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78 results for “Earthquake catalog”

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zenodo32/100

NLL-SSST-coherence earthquake relocation catalog for the 2019-2020 Southwest Puerto Rico earthquake sequence.

<p>CSV table of the NLL-SSST-coherence earthquake relocation catalog for the 2019-2020 Southwest Puerto Rico earthquake sequence.</p> <p>This dataset is from relocations presented in the article:<br> The 2019-2020 Southwest Puerto Rico earthquake sequence: seismicity and faulting<br> by Blaž Vičič, Seyyedmaalek Momeni, Alessandra Borghi, Anthony Lomax, and Abdelkrim Aoudia<br> published in Seismological Research Letters</p>

opencc-by-4.0Sep 2021View details →
zenodo32/100

RSQSim Simulated Earthquake Catalog 4983, California, UCERF3 Fault System, 715kyr

<p>Simulated earthquake catalog, generated with the Rate-State Earthquake Simulator (RSQSim), described in and used by the following publication:</p> <p>Kevin R. Milner, Bruce E. Shaw, Christine A. Goulet, Keith B. Richards‐Dinger, Scott Callaghan, Thomas H. Jordan, James H. Dieterich, Edward H. Field; Toward Physics‐Based Nonergodic PSHA: A Prototype Fully Deterministic Seismic Hazard Model for Southern California. <em><em>Bulletin of the Seismological Society of America</em></em> 2021;; 111 (2): 898&ndash;915. doi: <a href="https://doi.org/10.1785/0120200216">https://doi.org/10.1785/0120200216</a></p> <p>The catalog is simulated on the UCERF3 fault system for California (<a href="https://doi.org/10.1785/0120130164">https://doi.org/10.1785/0120130164</a>), following the hybrid loading technique described in Shaw (2019) (<a href="https://doi.org/10.1785/0120180128">https://doi.org/10.1785/0120180128</a>).</p> <p><strong>File Descriptions:</strong></p> <p><strong>Catalog CSV Files:</strong><em> catalog.csv, catalog_m6.5.csv</em></p> <p>These are human-readable summary files listing each event (after skipping the first 65kyrs of model spin-up time). The &quot;catalog_m6.5.csv&quot; file is filtered for only M&gt;6.5 events (those used Milner et al., 2021). Each line corresponds to an event in the catalog, and contains the following information:</p> <ul> <li>Event ID and occurrence time</li> <li>Magnitude, Moment, and Area</li> <li>Participating element information (count, average slip, long-term average slip rate)</li> <li>Hypocenter and scalar-moment centroid locations</li> <li>Rupture surface minimum and maximum depths</li> </ul> <p><strong>Geometry File (ASCII):</strong><em> geometry.flt</em></p> <p>ASCII file listing patch (triangular) geometry for the simulated faults in a UTM coordinate system (zone 11S). The primary columns are:</p> <ul> <li><em>x1, y1, z1</em> - UTM coordinates of the first vertex</li> <li><em>x2, y2, z2</em> - UTM coordinates of the second vertex</li> <li><em>x3, y3, z3</em> - UTM coordinates of the third vertex</li> <li><em>rake</em> - Direction of the motion of the hanging wall relative to the footwall (in degrees, following the convention of Aki &amp; Richards, 2002)</li> <li><em>slip_rate</em> - Long-term average slip rate (in m/s)</li> </ul> <p>The first line in the file (excluding comment lines that start with &#39;#&#39;) is the patch with ID=1, the second ID=2, etc. Additional metadata columns may exist in each line beyond those listed and can be ignored.</p> <p><strong>Catalog List Files (binary):<em> </em></strong><em>catalog.eList, catalog.pList, catalog.tList, catalog.dList</em></p> <p>The raw output of RSQSim includes 4 binary &quot;list&quot; files that define the simulated event IDs, times, and total slip in each participating patch. All 4 list files should be processed together, as the <em>N</em>-th item in one list file corresponds to the <em>N</em>-th item in each other file.</p> <p>For each patch the ruptures during an event, a value is written to each of these files giving 1) the patch number, 2) the event number, 3) the distance slipped during the event, and 4) the time of first rupture for that patch during that event.</p> <p>The format is as follows:</p> <ul> <li>catalog.eList: list of event IDs (1-based), stored as little-endian 4-byte integers</li> <li>catalog.pList: list of patch IDs (1-based), stored as little-endian 4-byte integers</li> <li>catalog.tList: list of time of first slip on each patch in each event (in seconds, relative to simulation origin time), stored as little-endian 8-byte double precision floating-point numbers</li> <li>catalog.dList: list of total slip on each patch in each event (in meters), stored as little-endian 8-byte double precision floating-point numbers</li> </ul> <p><strong>RSQSim Input File (ASCII):</strong><em> params.in</em></p> <p>Key-value pairs of RSQSim model parameters, used to originally run the simulation.</p> <p><strong>M&gt;6.5 Rupture Slip-Time Histories (Standard Rupture Format):</strong> <em>srfs_m6.5.zip</em></p> <p>Rupture slip-time histories in the Standard Rupture Format, version 1.0 (see <a href="http://equake-rc.info/static/paper/SRF-Description-Graves_2.0.pdf">http://equake-rc.info/static/paper/SRF-Description-Graves_2.0.pdf</a>), used in Milner et al. (2021). Slip-time histories are discretized at 0.1s intervals, and represented in the WGS84 coordinate system.</p>

