NORSAR, Norwegian Technical Science Research Council
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Affiliated Works
sorted by decreasing year, and then by display-name
- The Arctic Plate Boundary: Seismotectonics at Ultra-slow Spreading
- Construction of a 3D seismic velocity model for the Barents Sea region using sediment vs. crystalline crust thickness relationships
- Observed and Predicted Travel Times of Pn and P Phases Recorded at NORSAR From Regional Events
- Small-Scale Structures Derived From Microearthquake Locations Using SAFOD and HRSN Data
- Structure classification from the joint interpretation of seismic and magnetotelluric models
- Source Parameters of Mining-Induced Microearthquakes at 1.4 km Depth
- Strong Ground-Motion Prediction in Seismic Hazard Analysis: PEGASOS and Beyond
- Surface Wave Tomography of the European Arctic
- Adapting ShakeMap to Europe: Ground-motion relations and soil response
- Microearthquake Observations in a 7-level Vertical Seismic Array in the TCDP Borehole, Taiwan
- Small-Scale Structures Derived From Microearthquake Locations Using SAFOD and HRSN Data
- Structural Seismic Risk at David City, Panama
- Using Seismic Reflection Data to Investigate Gas-generated Pore Pressure in a Landslide-prone Area: an Example From Finneidfjord, Norway
- A Stochastic Seismic Model for the European Arctic
- Automated Event Location for Noisy Microearthquake Data Using Envelope Stacking and Robust Global Optimization
- Automatic Detection Aftershocks of Spitsbergen Event at ARCES in 2008 using the multi-channel Wiener filter
- Caribbean tsunamis - Regional exposure and local risk assessment
- Event Locations with a Long Borehole Array: An Example from SAFOD
- Fjord-valley fill stratigraphy from onshore high-resolution shear-wave seismics, Trondheim harbour area, central Norway
- Location of Microearthquakes in Various Noisy Environments Using Envelope Stacking
- Observation and Scaling of Microearthquakes from TCDP Borehole Seismometers
- The GreenLand Ice Sheet monitoring Network (GLISN)
- Urban Shear-wave Reflection Seismics: A High-resolution Survey in the Landslide-affected Trondheim Harbour Area, Norway
- Using seismic reflection surveying to map gas-generated excess pore pressures at Finneidfjord, Norway
- Insights into initial stages of rifting from seismotectonics and SKS splitting in the North Tanzanian Divergence
- Long-range infrasound observations of eruptions April-May 2010 Eyjafjallajökull, Iceland and June 2009 Sarychev Peak, Kuril Islands
- Monitoring of glacial seismic events from Greenland at regional distances: experience from the POLENET/LAPNET experiment during the IPY 2007-2009
- Seismo-Acoustic Studies in the European Arctic (Invited)
- The Greenland Ice Sheet Monitoring Network (GLISN)
- Differentiating static and dynamic triggering near Salton Sea following the 2010 Mw7.2 El Mayor-Cucapah earthquake
- Implications of considering finite fault rupture properties in seismic hazard and risk assessment
- Incorporating fault zone head wave and direct wave secondary arrival times into seismic tomography: Application at Parkfield, California
- Micro-Seismic Monitoring During Stimulation at Paralana-2 South Australia
- Synergy between infrasound, lidar and airglow layer observation networks for atmospheric studies: the ARISE project
- Double-couple and Moment Tensor Solutions of the Induced Seismicity related to the Stimulation Phase of the Enhanced Geothermal Site in Basel, Switzerland
- Evidences for Icequakes on northwestern Svalbard
- Size of seismic events during borehole injections: the effects of source mechanisms, stress and pore pressure distribution
- The incorporation of fault zone head wave and direct wave secondary arrival times and arrival polarizations into seismic tomography: Application to the Parkfield, California area
- Atmospheric dynamics Research InfraStructure in Europe: The ARISE Project
- Crustal structure characteristic in North and Central Europe inferred by P-wave polarization analysis
- Glacier Seismicity on Svalbard: Icequakes and Tidally-modulated Tremors
- Microseismic monitoring of a CO2 injection: a case study from the In Salah (Krechba) field, Algeria
- Receiver-pair seismic interferometry and the cosine method
- Seismic Observations of Glacier Calving and Surging on Spitsbergen, Svalbard
- Deriving Geomechanical Constraints from Microseismic Monitoring Demonstrated with Data from the Decatur CO<SUB>2</SUB> Sequestration Site
- On the Improvement of SKS Splitting Measurements by the Simultaneous Inversion of Multiple Waveforms (SIMW)
- Towards Quantification of Glacier Dynamic Ice Loss through Passive Seismic Monitoring
- A Greenfunction Magnitude Approach to Overcome Limitations of Traditional Magnitude Scales
- Greenland Ice Sheet Monitoring Network (GLISN): Contributions to Science and Society
- Modeling of cryoseismicity observed at the Fimbulisen Ice Shelf, East Antarctica
- Probing the DPRK nuclear test-site to low magnitude using seismic pattern detectors
- Strategies for automatic processing of large aftershock sequences
- Analysis of Injection-Induced Slippage in a Large Sandstone Block via Laser Scanning, Acoustic Emissions, and Pore Pressure Changes with Stress
- Moving Towards Phase-Sensitive DAS Interrogators for Improved Waveform Correlation and Advanced Microseismic Processing Workflows
- A Hybrid Probabilistic Seismic Hazard Model for Northeast India and Bhutan Combining Distributed Seismicity and Finite Faults
- Characterizing ocean ambient noise using a regional infrasound network: a sensitivity analysis
- Implications of 3D teleseismic ray-tracing on focal mechanism determination
- A simulation model for fracture reactivation accounting for thermo-hydro-mechanical forces with applications to geothermal systems
- In-depth seismo-acoustic analysis of mining-induced Mw 4.9 Kiruna earthquake
- Detection of co-seismic ionospheric disturbances in near-real-time by using machine learning
- Predicting infrasound transmission loss using deep learning
- Progress Towards Balloon-Based Seismic Studies on Venus
- Using Sensitivity Kernels to Untangle Basin Path and Site Amplification Effects
- What can the sound of earthquakes tell us about a planets interior structure?
- Training a recurrent neural network (RNN) to predict long-range infrasound ground-to-ground transmission loss in range-dependent realistic atmospheres