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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >On the Broadband Instrument Response of Fiber-Optic DAS Arrays
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On the Broadband Instrument Response of Fiber-Optic DAS Arrays

机译:关于光纤DAS阵列的宽带仪器响应

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Distributed Acoustic Sensing (DAS) is a novel tool in array seismology that measures the phase of backscattered laser pulses traveling in a fiber-optic cable, and relates this measurement to the axial strain induced on the cable by a propagating seismic wavefield. Combining DAS with telecommunications optical fiber networks has begun to address a range of earth science questions where cost and field logistics have historically hindered observations. Unlike classic inertial seismometers, DAS instrument response is presently unquantified. This topic includes a variable sensing element the fiber, including packaging and installation which changes between experiments. Ignoring this element, one DAS record should approximate a fixed-length strain gauge, which exactly measures Earth's motion down to quasi-static frequencies relevant to geodesy. In this paper, we test this hypothesis using seismological observations of teleseismic earthquakes and microseism noise spanning the 1 to 120 s period range. We use a commercial DAS interrogator unit connected to an optical fiber previously used for telecommunication and a colocated broadband seismometer to estimate the DAS transfer function. We find a 1:1 correspondence with actual ground motion from 10-120 s. At shorter periods (1-10 s), DAS amplitude response is enhanced by 3-11 dB. Phase response is flat over this range of periods. We interpret the recovered DAS response function in terms of hypothesized fiber coupling and photonic effects. We propose this calibration methodology for future DAS experiments where seismic amplitude information is desired.
机译:分布式声学传感(DAS)是阵列地震学中的一种新型工具,其测量在光纤电缆中行进的反向散射激光脉冲的相位,并将这种测量与传播地震波场涉及电缆上引起的轴向应变。将DAS与电信光纤网络结合起来,已经开始解决一系列地球科学问题,其中成本和现场物流在历史上阻碍了观察。与经典惯性地震仪不同,DAS仪器响应目前是无关的。本主题包括可变传感元件光纤,包括在实验之间改变的包装和安装。忽略此元素,一个DAS记录应近似固定长度应变仪,其精确地测量地球的运动降至与大地差的准静态频率。在本文中,我们使用跨越1至120秒周期范围的灭绝地震和微痉挛噪声的地震观察来测试这一假设。我们使用以前用于电信的光纤和光环宽带地震计的商业DAS询问器单元来估计DAS传输功能。从10-120秒开始,我们发现一个1:1与实际接地运动的对应关系。在较短的时间段内(1-10秒),DAS幅度响应增强3-11 dB。在此范围内阶段响应是平坦的。在假设的光纤耦合和光子效应方面,我们解释恢复的DAS响应功能。我们提出了这种校准方法,用于未来的DAS实验,其中需要地震幅度信息。

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