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781 results for “earthquakes”

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zenodo36/100

3D Displacements for February 2023 Turkey-Syria Earthquake Doublet

<p>These displacement maps are derived from abundant space geodetic data. We used five different techniques in the derivation, including&nbsp;Synthetic Aperture Radar Interferometric (InSAR), Range Split Spectrum Interferometry (RSSI), Multiple Aperture Interferometry (MAI), Burst Overlap Interferometry (BOI) and Pixel Offset Tracking (POT).</p> <p>Slip3d.gmt is our slip distribution.</p> <p>If you used our results, please cite the below references.</p> <p>[1] Ma Zhang-Feng, Li Chenglong, Jiang Yu, Chen Yukuan, Yin Xinzhong, Yosuke Aoki, Yun Sangho, Wei Shengji*, et.al. "Space Geodetic Insights to the Dramatic Stress Rotation Induced by the February 2023 Turkey-Syria Earthquake Doublet"&nbsp; Geophysical Research Letters (in press).</p>

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

Numerical data for research paper titled "Physical mechanism for a temporal decrease of the Gutenberg-Richter b-value prior to a large earthquake"

<p>Numerical data used to make Figures in the manuscript entitled "Physical mechanism of the temporal decrease of a Gutenberg-Richter b-value prior to a large earthquake".&nbsp;We provide the data used to create Figures 2 to 13&nbsp;from the main text, and Figures S2, S3 and&nbsp;S6&nbsp;from the supplementary information. We also provide Python&nbsp;scripts to plot them.</p>

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

Earthquake Data for the 2023 Mw6.2 Suzu Earthquake in the Northeastern Noto Peninsula, Japan

<p>The coseismic slip distribution of the&nbsp;2023 Suzu Mw6.2 mainshock and relocated small earthquakes are available here.</p><p>The ASCII file "hypocenters.out" contains the relocated hypocenters. Columns 1–6 show the occurrence times. $1: year, $2: month, $3: day, $4: hour, $5: minute, and $6: second. Columns 7, 8, and 9 show the longitude, latitude, and depth, respectively. Columns 10 and 11 show the magnitude and ID according to JMA, respectively.&nbsp;</p><p>The ASCII file "slip.out"&nbsp; contains the slip distribution of the 2023 Mw6.2 mainshock. The first and second lines indicate the center of the model fault and the strike and dip angles, respectively. Subsequent lines show the amount of slip and moment release of subfaults. The first and second columns show the position of the subfaults in the length and width directions, respectively; the third and fourth columns show the moment release (Nm) and slip (m), respectively; and the fifth, sixth, and seventh columns show the corresponding longitudes, latitudes, and depths, respectively.</p>

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

Deep underground seismic velocity changes in Sichuan associated with the 2013 Lushan earthquake

<p>The GNSS data is provided by&nbsp;GNSS data product service platform of China Earthquake Administration.&nbsp;</p><p>The data catalog is available at the website: <a href="https://data.earthquake.cn/datashare/report.shtml?PAGEID=earthquake_zhengshi">https://data.earthquake.cn/datashare/report.shtml?PAGEID=earthquake_zhengshi</a>. The data used in the manuscript is also uploaded.</p>

