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781 results for “earthquakes”
Supplementary data for "Seismogenic potential and tsunami threat of the strike-slip Carboneras fault in the western Mediterranean from physics-based earthquake simulations"
<p>Supplementary data for the article "Seismogenic potential and tsunami threat of the strike-slip Carboneras fault in the western Mediterranean from physics-based earthquake simulations" published in Natural Hazards and Earth System Science.</p>
IS network seismograms from the Mw7.8 and Mw7.5 2023 Kahramanmaraş earthquakes
<p>M7.?.tar.gz : TAR+GZIP files containing 10 minutes of seismic data from the IS network recording the 2023 Kahramanmaraş earthquake doublet</p> <p>????_??.tar.gz: TAR+GZIP files of selected IS stations in the Northern Dead Sea basin between 01/2021 to 03/2023. </p> <p>local_eq.tar.gz: TAR+GZIP files of IS stations in the Jordan Valley containing local earthquake data</p>
Influence of fault system geometry and slip rates on the relative role of coseismic and interseismic stresses on earthquake triggering and recurrence variability
<p>Supporting information for "Influence of fault system geometry and slip rates on the relative role of coseismic and interseismic stresses on earthquake triggering and recurrence variability" </p>
Horizontal Magnetic Anomaly Accompanying with the Co-seismic EQL of M7.3 Fukushima Earthquake of 16 March 2022: Phenomenon and Mechanism
<p>The file named 'EQL video & camera scene on google earth.rar' contains the video of the EQL (16 March 2022 & 7 April 2011) and the picture of the moment of the EQLs and the corresponding Google Earth scenes. The file named 'geological data.rar' contains the geological map of Sendai city and surrounding zone. The file named 'original geomagnetic data(2011).rar' contains the original geomagnetic data of three stations (i.e., KAK, KNY and MMB) on 7 April 2011. The file named 'original geomagnetic data(2022).rar' contains the original geomagnetic data of three stations (i.e., KAK, KNY and MMB) on 16 March 2022. The file named 'The processed data and the corresponding matlab program.rar' contains the processed geomagnetic data of the three stations and the matlab program for visualization.</p>
Shared Earthquake Scenarios for SeisSol
<p>Shared Earthquake Scenarios for SeisSol</p>
Table 5 for the Study: "Correlation Study: Triggering and Magnitude of Earthquakes in Italy (≥M4.3) in Relation to the Positions and Gravitational Forces of the Sun, Moon, and Planets Relative to Earth."
<p><strong>Random sample extraction of 145 earthquakes.</strong></p><p>In this short video we illustrate an example of the method used for the random sample extraction of 145 earthquakes for the Study: <i>"Correlation Study: Triggering and Magnitude of Earthquakes in Italy (≥M4.3) in Relation to the Positions and Gravitational Forces of the Sun, Moon, and Planets Relative to Earth" </i>for Section 2.10.1.</p><p> </p>
(old version) Table 7 for the Study: "Observation of correlation between earthquake triggering of M>4.3 and specific Sun-Moon-Planets positions in the Solar System, from 1600 in Italy."
<p>Table 7 for the Study: "Observation of correlation between earthquake triggering of M>4.3 and specific Sun-Moon-Planets positions in the Solar System, from 1600 in Italy."</p> <p><strong>There is a statistical correlation between the position of the planets, Moon and Sun and the Magnitude of the earthquakes.</strong></p>
Table 7 for the Study: "Observation of correlation between earthquake triggering of M>4.3 and specific Sun-Moon-Planets positions in the Solar System, from 1600 in Italy."
