Distributed Acoustic Sensing in Geophysics: Methods and Applications – Ebook Instant Download/Delivery ISBN(s): 9781119521792,1119521793, 9781119521778, 1119521777
Product details:
- ISBN-10 : 1119521777
- ISBN-13 : 9781119521778
- Author: Yingping Li,Martin Karrenbach , Jonathan Ajo-Franklin
Distributed Acoustic Sensing (DAS) is a technology that records sound and vibration signals along a fiber optic cable. Its advantages of high resolution, continuous, and real-time measurements mean that DAS systems have been rapidly adopted for a range of applications, including hazard mitigation, energy industries, geohydrology, environmental monitoring, and civil engineering.
Distributed Acoustic Sensing in Geophysics: Methods and Applications presents experiences from both industry and academia on using DAS in a range of geophysical applications.
Table contents:
1 High Definition Seismic and Microseismic Data Acquisition Using Distributed and Engineered Fiber Optic Acoustic Sensors
2 Important Aspects of Acquiring Distributed Acoustic Sensing (DAS) Data for Geoscientists
3: Distributed Microstructured Optical Fiber (DMOF) Based Ultrahigh Sensitive Distributed Acoustic Sensing (DAS) for Borehole Seismic Surveys
4 Distributed Acoustic Sensing System Based on Phase‐Generated Carrier Demodulation Algorithm
5 Field Trial of Distributed Acoustic Sensing in an Active Room‐and‐Pillar Mine
6 On the Surmountable Limitations of Distributed Acoustic Sensing (DAS) Vertical Seismic Profiling (VSP) – Depth Calibration, Directionality, and Noise: Learnings From Field Trials
7 Denoising Analysis and Processing Methods of Distributed Acoustic Sensing (DAS) Vertical Seismic Profiling (VSP) Data
8 High‐Resolution Shallow Structure at Brady Hot Springs Using Ambient Noise Tomography (ANT) on a Trenched Distributed Acoustic Sensing (DAS) Array
9 Introduction to Interferometry of Fiber‐Optic Strain Measurements
10 Using Telecommunication Fiber Infrastructure for Earthquake Monitoring and Near‐Surface Characterization
11 Production Distributed Temperature Sensing versus Stimulation Distributed Acoustic Sensing for the Marcellus Shale
12 Coalescence Microseismic Mapping for Distributed Acoustic Sensing (DAS) and Geophone Hybrid Array: A Model‐Based Feasibility Study
13 Continuous Downhole Seismic Monitoring Using Surface Orbital Vibrators and Distributed Acoustic Sensing at the CO2CRC Otway Project: Field Trial for Optimum Configuration
14 Introduction to Distributed Acoustic Sensing (DAS) Applications for Characterization of Near‐Surface Processes
15 Surface Wave Imaging Using Distributed Acoustic Sensing Deployed on Dark Fiber: Moving Beyond High‐Frequency Noise
16 Using Distributed Acoustic Sensing (DAS) for Multichannel Analysis of Surface Waves (MASW)
17 A Literature Review: Distributed Acoustic Sensing (DAS) Geophysical Applications Over the Past 20 Years
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