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

Detectability of very low frequency earthquakes in Nankai subduction zone

<p><strong>How to cite this data</strong></p> <ul> <li>data DOI&nbsp;of this repository</li> <li>method and conception<br>Shunsuke Takemura, Satoru Baba, Suguru Yabe, Yusuke Yamashita, Katsuhiko Shiomi, Takanori Matsuzawa, Detectability analysis of very low frequency earthquakes: methods and application in Nankai using F-net and DONET broad-band seismometers,&nbsp;<em>Geophysical Journal International</em>, Volume 237, Issue 1, April 2024, Pages 49&ndash;63,&nbsp;<a href="https://doi.org/10.1093/gji/ggae033">https://doi.org/10.1093/gji/ggae033</a></li> </ul> <p><strong>source_meca.dat</strong></p> <p>Assumed focal mechanisms. Longitude, Latitude, depth, strike, dip, and rake are listed.&nbsp;Focal mechanisms at each source grid were assumed to be low-angle thrust faulting mechanisms from the plate geometry of Koketsu et al. (2012) and the convergence direction of NUVEL-1A (DeMets et al. 2010).</p> <p><strong>VLFEdetectability_Fnet.dat</strong></p> <p>The detectable limits of very low frequency earthquakes (VLFEs) in Nankai using F-net only.&nbsp;Longitude, Latitude, depth, and detectable limit (the lowest moment rate of detectable VLFEs) at each source grid are listed. The file with "Z" is the detectability of VLFEs using only vertical components.&nbsp;</p> <p><strong>VLFEdetectability_FnetDONET.dat</strong></p> <p>The detectable limits of VLFEs&nbsp;in Nankai using F-net and DONET.&nbsp;Longitude, Latitude, depth, and detectable limit (the lowest moment rate of detectable VLFEs) at each source grid are listed. The file with "Z" is the detectability of VLFEs using only vertical components.&nbsp;</p>

opencc-by-4.0Nov 2022View details →
ClinicalTrials.gov36/100

Earthquake Preparedness Training and Nursing Students' Awareness, Literacy, and Attitudes

ClinicalTrials.gov study NCT06896968. IPD Sharing: YES. Countries: 1. Publications: 1.

controlledIPD-YESFeb 2026View details →
dryad36/100

Holocene earthquake rupture of the XEOLXELEK–Elk Lake fault in the Greater Victoria area, British Columbia, Canada

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publicMay 2023View details →
dryad36/100

Data from: Friction and instability of glaucophane gouges at blueschist temperatures support abundance of intermediate-depth earthquakes

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publicDec 2023View details →
dryad36/100

A dataset of hydrological effects induced by historical and modern earthquakes in the Southern Apennines of Italy

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publicApr 2025View details →
dryad36/100

Data from: Establishing rates of carbon sequestration in mangroves from an earthquake uplift event

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publicMar 2019View details →
dryad36/100

After a catastrophe, a little bit of sex is better than nothing: genetic consequences of a major earthquake on asexual and sexual populations

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publicMar 2020View details →
dryad36/100

Data from: Recovery of macrobenthic communities in tidal flats following the Great East Japan Earthquake

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publicJul 2022View details →
dryad36/100

Data from: Proximal observations of epicentral infrasound generated by shallow low‐magnitude earthquakes in the Permian Basin, West Texas

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publicSep 2024View details →
dryad36/100

Jammu and Kashmir Seismological NETwork (JAKSNET) earthquake catalogue (2014-2017)

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publicAug 2024View details →
dryad36/100

Data for: Parallel recolonisations generate distinct genomic sectors in kelp following high magnitude earthquake disturbance

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publicMay 2022View details →
dryad36/100

Local earthquake coda waveform from the Jammu And Kashmir Seismological NETwork (JAKSNET)

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publicAug 2022View details →
dryad36/100

An improved earthquake catalog during the 2018 Kilauea eruption from combined onshore and offshore seismic arrays

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publicJun 2022View details →
dryad36/100

Data from: On the rupture propagation of the 2019 M6.4 Searles Valley Earthquake, and the lack of immediate triggering of the M7.1 Ridgecrest Earthquake

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publicJan 2021View details →
zenodo32/100

Seismic datasets in "Real-time earthquake location based on the Kalman filter formulation"

<p>Synthetic seismic dataset and Parkfield seismic dataset that used&nbsp;in the manuscript entitled &quot;Real-time earthquake location based on the Kalman filter formulation&quot;&nbsp;submitted to Geophysical Research Letters</p>

opencc-by-4.0Mar 2020View details →

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International Brain Laboratory public data

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