<p>Table 7 for the Study: "Observation of correlation between earthquake triggering of M>4.3 and specific Sun-Moon-Planets positions in the Solar System, from 1600 in Italy", paragraph 3.01.06.</p> <p><strong>Summary Excel tables of the 200 earthquakes, results of the first hypothesis.</strong></p>
Table 9 for the Study: "Observation of correlation between earthquake triggering of M>4.3 and specific Sun-Moon-Planets positions in the Solar System, from 1600 in Italy." Calandra Stefano
<p><strong>Distribution and probability of σFR indices of the 2nd hypotesis for all 200 earthquakes.</strong></p> <p>Distribution and probability of σFR indices of the 2nd hypotesis, and the time affected in 1 month by the same σFR index present at the time of seismic triggering, for all 3 lines of experimental analysis, for all 200 earthquakes analyzed in the paper <em>"Observation of correlation between earthquake triggering of M>4.3 and specific Sun-Moon-Planets positions in the Solar System, from 1600 in Italy", paragraph </em><strong>3.02.03.</strong></p> <p>Table 9 shows that the values and σFR indices calculated for the 200 earthquakes are concentrated in very small values. With this result, it is shown that by using these highly concentrated σFR values and indices, <em>75% of the time of the reference month of 65% earthquakes >M4.3 can be excluded as seismic hazard. </em></p>
Table 10 for the Study: "Correlation Study: Triggering and Magnitude of Earthquakes in Italy (≥M4.3) in Relation to the Positions and Gravitational Forces of the Sun, Moon, and Planets Relative to Earth."
<p><strong>Details of the 200 analyzed earthquakes encompassing values and indices for σFR Parameters A, B, and the percentile of Alert Time across the three Analysis Lines, for Section 3.2.6.</strong></p><p>It contains the 6 Excel calculation files: 2 excel sheets for each of the 3 lines of analysis.</p><p>In case of display problems or missing data: </p><p>the file <a href="https://zenodo.org/api/files/0b63ead2-6802-4089-849b-949758da13fd/Eqs%201-112%20-%20All%20Planets%20FR%20Graphs.xlsx">Eqs 1-112 - All Planets FR Graphs.xlsx</a> is available also on the Drive: <a href="https://docs.google.com/spreadsheets/d/1hxAsh6BZZH70z7C2iBVI4LqNsbl7gCcGmRJIX9CVLUA/edit?usp=sharing">https://docs.google.com/spreadsheets/d/1hxAsh6BZZH70z7C2iBVI4LqNsbl7gCcGmRJIX9CVLUA/edit?usp=sharing</a></p><p>the file <a href="https://zenodo.org/api/files/0b63ead2-6802-4089-849b-949758da13fd/Eqs%20113-200%20-%20All%20Planets%20FR%20Graphs.xlsx">Eqs 113-200 - All Planets FR Graphs.xlsx</a> is available also on the Drive: <a href="https://docs.google.com/spreadsheets/d/1bGcgwL5R_GPO3aQO3tdscGFjPrFdIJ-s16yQE9_eMXY/edit?usp=sharing">https://docs.google.com/spreadsheets/d/1bGcgwL5R_GPO3aQO3tdscGFjPrFdIJ-s16yQE9_eMXY/edit?usp=sharing</a> </p><p>the file <a href="https://zenodo.org/api/files/0b63ead2-6802-4089-849b-949758da13fd/Eqs%201-112%20-%20Moon%20and%20Sun%20FR%20Graphs.xlsx">Eqs 1-112 - Moon and Sun FR Graphs.xlsx</a> is available also on the Drive: <a href="https://docs.google.com/spreadsheets/d/1CLGRDgp-eyGMUZjvNjIfuxI-7fzUsY0NYs0qyAs1XRE/edit?usp=sharing">https://docs.google.com/spreadsheets/d/1CLGRDgp-eyGMUZjvNjIfuxI-7fzUsY0NYs0qyAs1XRE/edit?usp=sharing</a></p><p>the file <a href="https://zenodo.org/api/files/0b63ead2-6802-4089-849b-949758da13fd/Eqs%20113-200%20-%20Moon%20and%20Sun%20FR%20Graphs.xlsx">Eqs 113-200 - Moon and Sun FR Graphs.xlsx</a> is available also on the Drive: <a href="https://docs.google.com/spreadsheets/d/15CYvjS-4-FxKFLcYy4jIKKiFuiWYxSM89zzOliodyFg/edit?usp=sharing">https://docs.google.com/spreadsheets/d/15CYvjS-4-FxKFLcYy4jIKKiFuiWYxSM89zzOliodyFg/edit?usp=sharing</a></p><p>the