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12 results for “Afterslip”

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zenodo44/100

Afterslip distribution related to the Van Earthquake (Turkey) of 23 Oct. 2011

<p>Two distributions of slip (afterslip) related to the Van earthquake</p> <p>- after 4 days</p> <p>- after 17 days</p> <p>as reported in Figure 9 and 10 of the paper</p> <p>Deformation and Related Slip Due to the 2011 Van Earthquake (Turkey) Sequence Imaged by SAR Data and Numerical Modeling</p> <p><em>Elisa Trasatti, Cristiano Tolomei, Giuseppe Pezzo, Simone Atzori and Stefano Salvi</em></p> <p>Rem. Sens. 2016, 8, 532; doi:10.3390/rs8060532</p> <p>&nbsp;</p> <p>Coordinates, depth&nbsp;and slip in meters.</p> <p>The geographical coordinates are projected with UTM zone 38.</p> <p>The depth of the first row of patches is positive due to the elevation of the area.</p>

opencc-by-4.0Aug 2023View details →
zenodo40/100

On the emergence of fault afterslip during laboratory seismic cycles

<div>This is the ReadMe file corresponding to the dataset of the study entitled:</div> <div>"On the emergence of fault afterslip during laboratory seismic cycles"</div> <div>By No&euml;l C., Twardzik C., Dublanchet P., and Passel&egrave;gue F.</div> <div>&nbsp;</div> <div>This Read-Me file has been last edited in October 2024</div> <div>&nbsp;</div> <div>This readme file describes the data repository and supplementary files accompanying the above publication.&nbsp;&nbsp;</div> <div>For any further queries please contact corentin.noel@geoazur.unice.fr</div> <div>&nbsp;</div> <div>&nbsp;</div> <div>&nbsp;</div> <div>Each experiment has a .txt file. The nam of the file is composed of first the sample configuration, then the confining pressure. If "down" is following, it stands for the confining pressure downphase at the end of the experiment (see method section of the manuscript). For Granite_Marble experiments, "bis" at the end of the name stands for the duplicated experiment.&nbsp;</div> <div>&nbsp;</div> <div>The data are tab separate file, each column is a variable as follow:</div> <div>Column 1: Time(s)</div> <div>Column 2: Axial average displacement (mm)</div> <div>Column 3: Axial stress (MPa)</div> <div>Column 4: Confining pressure (MPa)</div> <div>Column 5: Strain gage 1 (&micro;strain)</div> <div>Column 6: Strain gage 2 (&micro;strain)</div> <div>Column 7: Strain gage 3 (&micro;strain)</div> <div>Column 8: Strain gage 4 (&micro;strain)</div> <div>Column 9: Strain gage 5 (&micro;strain)</div> <div>Column 10: Strain gage 6 (&micro;strain)</div> <div>Column 11: Strain gage 7 (&micro;strain)</div> <div>Column 12: Strain gage 8 (&micro;strain)</div>

opencc-by-4.0Oct 2024View details →
zenodo40/100

Ramp-Flat and Splay Faulting Illuminated by Frictional Afterslip Following the 2017 Mw 7.3 Sarpol-e Zahab Earthquake

<p>The postseismic InSAR data used in the manuscript &quot;Frictional Afterslip along a Complex Fault Structure Following the 2017 Mw 7.3 Sarpol-e Zahab Earthquake Revealed by InSAR and 2-D Finite Element Models&quot;.</p>

opencc-by-4.0Oct 2023View details →
zenodo36/100

Afterslip Model Database RC2022 (Afterslip Moment Scaling and Variability from a Global Compilation of Estimates)

<p>Churchill2022AfterslipDatabase.xlsx is a detailed database of aseismic afterslip models and corresponding mainshock information compiled by Robert Churchill (under the supervision of Maximilian Werner, Juliet Biggs and &Aring;ke Fagereng). The database contains afterslip models of mainshocks since 1979, with a publication cut-off at the end of 2018. The database is near complete, but not exhaustive. Descriptions of each column can be found as comments in the header field, as well as in the accompanying paper. Not all fields are not complete, some are also approximate or inferred values.</p> <p>This accompanies the paper:</p> <p>Churchill, R.M., Werner, M.J., Biggs, J. and Fagereng, &Aring;., 2022. Afterslip Moment Scaling and Variability from a Global Compilation of Estimates. <em>Journal of Geophysical Research: Solid Earth</em>, p.e2021JB023897. <a href="https://doi.org/10.1029/2021JB023897">https://doi.org/10.1029/2021JB023897</a>.</p> <p>We hope the database serves as a useful resource to the afterslip community. Please reference our associated paper when using this database, as well as the database itself. References for individual afterslip papers can be found on the second sheet of the database, and references for additional data used in our study can be found in the third sheet. In the future, the database may be updated to include additional (missed) studies, however, this first version accompanies our study.</p> <p>*Headers for columns U and V are mislabelled Afterslip Upper Depth Limit (km) and Afterslip Lower Depth Limit (km), when these should be Coseismic Slip Upper Depth Limit (km) and Coseismic Slip Lower Depth Limit (km). The data in these columns is otherwise correct.</p> <p>&nbsp;</p>

opencc-by-4.0Apr 2022View details →
zenodo36/100

Supplementary Material to: A secondary zone of uplift measured after megathrust earthquakes: caused by early downdip afterslip?

