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14 results for “Aseismic”
Simulation Data for "Community-Driven Code Comparisons for Three-Dimensional Dynamic Modeling of Sequences of Earthquakes and Aseismic Slip"
<p>Simulation data from Jiang et al. (2022), "Community-Driven Code Comparisons for Three-Dimensional Dynamic Modeling of Sequences of Earthquakes and Aseismic Slip," <em>Journal of Geophysical Research: Solid Earth</em><em>.</em></p> <p>The archive includes simulation data for 3D SEAS benchmarks BP4-QD and BP5-QD that are analyzed in our paper (descriptions in NOTES.txt) </p> <p><strong>BP4-QD Benchmark Simulations:</strong><br>1000 m: jiang.5, lambert.8, barbot.3, barbot.2, dliu.2, li.4<br>500 m: jiang.3, lambert.3, barbot.5, barbot.7, ozawa</p> <p><strong>BP5-QD Benchmark Simulations:</strong><br>2000 m: jiang.6, lambert.8, liu.4, cattania.5, dli.7, barbot.3, dliu.10, li.3<br>1000 m: jiang.2, lambert.7, liu.5, cattania.3, ozawa, dli.5, barbot, dliu.6, li.2<br>500 m: jiang.4, lambert.9, liu.6, cattania.4, ozawa.2, dli.6, barbot.2, dliu.8<br>250 m: lambert.10, liu.7</p> <p><strong>BP5-QD with Off-Fault Data:</strong><br>1000 m: lambert.7, dli.5, barbot, dliu.6, li.2<br>500 m: lambert.9, dli.6, barbot.2, dliu.8</p> <p>Tables 2–4 in our paper summarizes details of numerical codes and selected simulations.</p> <p>The benchmark descriptions and the full suite of simulation data are available at SEAS online platform https://strike.scec.org/cvws/seas/.</p>
Aseismic and recent ruptures of persistent asperities along the Alaska-Aleutian subduction zone
<p>This repository contains GPS derived coseismic offsets and 87-day postseismic displacements associated with the 2020 Mw .78 Simeonof Island, Alaska earthquake, as well as the preferred interseismic backward slip rate distribution along the Alaska-Aleutian subduction zone in GMT psxy format. if you use the dataset, please cite the following paper:</p> <p>Zhao, B., Burgmann, R., Wang, D., Zhang, J., Yu, J., & Li, Q. (2022). Aseismic slip and recent ruptures of persistent asperities along the Alaska-Aleutian subduction zone. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-022-30883-7</p>
Data for "The interplay between seismic and aseismic slip along the Chaman fault illuminated by InSAR" submitted to JGR: Solid Earth
<p>This compressed folder contains data presented in Figures of the following paper : <strong>"The interplay between seismic and aseismic slip along the Chaman fault illuminated by InSAR" </strong>by<em> </em>M. Dalaison, R. Jolivet, E. M. van Rijsingen and S. Michel, submitted to <em>JGR: Solid Earth </em>in August 2021.</p> <p>Data are in their final processed version. Raw data used in this study are freely available online ( scihub.copernicus.eu, earthdata.nasa.gov, www.ecmwf.int, pubs.usgs.gov/of/2007/1103 )</p>
Supplementary dataset for "Detection of "rapid" aseismic slip at the Izu-Bonin Trench"
<p>This dataset is the supplementary dataset for the research article "Detection of "rapid" aseismic slip at the Izu-Bonin Trench" by Fukao Y., et al. (2021, 10.1029/2021JB022132).</p> <p>The zip-archived file SupplementaryMaterial.zip contains the observation data of the pressure array experiment used in this study.<br> The data format is summarized in README.pdf. Time stamps are given in UT.</p> <p>The seafloor pressure observation experiment was made under the support of JSPS Kakenhi 25247074, 17K05646, 20K04142. The observations were made by the research cruises YK15-08 (R/V Yokosuka, JAMSTEC) and MR16-E02 (R/V Mirai, JAMSTEC).</p> <p> </p> <p> </p> <p> </p> <div> </div>
Codes and data for: Spatial Relationships between Coseismic Slip, Aseismic Afterslip, and On-fault Aftershock Density in Continental Earthquakes
<p>This code is an accompanyment to the paper: Spatial Relationships between Coseismic Slip, Aseismic Afterslip, and On-fault Aftershock Density in Continental Earthquakes. The code serves to allow reproduction of figures in the paper, and the repository also serves as a store for the data analysed. Readers are welcome to edit/adapt/incorporate the code freely, but please cite our paper. Use of, or reference to, any of the datasets included here should also be accompanied by a reference to the original source (i.e. the work by the original authors), which can be found in our paper.</p> <p>The code should be run sequentially and is not unbreakable, please take care. The methods outlined in the paper give a guide to the workflow, please contact me should you have additional questions.</p> <p>DATA (also referenced in the accompanying paper):</p> <ul> <li>Seismic catalogs are provided pre-processed in the folder 'catalogs'. These originate from: <ul> <li>The Northern California Earthquake Catalog (NCEC) (Waldhauser & Schaff, 2008; Waldhauser, 2009)</li> <li>The California Integrated catalog by the Southern California Seismic Network (SCSN) (SCEDC, 2013)</li> <li>The International Seismological Centre Bulletin (ISC)</li> </ul> </li> <li>Slip models (coseismic slip and afterslip) are provided in the folder 'SlipModels': <ul> <li>Many of these are availible freely online and are referenced in the accompanying paper</li> <li>Additional coseismic slip models are availible from the SRCMOD database (Mai & Thingbaijam, 2014)</li> <li>Chris Rollins (the El Mayor Cucapah afterslip paper) and Daniele Cheloni (the L'Aquila afterslip paper) were kind enough to allow me to include their models in this repository.