opencc-by-4.0Sep 2021View details →
zenodo32/100

The relocated catalog of the 2022 Cianjur (West Java) earthquake

<p>The relocated catalog of the 2022 Cianjur (West Java) earthquake</p> <p>Please refer to:</p> <p>Supendi, P., Winder, T., Rawlinson, N., Bacon, C. A., Palgunadi, K. H., Simanjuntak, A., Kurniawan, A., Widiyantoro, S., Nugraha, A. D., Shiddiqi, H. A., Ardianto, Daryono, Adi, S. P., Karnawati, D., Priyobudi, Marliyani, G. I., Imran, I., and Jatnika, J. (2023). A conjugate fault revealed by the destructive Mw 5.6 (November 21, 2022) Cianjur earthquake, West Java, Indonesia, <em>Journal of Asian Earth Sciences</em>,<strong> </strong>257, 105830. https://doi.org/10.1016/j.jseaes.2023.105830</p>

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

Characteristically repeating earthquake catalog for Hayward and Rodgers Creek Faults

<p>Characteristically repeating earthquake catalog for&nbsp;Hayward and Rodgers Creek Faults</p>

opencc-by-4.0Jul 2022View details →
zenodo28/100

Supplementary: Integrated Earthquake Catalog of the Ossetian Sector of the Greater Caucasus

Open the record for dataset details and reuse information.

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

Earthquake catalog for the Baige landslide hazard cascades

<p>The file contains the earthquake catalog of the Baige landslide hazard cascades.</p>

opencc-by-4.0Mar 2024View details →
zenodo28/100

Bulletin, catalog, and station information of the 2023 Jishishan Mw 6.0 earthquake

Open the record for dataset details and reuse information.

opencc-by-4.0Jul 2024View details →
zenodo28/100

Template matching earthquake catalog from the 1st of January 2009 to the onset of the 2016 Central Italy sequence (24th of August 2016)

<p>Earthquake catalog obtained using the template matching technique&nbsp;from the 1<sup>st</sup>&nbsp;of January 2009 to the onset of the 2016 Central Italy sequence (24<sup>th</sup>&nbsp;of August 2016): it corresponds to a list of earthquake locations with magnitude estimation; the average cross correlation, the threshold, the associated template and the number of channels above the cross correlation threshold are indicated as well. Other details in Sugan et al., 2023.</p> <p>Sugan, M., Campanella, S., Chiaraluce, L., Michele, M., &amp; Vuan, A. (2023). The unlocking process leading to the 2016 Central Italy seismic sequence. Geophysical Research Letters, 50, e2022GL101838. https://doi.org/10.1029/2022GL101838.</p>

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

Template match catalog for 2022 Ferndale earthquake sequence

<p>Template match catalog for 2022 Ferndale earthquake sequence</p>

opencc-by-4.0Jan 2023View details →
zenodo24/100

Relocated Earthquake Catalog for Java-Indonesia (April 2009 to November 2018)

<p>Relocated Earthquake Catalog for Java (April 2009 to November 2018).&nbsp;</p> <p>Please refer to:</p> <p>Widiyantoro, S., Gunawan, E., Muhari, A., Rawlinson, N., Mori, J., Hanifa, N.R., Susilo, S., Supendi, P., Shiddiqi, H.A., Nugraha, A. D., Putra, H. E. (2020). Seismic gaps south of Java, Indonesia: Implications for megathrust earthquakes and tsunamis, Scientific Reports, 10, 15274 (2020). https://doi.org/10.1038/s41598-020-72142-z</p>

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

Synthetic earthquake catalogs generated for "Dual seismic migration velocities in seismic swarms"

<p>Synthetic earthquake catalog for 40 simulations presented in &quot;Dual seismic migration velocities in seismic swarms&quot; by P. Dublanchet and L. De Barros, submitted to Geophysical Research Letters. Each file corresponds to one simulation described in the original paper. The three columns of each file are:</p> <p>-time of earthquake (in s)</p> <p>-location of earthquake (in m)</p> <p>-size of earthquake (in m)</p>