<p>This archive contains supplementary material to the publication &quot;A secondary zone of uplift&nbsp; measured after megathrust earthquakes: caused by early downdip afterslip?&quot;</p> <p>This archive is divided into two folders. One contains scripts and parameterization used for our subduction zone toy models, input files for use with the Pylith software, and slip optimization utilities. A second folder contains scripts and parameterization for our study of the 2010 Mw8.8 Maule (Chile) earthquake. Note that slip optimization utilities rely on the use of the Classic Slip Inversion python library (https://github.com/jolivetr/csi).</p>

opencc-by-4.0Sep 2022View details →
zenodo36/100

Spatiotemporal dominance of afterslip and viscoelastic relaxation revealed by four decades of post-1973 Luhuo earthquake observations

<p>The datasets include: (1) post-processed fault-crossing short baseline data; (2) triangulation data; (3) coseismic slip models of the Zhuwo and Luhuo earthquakes; and (4) afterslip model of the Luhuo earthquake.</p>

opencc-by-4.0Aug 2024View details →
zenodo36/100

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 &#39;catalogs&#39;. These originate from: <ul> <li>The Northern California Earthquake Catalog (NCEC) (Waldhauser &amp; 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 &#39;SlipModels&#39;: <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 &amp; Thingbaijam, 2014)</li> <li>Chris Rollins (the El Mayor Cucapah afterslip paper) and Daniele Cheloni (the L&#39;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&rsquo;Agostino, Semih Ergintav, Wangpeng Feng, Elizabeth Hearn, Junle Jiang, Fred Pollitz, Chris Rollins, Elisa Trasatti, Kang Wang, Sam Wimpenny, and Han Yue.</p> <p>&nbsp;</p>

opencc-by-4.0Sep 2023View details →
zenodo32/100

Files for "Fluid-driven fault kinematics in the 2024 Noto earthquake: cascading rupture from ultraslow to supershear and afterslip"

<p>Files containing back-projection results, fluid overpressure data, and coseismic and postseismic deformation derived from GNSS and SAR measurements, along with the preferred coseismic slip and postseismic afterslip models for the 2024 Mw 7.5 Noto earthquake.</p>

opencc-by-4.0Nov 2024View details →
zenodo32/100

Dataset for the paper "Largest aftershock nucleation driven by afterslip during the 2014 Iquique sequence"

<p>Dataset for the following paper&nbsp;</p><p>Yuji Itoh, Anne Socquet, and Mathilde Radiguet, Largest aftershock nucleation driven by afterslip during the 2014 Iquique sequence, <i>Geophysical Research Letters</i>, 2023GL104852</p><p>See readme.txt files for details about the files and the contact informaton. Uncompressing produces files with ~ 500 MB in total.</p>

opencc-by-4.0Dec 2023View details →
zenodo28/100

Afterslip distribution model

<p>Those files contain the afterslip distribution model published in &quot;<strong> Localized afterslip at geometrical complexities revealed by InSAR after the 2016 Central Italy seismic sequence &quot; </strong>(DOI:10.1029/2019JB019065)</p>

opencc-by-4.0Apr 2020View details →
zenodo24/100

Probing fault frictional properties during afterslip up- and downdip of the 2017 Mw 7.3 Sarpol-e Zahab earthquake with space geodesy

<p>This zip file contains measurements of postseismic surface deformation due to the 2017 Mw 7.3 Sarpol-e Zahab earthquake derived from Sentinel-1 SAR data over a time period of one year after the mainshock. The line-of-sight (LOS) displacements of each satellite track are provided in high-resolution NetCDF file format.</p> <p># data format: NetCDF grid file</p> <p>dlos_yyyymmdd.grd &nbsp;---- cumulative LOS displacement since the first postseismic acquisition of each track (unit: meters); &nbsp;<br> dates.dat &nbsp;----- dates of the SAR image acquisitions of each track (ASCII file)<br> look_e/n/u.grd --- East, North, Vertical (Up) components of the line-of-sight direction, so that<br> &nbsp;&nbsp;<br> &nbsp; &nbsp; &nbsp; dlos_displacement = dUe*look_e + dUn*look_n + dUup*look_u</p> <p>where dUe, dUn, and dUup represent the Eastward, Northward, and Upward surface motion.</p> <p>Contact: Kang Wang (kjellywang@gmail.com &nbsp;or kwang@seismo.berkeley.edu)</p> <p>References:</p> <p>Wang, K and R. B&uuml;rgmann (2020), Probing fault frictional properties during afterslip up- and downdip of the 2017 Mw 7.3 Sarpol-e Zahab earthquake with space geodesy, Journal of Geophysical Research: Solid Earth<br> &nbsp;</p>

opencc-by-4.0Sep 2020View details →
zenodo4/100

Iraq aftershocks and afterslip displacement data for gbis

<p>The unwrapped radian of three aftershocks and afterslip of Iraq.</p>

restrictedSep 2019View details →

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