</li> </ul> </li> </ul> <p>Again, we thank the following individuals who provided, or helped find, coseismic and afterslip models: Roland B ̈urgmann, Daniele Cheloni, Nicola D’Agostino, Semih Ergintav, Wangpeng Feng, Elizabeth Hearn, Junle Jiang, Fred Pollitz, Chris Rollins, Elisa Trasatti, Kang Wang, Sam Wimpenny, and Han Yue.</p> <p> </p>
Bridging seismic and aseismic slip during and after the complex rupture of the 2023 Kahramanmaraş earthquake doublet
<p>Strong motion data of the 20230206 Mw6.6 aftershock(01:28:16 Nurdağı (Gaziantep) Earthquake)of the 2023 Mw 7.8 Nurdağı-Pazarcık earthquake</p>
Dataset for the "Widespread Aseismic Slip Along the Makran Megathrust Triggered by the 2013 Mw 7.7 Balochistan Earthquake" paper
<p>This dataset is used for the Widespread Aseismic Slip Along the Makran Megathrust Triggered by the 2013 Mw 7.7 Balochistan Earthquake paper. Containing the ascending and descending InSAR results processing by MintPy, and the processed observation and input files for BEAT.</p>
Modeling Sequences of Earthquakes and Aseismic Slip (SEAS) in Elasto-Plastic Fault Zones With a Hybrid Finite Element Spectral Boundary Integral Scheme
<p>This repository contains the results of 2D simulations of the earthquake cycles accounting for off-fault plasticity.</p> <p>Folder Case1 contains the slip rate and time history for all simulations with cohesion c = 47 MPa</p> <p>Folder Case2 contains the slip rate and time history for all simulations with cohesion c = 25 MPa</p> <p>the mat files contain equivalent plastic strain of each element stored at the start and end of each event with element connectivity and node coordinates.</p>
Aseismic and recent ruptures of persistent asperities along the Alaska-Aleutian subduction zone
<p>This repository contains the coseismic and afterslip distribution files of the 2020 Mw .78 Simeonof Island, Alaska earthquake. Iif you use the dataset, please cite the following paper:</p> <p>Zhao, B., Burgmann, R., Wang, D., Zhang, J., Yu, J., & Li, Q. (2022). Aseismic slip and recent ruptures of persistent asperities along the Alaska-Aleutian subduction zone. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-022-30883-7</p>
Imaging seismic and aseismic plate coupling with interferometric radar (InSAR) in the Hikurangi subduction zone
<p>Data associated with 'Imaging seismic and aseismic plate coupling with interferometric radar (InSAR) in the Hikurangi subduction zone published in GRL.</p>
Fault asperities and the transition from aseismic creep to stick-slip: implications for earthquake precursors
Open the record for dataset details and reuse information.
Data used in the figures of "Aseismic deformation during the 2014 Mw 5.2 Karonga earthquake, Malawi from InSAR and earthquake source mechanisms"
<p>Data used in Figures 2, 4, and SI3 of the paper "Aseismic deformation during the 2014 Mw 5.2 Karonga earthquake, Malawi from InSAR and earthquake source mechanisms."</p>
Aseismic slip and seismic swarms leading up to the 2024 M7.3 Hualien earthquake
<p>This repository contains the dataset and slip models in Peng et al. (2025), "Aseismic slip and seismic swarms leading up to the 2024 M7.3 Hualien earthquake".</p>
CDDIS MEaSUREs SESES products Plate Boundary Aseismic Transient Deformation
Making Earth System Data Records for Use in Research Environments (MEaSUREs) empowers the research community to participate in developing and generating data products that complement and augment NASA produced and distributed Earth science data products. NASA’s Enhanced Solid Earth Science Earth Science Data Record (ESDR) System (ESESES) continues and extends mature geodetic data product generation and archival as part of the MEaSUREs SESES project providing new, multi-decade, calibrated and validated geodetic-derived ESDRs obtained by the Scripps Institution of Oceanography (SIO) and NASA's Jet Propulsion Laboratory (JPL). These data-derived products include continuous multi-year high-rate GNSS, seismogeodetic, and meteorological time series, a catalog of transient deformation in tectonically active areas known for aseismic motion such as ETS with focus in Cascadia, and continuous estimation and cataloging of total near-surface water content derived from continuous GNSS time series over the continental U.S. These data products catalog plate boundary aseismic transient deformation with focus in Cascadia, cataloging and parameterizing transient deformation in tectonically active areas known for aseismic transient motion such as episodic tremor and slip (ETS), first discovered in Japan and Cascadia.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.