
    引用本文: 汪开旺. 高压空气爆破致裂效果影响因素分析[J]. 煤矿安全, 2017, 48(5): 184-186,190.
    WANG Kaiwang. Analysis of Factors Influencing Crack Effect by High Pressure Air Blasting[J]. Safety in Coal Mines, 2017, 48(5): 184-186,190.
    Citation: WANG Kaiwang. Analysis of Factors Influencing Crack Effect by High Pressure Air Blasting[J]. Safety in Coal Mines, 2017, 48(5): 184-186,190.

    高压空气爆破致裂效果影响因素分析

    Analysis of Factors Influencing Crack Effect by High Pressure Air Blasting

    • 摘要: 为了提高低透气性煤层的增透效果,提出了高压空气爆破增透技术,阐述了高压空气爆破技术工作原理和工艺流程,利用高压空气的瞬间爆破冲击煤体,使煤体产生裂隙网络,从而有效地增加煤层透气性,同时分析了影响高压空气爆破煤体致裂效果的几个影响因素。通过数值模拟,研究地应力、高压气体、煤体硬度、瓦斯压力对高压空气爆破时裂隙产生的影响,结果显示高压空气爆破冲击可以有效地使煤岩介质产生破碎裂纹,地应力对裂隙扩展效果具有明显的抑制作用;高压气体、煤体硬度、瓦斯压力的大小对裂隙的产生和扩展具有积极作用。

       

      Abstract: In order to improve the effect of permeability improvement in low permeability coal seam, a seam permeability improvement technology by high pressure air blasting is proposed, and its working principle and technological process are expounded. The high pressure air blasting is used to impact the coal body, which provides more flowing channels for gas, improved the coal permeability effective. The paper analyzed the factors influencing the crack effect of high pressure air blasting at the same time. Through numerical simulation, the influence factors of in-situ stress, high pressure air, coal hardness and gas pressure on the fracture of high pressure air blasting were studied. The results show that the high pressure air blasting can make the coal and rock medium produce crack effectively, the in-situ stress has an inhibitory action on the fracture propagation, and high pressure air, coal hardness and gas pressure has a positive impact on the fractures.

       

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