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

Integrated Earthquake Catalog III: Gakkel Ridge, Knipovich Ridge and Svalbard Archipelago

<p>Integrated Earthquake Catalog III: Gakkel Ridge, Knipovich Ridge and Svalbard Archipelago</p>

opencc-by-4.0Sep 2023View details →
zenodo24/100

Relocated Earthquake Catalog for Eastern Indonesia (April 2009 to November 2018)

<p>Relocated Earthquake Catalog for Eastern Indonesia (April 2009 to November 2018).&nbsp;</p> <p>Please refer to:</p> <p>Supendi, P., Nugraha, A.D., Widiyantoro, S., Pesicek, J.D., Thurber, C.H., Abdullah, C.I., Daryono, D., Wiyono, S.H., Shiddiqi, H.A., and Rosalia, S. (2020).&nbsp;Relocated aftershocks and background seismicity in Eastern Indonesia shed light on the 2018 Lombok and Palu earthquake sequences, Geophysical Journal International, ggaa118, https://doi.org/10.1093/gji/ggaa118</p> <p>&nbsp;</p>

opencc-by-4.0Dec 2019View details →
zenodo24/100

earthquake event waveforms, phase picks and catalogs in this study

<p>The uploaded repository contains the following files:</p> <ul> <li><strong>25catlog_CENC.txt</strong>: The catalog of 25 earthquakes published by the China Earthquake Networks Center (CENC) in the study area during the observation period.</li> <li><strong>25catlog_this_study.txt</strong>: The same 25 events as published by CENC, reprocessed for this study to verify the accuracy of the magnitudes obtained.</li> <li><strong>hypoDD.pha</strong>: The phase file of seismic events generated in this study.</li> <li><strong>relocated_catalog_by_hypoDD_this_study_UTC+8.txt</strong>: The final earthquake catalog relocated using hypoDD.</li> <li><strong>xindianzi &amp; luoguanshan swarm event_waveform_data.rar</strong>: Waveform data for seismic events within the Xindianzi and Luoguanshan swarms.</li> <li><strong>xindianzi &amp; luoguanshan swarm event_waveform_figures.rar</strong>: Figures of waveform data from the two swarms.</li> <li><strong>event_waveforms.rar</strong>: Waveform data for all seismic events identified in this study.</li> </ul>

opencc-by-4.0Oct 2024View details →
zenodo24/100

An adaptable Random Forest model for the declustering of earthquake catalogs

<p>Random Forest models trained on different proportion of the synthetic earthquake catalog&nbsp;data set.</p> <p>The name of the model is defined as RF_XP_Y_Z.sav where:</p> <p>&nbsp; &nbsp;- X is the number of neighbor considered in the training stage;</p> <p>&nbsp; &nbsp;- Y is the number of feature considered in the training stage;</p> <p>&nbsp; &nbsp;- Z is the percentage (0-100) of the total data set used for the training stage.&nbsp;</p> <p>More details on how to use the model in <a href="https://github.com/florentaden/mldeclustering">this Github&nbsp;page</a>.</p>

opencc-by-4.0Oct 2021View details →
dryad24/100

Southern Cascadia earthquake catalog 2014-July to 2015-October

Open the record for dataset details and reuse information.

publicJul 2021View details →
zenodo16/100

Earthquake catalog in QuakeML format from: "Local earthquake monitoring with a low-cost seismic network: a case study in Nepal"

<p>Earthquake catalog of the microseismicity in central Nepal recorded by a Low cost seismic network(Raspberry Shake) in 2021 in QuakeML format. The information included for each event contains location, phase pick, local magnitude information.&nbsp;</p>

restrictedcc-by-4.0Jun 2024View details →
zenodo8/100

The relocated earthquake catalog of the Swarm earthquakes beneath Semangko Bay, Southern Sumatra, Indonesia

<p>Please refer to:</p> <p>Supendi, P., Widiyantoro, S., Rawlinson, N., Wibowo, A., Priyobudi, Palgunadi, K.H., Nugraha, A.D., Imran, I., Marliyani, G.I., Daryono, D., Prayitno, B.S., Sadly, M., Karnawati, D., Sari, N., and Sugiharto, A.&nbsp;(2021). Analysis of Swarm Earthquakes beneath Semangko Bay, southern Sumatra, Indonesia, using Broadband Network Data. Seismological Research Letters, 93 (3): 1373&ndash;1381.&nbsp;<a href="https://doi.org/10.1785/0220210304">https://doi.org/10.1785/0220210304</a></p>

restrictedOct 2021View details →

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