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Response of triaxial velocity and acceleration geophones to channel waves in a 1-m thick coal seam

机译:三轴速度和加速地震仪对1米厚煤层中的通道波的响应

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摘要

Intelligent coal mining techniques are developing rapidly in China and require geological transparency of the working face. Coal seam channel waves are particularly promising because they only propagate in coal seams and are sensitive to changes in seam thickness and local geological structure. Previous channel wave studies focused mostly on medium-thick coal seams, while channel wave signal characteristics in thin coal seams remain poorly understood. We have conducted experiments on the transmission of channel waves in a 1-m thick coal seam using triaxial velocity geophones and acceleration geophones embedded in the coal seam and its roof and floor rock mass to better understand guided wave characteristics in thin coal seams. We find that a wide-frequency triaxial acceleration geophone with stable amplitude-frequency characteristics enables collection of all of the 1-m thick coal seam guided wave information. However, the velocity geophones did not effectively respond to different coal seam guided waves. Signal analysis reveals that the thin coal seam channel wave features with an Airy seismic phase frequency of 570 Hz and velocity of 950 m/s. There was a high-energy and high-frequency guided wave between the P and S direct waves of the coal seam roof and floor. Combined with time-frequency analysis, polarization analysis, and numerical simulation, the guided wave is inferred to be a P-P interference wave with potential exploration value propagating in the same direction along the roof and floor of the coal seam. Acceleration geophones with a wide frequency band and stable sensitivity are therefore the key point to acquiring coal seam channel wave exploration data. (C) 2019 Elsevier B.V. All rights reserved.
机译:智能煤矿技术在中国迅速发展,需要工作面的地质透明度。煤层通道波是特别有前途的,因为它们仅在煤层中传播并对接缝厚度和局部地质结构的变化敏感。之前的频道波浪研究主要集中在中厚煤层上,而薄煤层中的频道波信号特性仍然明显差。我们对使用三轴速度的地震座和覆盖在煤层及其屋顶岩体和地板岩体中的加速度地震座中的通道波传输的实验,以更好地了解薄煤层中的引导波特性。我们发现,具有稳定幅度频率特性的宽频三轴加速度地震检波器使得能够收集所有1米厚煤层引导波信息。然而,速度地震仪没有有效地应对不同的煤层导向波。信号分析显示,薄煤层通道波的特征在于570Hz的通气相频率和950米/秒的速度。 P煤层屋顶和地板的P和S直波之间有一个高能和高频导向波。结合时频分析,偏振分析和数值模拟,推断出引导波是P-P干扰波,其具有沿煤层的屋顶和地板在相同方向上传播的电位探测值。因此,具有宽频带和稳定灵敏度的加速地震检扰器是获取煤层通道波探索数据的关键点。 (c)2019年Elsevier B.V.保留所有权利。

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