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Characteristics of microseismic waveforms induced by hydraulic fracturing in coal seam for coal rock dynamic disasters prevention

机译:煤层煤层煤层液压压裂诱导微震波形的特点

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Coal rock dynamic disasters have been a persistent threat to mine safety. Hydraulic fracturing(HF) technique has been proved to be an effective method for preventing coal rock dynamic disasters in underground coal mines. In order to monitor the crack extent of HF in coal seam, highly precision microseismic(MS) data acquisition apparatus and sensitive sensors are employed to monitor the cracks induced by coal seam HF in Xiecliao Coal Mine. Lots of effective and weak MS waveforms induced by HF are successfully recorded. Some useful methods such as wavelet transformation, Hilbert-Huang transformation, envelope analysis and curve fitting method help to make comprehensive insights into the amplitude-frequency, time-frequency, duration and peak following attenuation characteristics of these HF induced MS waveforms. The frequency, duration time and peak following attenuation characteristics of MS waveforms induced by mining, blast and coal seam HF are statistically studied. The results show that these characteristic parameters, peak frequency, duration time and peak following attenuation, are very sensitive to distinguish these three typical kinds of induced MS waveforms. Further study shows that the principles of fractures' propagation influenced by the pressurized water and the backfill effect of pores by large volume of pressurized water injection and the pressurized water itself are the key factors influencing the characteristics of MS waveforms. The conclusions are the theoretical basis of locating the cracks and monitoring the effect of HF in coal seams by using MS technique, which can provide the basis reference for designing optimized, safe and effective HF program to prevent the coal rock dynamic disasters, and will be of great significance to coal mine safety.
机译:煤炭摇滚动态灾害是对矿井安全的持续威胁。液压压裂(HF)技术已被证明是防止地下煤矿煤炭摇滚动态灾害的有效方法。为了监测煤层中HF的裂缝程度,采用高精度微震(MS)数据采集装置和敏感传感器来监测煤层煤矿煤层HF诱导的裂缝。通过HF诱导的许多有效和弱的MS波形被成功记录。一些有用的方法,如小波转换,Hilbert-Huang转换,包络分析和曲线拟合方法有助于对这些HF诱导的MS波形的衰减特性进行全面的洞察幅度频率,时频,持续时间和峰值。统计研究了由采矿,爆破和煤层HF引起的MS波形的衰减特性之后的频率,持续时间和峰值。结果表明,衰减后的这些特征参数,峰值频率,持续时间和峰值非常敏感,以区分这三种典型的诱导的MS波形。进一步的研究表明,受加压水影响的裂缝繁殖的原理和大量加压水注射孔的回填效果以及加压水本身是影响MS波形特性的关键因素。结论是通过使用MS技术定位裂缝和监测HF在煤层中的HF效果的理论基础,这可以为设计优化,安全有效的HF程序提供基准参考,以防止煤摇滚动态灾害,并将是煤矿安全具有重要意义。

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