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Focus Energy Determination of Mining Microseisms Using Residual Seismic Wave Attenuation in Deep Coal Mining

机译:利用深煤矿残余地震波衰减对聚焦微痉挛的聚焦能量测定

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Based on the energy attenuation characteristics of residual wave in deep rock, a method was developed to determine the microseismic focus energy. Differential energy loss in infinitesimal spreading distance is logically deduced, upon which energy attenuation equation was established. With a logarithmic transformation, a linear relation of the residual seismic energy with distance is formulated. Its intercept was used to determine the microseismic focus energy. The result is compared with that determined by the energy density method. The reliability of the determined focus energy and the impact of the built-in velocity threshold on the residual wave energy computation are discussed. Meanwhile, the energy absorption coefficient used for representing the absorption characteristics of the rock medium in the mining region under study is also clarified. Key findings show that the microseismic focus energy confirmed by the residual wave attenuation is reliable. The result’s accuracy is quite high, especially for the events in deep rock with great homogeneity. The developed focus energy computation method is closely dependent on the integrity of waveform, accuracy of repositioning, and reliability of effective components extraction. The new method has been shown to be effective and practical.
机译:基于深层岩石残留波的能量衰减特性,开发了一种方法以确定微震焦点能量。逻辑推断出无穷大的扩散距离中的差分能量损失,在该节能方程建立了能量衰减方程。利用对数转换,配制了残余地震能量的线性关系。它的截距用于确定微震焦点能量。将结果与通过能量密度法决定的结果进行比较。讨论了所确定的焦点能量的可靠性和内置速度阈值对残余波能量计算的影响。同时,还阐明了用于代表研究中采矿区岩介质的吸收特性的能量吸收系数。主要发现表明,残留波衰减证实的微震焦点能量是可靠的。结果的准确性非常高,特别是对于深层岩石的事件,具有良好的同质性。开发的焦点能量计算方法密切相关,对波形,重新定位准确性和有效部件提取的可靠性密切相关。新方法已被证明是有效和实用的。

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