激光震声天线阵列探测固体地球激励

V. Kravtsov, M. Dubrov, M. S. Remontov
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引用次数: 2

摘要

研究了地震声波场的时空分布。对非平稳参数(振荡源方向、强度和局部化)进行了研究和估计。用应变敏感单元阵列记录了弹性固体介质中的波场分布。每个应变探测器代表基长1-400 m的激光干涉仪,测量固体介质两点之间的距离差。用这种方法计算应变场的时空分布。每个激光传感器的输出信号为后续的多路模数转换器提供输入,得到的数据存储在PC机中进行处理。数值处理过程基于傅立叶谱分析,得到非平稳源运动轨迹的显示。给出了激光干涉仪分离距离达140 km的实例和所获得的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of solid Earth excitations by laser seismo-acoustic antenna array
The spatial and temporal distributions of seismo-acoustic wave fields are investigated. Non-stationary parameters (direction to the sources of oscillations, their intensities and localization) have been studied and estimated. The wave field distribution in elastic solid medium is recorded by the array of strain sensitive units. Every strain detector represents the laser interferometer with base-length 1–400 m, which measures the distant difference between two points of the solid medium. In this way spatial and temporal distribution of a strains field is being evaluated. The output signals of every laser sensors supplies the consequent inputs of multi-channel analog-to-digital converter and the obtained data are stored and subjected to the processing in the PC. The procedure of numerical treatment is based on the Fourier spectral analysis, which results to the tracks of non-stationary source motions to be displayed. The examples of described procedure for laser interferometers being apart up to 140 km and obtained data are presented.
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