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Optimal layout of blasting holes in structural anisotropic coal seam

机译:各向异性结构煤层爆破孔的优化布置

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摘要

Compared with the idealized isotropic coal seam, the effectively cracking distances of deep-hole pre-splitting blasting in different directions have significant difference in the structural anisotropy of coal seam. In this paper, based on the test results of coal mechanical parameters in different coring directions, the blasting crack distances in these coring directions of coal seam are theoretically calculated and analyzed, and then a new method of blasthole layout in coal seam is designed and the blasting crack effect is investigated according to the test data of gas drainage. The research results show that both compressive strength and tensile strength of the direction of perpendicular to bedding are larger than that in other directions, especially parallel to bedding. The blasting crack distances of calculation results are in great agreement with that of underground in-situ measurement, so the blasting crack zone caused by the differences of mechanical properties in different directions can be approximately treated as an ellipse. Comparing the conventional method of blasthole layout, the blasting crack effect with new method has greatly enhanced the methane concentration and gas drainage quantity. Pure methane quantities with the new method and conventional method are about 2.8 times and 1.67 times as large as that before blasting, and pure methane quantity with the new method is about 1.46 times that with the conventional method. Therefore, considering the anisotropic characteristics of coal seams, the reasonable blasthole layout plays an important role for enhancing gas drainage in low permeability and outburst working face.
机译:与理想的各向同性煤层相比,深孔预裂爆破在不同方向上的有效裂隙距离在煤层的结构各向异性上具有显着差异。本文根据不同取心方向煤力学参数的测试结果,从理论上计算和分析了这些取心方向上的爆破裂纹距离,然后设计了一种新的煤层爆破孔布置方法,并进行了研究。根据瓦斯抽放试验数据研究了爆破裂纹效应。研究结果表明,与被褥垂直的方向的抗压强度和抗拉强度均大于其他方向,尤其是与被褥平行的方向。计算结果的爆破裂纹距离与地下原位测量的爆破裂纹距离非常吻合,因此可以将因不同方向上的力学性能差异而引起的爆破裂纹带近似视为椭圆形。与传统的爆破孔布置方法相比,新方法的爆破裂缝效果大大提高了瓦斯浓度和瓦斯抽放量。新方法和常规方法的纯甲烷量分别是喷砂前的2.8倍和1.67倍,新方法的纯甲烷量是常规方法的约1.46倍。因此,考虑到煤层的各向异性特征,合理的爆破孔布置对增强低渗透性和突出工作面的瓦斯抽采具有重要作用。

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