file <a href="https://zenodo.org/api/files/0b63ead2-6802-4089-849b-949758da13fd/Eqs%201-112%20-%20without%20Moon%20and%20Sun%20FR%20Graphs.xlsx">Eqs 1-112 - without Moon and Sun FR Graphs.xlsx</a> is available also on the Drive: <a href="https://docs.google.com/spreadsheets/d/1zzwugZ4ZZzy6vnQP_SBrjjYaL5fjul29CBZS2Qheq_E/edit?usp=sharing">https://docs.google.com/spreadsheets/d/1zzwugZ4ZZzy6vnQP_SBrjjYaL5fjul29CBZS2Qheq_E/edit?usp=sharing</a> </p><p>the file <a href="https://zenodo.org/api/files/0b63ead2-6802-4089-849b-949758da13fd/Eqs%20113-200%20-%20without%20Moon%20and%20Sun%20FR%20Graphs.xlsx">Eqs 113-200 - without Moon and Sun FR Graphs.xlsx</a> is available also on the Drive: <a href="https://docs.google.com/spreadsheets/d/12phjR1r1pQXqzdclBCbV76nXpne4B9VqksDj4RqgEKw/edit?usp=sharing">https://docs.google.com/spreadsheets/d/12phjR1r1pQXqzdclBCbV76nXpne4B9VqksDj4RqgEKw/edit?usp=sharing</a></p>
Table 4 for the Study: "Correlation Study: Triggering and Magnitude of Earthquakes in Italy (≥M4.3) in Relation to the Positions and Gravitational Forces of the Sun, Moon, and Planets Relative to Earth."
<p><strong>Table 5, APPENDIX </strong>for the Study: "<i>Correlation Study: Triggering and Magnitude of Earthquakes in Italy (≥M4.3) in Relation to the Positions and Gravitational Forces of the Sun, Moon, and Planets Relative to Earth</i>," for Section 2.10.</p><p>Contains the list of M>4.3 earthquakes that occurred in Italy from 1600 to 2022 AD and the list of earthquakes analyzed.</p>
Data for "Why induced earthquakes occur on conventionally stable faults: frictional healing explains"
<p>This is the data used in "Why induced earthquakes occur on conventionally stable faults: frictional healing explains". The paper is currently under review. See README.txt for more information.</p>
Supplementary for Slab tearing and lithospheric structures in Luzon island, Philippines: Constraints from P-and S-wave local earthquake tomography
<p>The 3D seismic velocity model of the Northern Philippines was obtained from travel time inversion using LOTOS (Koulakov., 2009). </p> <p>The header of the file is:</p> <p>lon: longitude</p> <p>lat: latitude</p> <p>dep: depth in km</p> <p>vp_abs: absolute P-wave velocity (km/s)</p> <p>vs_abs: absolute S-wave velocity (km/s)</p> <p>dvp: P-wave velocity anomalies (%)</p> <p>dvs: S-wave velocity anomalies (%)</p> <p> </p>
Rupture Jumping and Seismic Complexity in Models of Earthquake Cycles for Fault Stepovers with Off-Fault Plasticity
<p>Fault stepovers are prime examples of geometric complexity in natural fault zones which may affect seismic hazard by determining whether an earthquake rupture continues propagating, or abruptly stops. However, the long-term pattern of seismicity near fault stepovers and underlying mechanisms of rupture jumping in the context of earthquake cycles are rarely studied. Leveraging a hybrid numerical scheme combining the finite element and the spectral boundary integral methods, FEBE, we carry out fully dynamic simulations of Sequences of Earthquakes and Aseismic Slip (SEAS) for both compressive and tensile stepovers, with off-fault plasticity. We consider a rate-and-state friction law for the fault friction, and pressure sensitive Drucker-Prager plasticity for the off-fault bulk response. We observe that the accumulation of plastic deformation, an indication of off-fault damage, is significantly different in the two cases with more plastic deformation projected in the overlapping region for the tensile stepover. The seismic pattern for a tensile stepover is more complex than for a compressive stepover, and incorporating plasticity also increases complexity, relative to the elastic case. A tensile stepover with off-fault plasticity shows rupture segmentation, temporal clustering, and frequent rupture jumping from one fault to another. These results shed light on possible mechanisms of rupture jumping in fault stepovers as well as the long-term evolution of the fault zone.</p>
