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This is a catalog of precise relocations of earthquakes surrounding the 2022 Hunga Tonga-Hunga Ha-apai Volcanic Eruption. These were generated using using surface-wave double-difference measurements, and relative magnitudes were computed between events. For details of the methodology used to produce this catalog, and the interpretation of these data, see the Seismological Research Letter publication "High-Precision Characterization of Seismicity from the 2022 Hunga Tonga-Hunga Ha-apai Volcanic Eruption". Locations use the WGS 1984 Datum. One comma-separated table is provided in this data release, relocations.csv, which is a summary of the relocation magnitude analysis. It includes 18 columns: Column 1 (time):...
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This data release provides documentation on the input and output files used in a seismotectonic study of northern California (see reference below). Files contained in the data release include the station, location and arrivaltime input files to the tomography code and the output relocations and resulting P- and S-wave images. Note that we did not use the S-wave imaging results in the study of Furlong et al. (2024)--see reference below. Details on file formats and tutorials on how to use the tomography code used in the study can be found at https://avillasenorh.github.io/PStomo_documentation/. Reference: Furlong, K. P., Villaseñor, A., Benz, H.M., & McKenzie, K. A. (2024). Formation and evolution of the Pacificā€North...
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Summary: This computational notebook is intended to visualize any dataset of offset measurements along a fault, including datasets for single or multiple earthquakes. It is used to plot recent, geomorphic, and synthetic offset measurements for the companion manuscript: Limited preservation of strike-slip surface displacement in the geomorphic record by N.G. Reitman, Y. Klinger, R. Briggs, and R. Gold in Journal of Geophysical Research: Solid Earth. This computational notebook (plot_offsets.ipynb) plots offset measurements and their uncertainties along faults. The notebook can plot offset measurements along faults of all rakes (strike-slip, normal, and reverse) and faults with single or multiple earthquakes. It...
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The development and deployment of digital broadband seismographs provides the data required to rapidly assess earthquake size, determine source parameters and better characterize ground motions affecting earthquake hazard. The focus of regional moment tensor analysis is to estimate the moment magnitude, faulting parameters and source depth of earthquakes that are too small to be recorded teleseismically. Thus they have the potential of extending the earthquake catalog to magnitudes less than about M4-4.5. This data distribution provides the details required to critically review the resulting catalog, e.g., the waveforms used, processing parameters and velocity model. In addition the issue of the correct local magnitude...
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A composite of Shakemap Atlas ground motion measures: peak ground acceleration (PGA), peak ground velocity (PGV), and intensity at a scale of 10 km. The time history of ShakeMap observed/estimated ground motion values at each grid cell, and the maximum values, are provided. For details see the attached file: readme.txt
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The variation of Love/Rayleigh phase and group velocity was determined for the continental U. S. and adjacent Canada. By processing ambient noise from the broadband channels of the Transportable Array (TA) of USArray and several PASSCAL experiments and using some earthquake recordings, the effort was focused toward determining dispersion down to periods as short as 2s. The relatively short distances between TA stations permitted the use of a 25 km x 25 km grid for the four independent tomographic inversions (Love/Rayleigh and Phase/group velocity). One reason for trying to obtain short period dispersion was to have a data set capable of constraining upper crust velocity models for use in determining regional moment...
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This dataset of median values of 5% damped response spectra across all horizontal orientations for peak ground acceleration, peak ground velocity, and 20 spectral periods are provided. A total of 521 stations and 1,481 observations are included for the three strong earthquakes (7.0>M>6.0) that occurred in Southern Cascadia in 2010, 2021, and 2022. This dataset is associated with the EQSpectra publication: https://doi.org/10.1177/87552930241256673
The Machine Learning Asset Aggregation of the PDE (MLAAPDE) is a waveform archive, feature labeled catalog, and Python module that together provide a routine way to gather high-quality input data to train machine learning models. While all the data provided are already publicly available, MLAAPDE packages it in a format that allows a user to prepare input for common machine learning frameworks with few lines of code. Most of the features that are part of the MLAAPDE dataset are selected from the Preliminary Determination of Epicenters (PDE), the official earthquake catalog of the USGS National Earthquake Information Center (NEIC). The PDE aims to provide a complete catalog of source characterization estimates...
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This data release pertains to the December 20, 2021, Petrolia, California, United States earthquake sequence. Data are provided in the input formats required for the Wavelet and simulated Annealing SliP (WASP) finite-fault inversion code (https://github.com/slipinversion/WASP). This includes broadband seismic data, local strong-motion accelerometer data, and the static offsets from Global Navigation Satellite Systems (GNSS) used in the finite fault inversion. Figures describing the output are also included. (Child Item: GNSS Data and Finite Fault Modeling) Also included is a high-resolution earthquake catalog surrounding the region. The catalog was produced using cross-correlations and relative relocations. (Child...


    map background search result map search result map Short-Period Surface-Wave Tomography in the Continental United States – A Resource for Research High-Precision Seismicity Catalog for the 2022 Hunga Tonga-Hunga Ha-apai Volcanic Eruption Supporting Data, Catalog, and Models for Characterizing 2021 Petrolia, CA, Earthquake Sequence Shakemap Atlas Composite Dataset for the Conterminous United States from 1906 to 2020 Response spectra for the 2010 Ferndale, 2021 Petrolia, and 2022 Ferndale earthquakes Formation and Evolution of the Pacific-North American (San Andreas) Plate Boundary: Constraints from the Crustal Architecture of Northern California Regional Moment Tensor Solutions Supporting Data, Catalog, and Models for Characterizing 2021 Petrolia, CA, Earthquake Sequence Formation and Evolution of the Pacific-North American (San Andreas) Plate Boundary: Constraints from the Crustal Architecture of Northern California High-Precision Seismicity Catalog for the 2022 Hunga Tonga-Hunga Ha-apai Volcanic Eruption Response spectra for the 2010 Ferndale, 2021 Petrolia, and 2022 Ferndale earthquakes Shakemap Atlas Composite Dataset for the Conterminous United States from 1906 to 2020 Short-Period Surface-Wave Tomography in the Continental United States – A Resource for Research Regional Moment Tensor Solutions