螺旋缠绕光纤分布式声传感器的幅频响应

Q3 Engineering
A. V. Chugaev, M. V. Tarantin
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引用次数: 0

摘要

本研究的目标是分析DAS(分布式传感器)在解决采矿问题方面的能力,将其与现有的地震声数据收集系统进行比较,并为通过光纤分布式系统记录进行地震声研究奠定基础。本文研究了利用光纤分布式声系统(DAS)记录地震声响应的能力。基于物理和几何分析,得到了直缠绕和螺旋缠绕纤维记录纵波的幅频响应(特性)。在螺旋缠绕光纤的情况下,频率响应取决于几个关键因素:在测量的基础上沿光纤积分测量值;在电缆上的入射角;以及光纤在电缆中的缠绕角。随着绕线角的增大,纵波的幅频特性在频率和入射角方面的均匀性增加。同时,螺旋绕组改变了有效响应间距(表长)。这使得它有可能,通过将直线和螺旋缠绕的纤维由于频谱重叠而产生的响应相加,记录在单独记录的情况下被抑制的频率。根据研究结果,提出了一种电缆设计,用于记录宽带地震声响应,从而解决各种采矿和工程问题,并用于井中和地面的地震调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amplitude-frequency response of a helically-wound fiber distributed acoustic sensor (DAS)
The goals of this study were to analyze the capabilities of DAS (distributed sensors) in resolving mining problems, compare them with existing seismoacoustic data collection systems, and prepare the basis for conducting seismoacoustic studies with recording by a fiber optic distributed system. This paper considers the capabilities of recording seismoacoustic responses using fiber optic distributed acoustic systems (DAS). Based on physical and geometrical analysis, the amplitude-frequency responses (characteristics) of recorded longitudinal waves for straight and helically-wound fibers were obtained. In the case of helically-wound fiber, the frequency response depends on several key factors: integrating the measured value along the fiber based on the measurement; the angle of incidence on the cable; and the winding angle of the fiber in the cable. An increase in the winding angle increases the uniformity of the amplitude-frequency characteristics of longitudinal waves both in terms of frequencies and angles of incidence. At the same time, helical winding changes the effective response spacing (gauge length). This makes it possible, by summing the responses of the straight and helically-wound fibers due to the overlap of the spectra, to record frequencies that are suppressed in case of separate recording. Based on the study results, a cable design was proposed to record broadband seismoacoustic responses enabling a wide range of mining and engineering problems to be resolved, and for seismic surveys both in wells and on the surface to be carried out.
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来源期刊
Gornye nauki i tekhnologii
Gornye nauki i tekhnologii Chemical Engineering-Process Chemistry and Technology
CiteScore
3.00
自引率
0.00%
发文量
22
审稿时长
15 weeks
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