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Method for detecting buried objects by measuring seismic vibrations induced by acoustical coupling with a remote source of sound

机译:通过测量与远程声源的声耦合引起的地震振动来检测掩埋物体的方法

摘要

A method for detecting the seismic discontinuity in acoustic impedance caused by an acoustically hard, reflective object buried a few feet below poroelastic soil using seismic activity induced through acoustic coupling with a remote sound source. The abrupt change in the soil impedance caused by the buried object causes sound to reflect between the object and the surface and increase the amplitude of the seismic vibrations induced by the incident acoustic energy. The change in the seismic displacement of the soil is on the order of angstroms which can be detected using remote optical test equipment such as a laser- doppler vibrometer (LDV) commonly used in nondestructive testing. A sound source emits sound at frequencies that induce significant seismic coupling with the poroelastic soil. Part of a beam of laser light of an LDV is scanned over the ground. The laser light is shifted in frequency from its source frequency by an amount intended to approximate the frequency of the anticipated seismic vibrations. The seismic vibrations of the soil frequency modulate the laser light to form upper and lower side bands. The amplitude of the side bands increases in the presence of an acoustically hard object due to the greater seismic vibrations over the acoustically reflecting surface. Laser light that is scattered back is combined with unshifted laser light in the photodetector of the LDV so as to eliminate the optical frequency effects of the laser and to cause the carrier frequency and side bands to emerge as distinct signals.
机译:一种用于检测声阻抗的地震不连续性的方法,该方法是通过使用与远程声源的声耦合引起的地震活动来检测埋在多孔弹性土壤下面几英尺的坚硬,反射性物体引起的。由埋入物体引起的土壤阻抗的突然变化导致声音在物体和表面之间反射,并增加了入射声能引起的地震振动的幅度。土壤地震位移的变化约为埃,可以使用远程光学测试设备(例如非破坏性测试中常用的激光多普勒测振仪(LDV))进行检测。声源发出的声音频率会引起与多孔弹性土壤的强烈地震耦合。 LDV激光束的一部分在地面上扫描。激光的频率从其源频率偏移一定数量,该数量旨在近似于预期的地震振动的频率。土壤频率的地震振动调制激光以形成上下边带。由于在声反射表面上的较大地震振动,在存在声硬物体的情况下,边带的振幅增加。在LDV的光电检测器中,向后散射的激光与未偏移的激光相结合,从而消除了激光的光频效应,并使载波频率和边带作为不同的信号出现。

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