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Instrumental Study of High-Frequency Seismoacoustic Signal Modulation in a Deep Drillhole

机译:深钻孔中高频地震声信号调制的仪器研究

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For many years we have failed to record instrumentally the background variations in seismoacoustic emission in solid consolidated rocks of the Earth's crust at great depths (3200 m) and to confirm their relation to lunar-solar gravitation. We managed to fulfill the task only with significantly improved parameters of the recording system measurement channel. As follows from analysis of new data, the amplitudes in the diurnal cycle vary from 1930 to 2100 fin (10~(-15)) for the band of 160 Hz and from 129.5 to 132 fin for the band of 500 Hz, while the energy model correlation coefficients are within 0.737-0.852. Hence, this fact proves once again that background variations related to lunar-solar tides are universal in occurrence, and their frequency and amplitude depend significantly on the host rocks, position, and time of observations, while the energy model fits in these variations.
机译:多年以来,我们一直未能在大深度(3200 m)上仪器地记录地壳的固结岩石中地震声发射的背景变化,也未能证实它们与月球重力的关系。我们仅通过显着改善记录系统测量通道的参数来设法完成任务。根据对新数据的分析,昼夜周期的振幅在160 Hz频段从1930到2100鳍(10〜(-15))变化,在500 Hz频段从129.5到132鳍变化,而能量模型相关系数在0.737-0.852之间。因此,这一事实再次证明,与月球潮相关的背景变化普遍存在,其频率和振幅在很大程度上取决于观测的岩石,位置和观测时间,而能量模型则适合这些变化。

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  • 来源
    《Doklady Earth Sciences》 |2012年第2期|p.235-236|共2页
  • 作者单位

    Schmidt Joint Institute of Physics of the Earth, Russian Academy of Sciences, Moscow, Russia;

    Schmidt Joint Institute of Physics of the Earth, Russian Academy of Sciences, Moscow, Russia;

    Schmidt Joint Institute of Physics of the Earth, Russian Academy of Sciences, Moscow, Russia;

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