Supplementary dataset for paper Long-period directivity pulses of strong ground motion during the 2023 Mw7.8 Kahramanmaraş earthquake
<p>Supplementary dataset for paper Long-period directivity pulses of strong ground motion during the 2023 Mw7.8 Kahramanmaraş earthquake by František Čejka, Jiří Zahradník, Fatih Turhan, Efthimios Sokos, and František Gallovič</p>
Dataset to support "Explore the potential of using social media crowdsourcing for earthquake damage assessment"
<p>This dataset is used to support findings in the paper "<strong>Explore the potential of using social media crowdsourcing for earthquake damage assessment.</strong>"</p> <p>In this paper, we investigated six earthquake events to explore the potential of using social media crowdsourcing for earthquake damage assessment. These cases include the 2014 Iquique earthquake, the 2015 Napa earthquake, the 2015 Nepal earthquake, the 2019 Ridgecrest earthquake, the 2021 Fukushima earthquake, and the 2021 Haiti earthquake. For the first three cases, tweet ID information was collected from the publicly available website CrisisNLP (https://crisisnlp.qcri.org/). For the last three cases, we collected “near-real-time” tweets with the key search term “earthquake.” For the 2019 Ridgecrest earthquake, the search date range was from July 4 to 10, 2019. For the 2021 Fukushima earthquake, the search date range was February 13 to 17, 2021. For the 2021 Haiti earthquake, the search date range was August 14 to 19, 2021. It should be noted that restrictions apply to the availability of tweet data due to the policy from <em>Twitter</em> Inc. Tweet data showing user profiles or text content is not allowed to be shared publicly, but tweet IDs are available to download from this dataset. </p> <p>In addition, we attached our processed results to this dataset, including,</p> <ol> <li>Damage estimation. The damage estimation for each event is based on the average estimated level of all damage-related tweets identified by text classification models, as documented in our paper.</li> <li>Temporal dynamics of damage estimation. We conducted the temporal analysis to explore the convergence of damage estimates over time, in which data were first binned based on the number of damage-related tweets in each 2-hour interval.</li> </ol> <p>If you need the training and testing datasets or have any further questions regarding the dataset or paper, please do not hesitate to reach us. </p>
InSAR dataset for the 2022 Chishang earthquake sequence
<p>The two files are the downsampled points of the two interferograms for the 2022 Chishang earthquake sequence</p>
Table of the Earthquake Environmental Effects of the 1992 Suusamyr Earthquake
<p>Table of the Earthquake Environmental Effects of the 1992 Suusamyr Earthquake.</p>
A Scalable Psychological Intervention for Earthquake Survivors in Türkiye
ClinicalTrials.gov study NCT06026306. IPD Sharing: NO. Countries: 1. Publications: 2.
Individual Training Given to Pregnant Women in the Earthquake Zone in Their Living Spaces,
ClinicalTrials.gov study NCT06110819. IPD Sharing: YES. Countries: 1. Publications: 21.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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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.