Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"Groundwater Monitoring with Passive Seismic Interferometry"
written by Christophe Voisin, Maira Alejandra Romero Guzmán, Aurore Réfloch, Marco Taruselli, Stéphane Garambois,
published by Journal of Water Resource and Protection, Vol.9 No.12, 2017
has been cited by the following article(s):
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[1] The use of passive seismic interferometry for the monitoring of subsurface fluids–from shallow groundwater to native or storage gas reservoirs
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[2] Physics-based monitoring of subsurface processes using seismic ambient noise
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[3] Physics-guided deep learning model for daily groundwater table maps estimation using passive surface-wave dispersion
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[4] Underground Gas Storage Monitoring with Seismic Ambient Noise Interferometry: Attempts & Perspectives
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[5] 2D Water Basin Tomography Using the Combination of DAS Acquisition and Seismic Interferometry
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[6] Combination of DAS Solution and Passive Seismic Imaging Techniques for Water Basin Time-Lapse Tomography
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[7] Time-dependent properties of the shallow subsurface
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[8] Monitoring the Ambient Seismic Field to Track Groundwater at a Mountain–Front Recharge Zone
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[9] The Seismic Signature of California's Earthquakes, Droughts, and Floods
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[10] Interaction of Air Pressure and Groundwater as Main Cause of Sub‐Daily Relative Seismic Velocity Changes
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[11] Monitoring of Groundwater in a Limestone Island Aquifer Using Ambient Seismic Noise
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[12] Machine learning prediction of groundwater heights from passive seismic wavefield
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[13] Adaptive Coda‐Wave Imaging With Voronoi Tessellation
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[14] Influence of rainfall in a short-term seismic velocity monitoring at an urban landslide site in Minas Gerais, Brazil
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[15] High‐Resolution Monitoring of Controlled Water Table Variations From Dense Seismic‐Noise Acquisitions
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[16] Direct P-Wave Seismic Noise Interferometry for Groundwater Monitoring: A Modelling Study
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[17] Improved Reconstruction and Coherence Analysis of a Wave-Field Extracted from Ambient Seismic Noise Cross-Correlations.
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[18] Seismic attenuation extracted from isolated traffic signals
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[19] Calculation of Cross-correlation Function Accelerated by Tensor Cores with TensorFloat-32 Precision on Ampere GPU
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[20] Achievements and prospects of global broadband seismographic networks after 30 years of continuous geophysical observations
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[21] Effect of snowfall on changes in relative seismic velocity measured by ambient noise correlation
The …, 2021
[22] Passive Seismic Monitoring of a Karst Aquifer During Flood Events.
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[23] Aquifer monitoring using ambient seismic noise recorded with distributed acoustic sensing (DAS) deployed on dark fiber
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[24] Combining Seismology, Hydrogeology and Climatology for Monitoring Karstic Groundwater Reservoirs.
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[25] Physics-Based Relationship for Pore Pressure and Vertical Stress Monitoring Using Seismic Velocity Variations
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[26] Landslide monitoring using seismic ambient noise correlation: challenges and applications
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[27] On the use of dense seismic noise arrays for groundwater resources monitoring: Results from a controlled infiltration experiment in a water catchment site
Bastide, C Bordes… - … Meeting for Applied …, 2021
[28] Seismic noise
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[29] Denoising ambient seismic field correlation functions with convolutional autoencoders
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[30] Noise-based ballistic wave passive seismic monitoring–Part 2: surface waves
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[31] Monitoring Ca Lita Landslide by Means of the Ambient Seismic Noise
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[32] Groundwater Level Monitoring Tests with Seismic Interferometry
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[33] Suivi temporel d'un glissement de terrain à l'aide d'étiquettes RFID passives, couplé à l'observation de pluviométrie et de bruit sismique ambiant
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[34] Analysis of ballistic waves in seismic noise monitoring of water table variations in a water field site: added value from numerical modelling to data understanding
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[35] Monitoring groundwater level variations using ballistic waves reconstructed from seismic noise in an urban water field: A combination of experimental and numerical …
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[36] Landslide monitoring using passive RFID tags, coupled with observation of rainfall and ambient seismic noise.
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[37] Compréhension expérimentale et numérique des chemins de l'eau sur l'ensemble du champ captant de la Métropole de Lyon
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[38] Temporal change of near-surface shear wave velocity associated with rainfall in Northeast Honshu, Japan
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