Calibrating Strain Measurements: A Comparative Study of DAS, Strainmeter, and Seismic Data

IF 2.6 3区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS Earth and Space Science Pub Date : 2025-02-16 DOI:10.1029/2024EA003940
Chih-Chieh Chien, Peter Gerstoft, William Hatfield, Leo Hollberg, Bradley P. Lipovsky, John-Morgan Manos, Robert J. Mellors, Dale P. Winebrenner, Mark A. Zumberge
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Abstract

Significant interest has developed in using optical fibers for seismology through Distributed Acoustic Sensing (DAS). However, converting DAS strain measurements to actual ground motions can result in errors and uncertainties due to imperfect coupling of the fiber to the earth and instrument response functions. To address this, we conducted a comparative analysis of strain data recorded by DAS, Optical Fiber Strainmeters (OFSs), and estimates derived from seismic data. This study used dark fibers in a commercial cable connecting two islands in Puget Sound, Washington, USA. The cable extends from a telecommunication substation on Whidbey Island, through an underground conduit, and across Saratoga Passage to Camano Island. The strain along the cable was recorded using OFS Michelson interferometers and a DAS interrogator, with a broadband seismometer positioned at one end. Comparing a teleseismic earthquake recording showed that summed DAS channels agreed well with OFS recordings. The amplitude discrepancies between the measurements and the seismometer's estimated strain indicated poor coupling between the cable and the earth. We also evaluated DAS amplitude response using a piezoelectric cylinder (PZT) to generate ground truth strain. The findings revealed a notable amplitude decrease in DAS recordings at lower frequencies, highlighting the need for amplitude calibration. Moreover, some underwater signals in the study area were strongly correlated with the velocity of the tidal current. These signals can be localized through coherence calculations between the DAS and OFS recordings.

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校准应变测量:DAS,应变计和地震数据的比较研究
通过分布式声传感(DAS)将光纤用于地震学研究已经引起了人们的极大兴趣。然而,将DAS应变测量值转换为实际的地面运动可能会导致误差和不确定性,因为光纤与地面和仪器响应函数的耦合不完美。为了解决这个问题,我们对DAS、光纤应变仪(ofs)记录的应变数据和从地震数据中得出的估计值进行了比较分析。这项研究在连接美国华盛顿州普吉特海湾两个岛屿的商业电缆中使用了暗纤维。电缆从Whidbey岛的电信变电站延伸,通过地下管道,穿过Saratoga通道到达Camano岛。沿着电缆的应变是用OFS迈克尔逊干涉仪和DAS询问器记录的,一端是宽带地震仪。通过对远震地震记录的比较,表明DAS通道的总和与OFS记录吻合较好。测量值和地震仪估计应变之间的振幅差异表明电缆和地球之间耦合不良。我们还使用压电圆柱体(PZT)来评估DAS振幅响应,以产生地面真应变。研究结果显示,在较低频率下,DAS记录的幅度显着下降,突出了幅度校准的必要性。此外,研究区内的一些水下信号与潮流速度有很强的相关性。这些信号可以通过DAS和OFS记录之间的相干性计算进行定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Earth and Space Science
Earth and Space Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
5.50
自引率
3.20%
发文量
285
审稿时长
19 weeks
期刊介绍: Marking AGU’s second new open access journal in the last 12 months, Earth and Space Science is the only journal that reflects the expansive range of science represented by AGU’s 62,000 members, including all of the Earth, planetary, and space sciences, and related fields in environmental science, geoengineering, space engineering, and biogeochemistry.
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