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Virtual Quake

By John M. Wilson1, Kasey W. Schultz1, Eric M. Heiein1, Michael K. Sacks1, John B. Rundle1

1. University of California Davis

Citations Non-affiliated (38) | Affiliated (0)

Non-affiliated authors

  • Bazrafshan, Arsalan, Khaji, Naser, Paolucci, Roberto, (2024), "On the effect of background seismicity in physics-based earthquake simulations", Journal of Asian Earth Sciences, : pg: 106261, (DOI: 10.1016/j.jseaes.2024.106261). Cited by:

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  • Bazrafshan, Arsalan, Khaji, Naser, Paolucci, Roberto, (2024), "On the effect of background seismicity in physics-based earthquake simulations", Journal of Asian Earth Sciences, : pg: 106261, (DOI: 10.1016/j.jseaes.2024.106261). Cited by:

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  • Rafiei, Mohammadreza, Khodaverdian, Alireza, Rahimian, Mohammad, (2022), "A Probabilistic Physics‐Based Seismic Hazard Model for the Alborz Region, Iran", Bulletin of the Seismological Society of America, 112, 4: pg: 2141-2155, 05, (DOI: 10.1785/0120210238). Cited by:

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  • Rundle, J., Stein, S., Donnellan, A., Turcotte, D. L., Klein, W., Saylor, C., (2021), "The Complex Dynamics of Earthquake Fault Systems: New Approaches to Forecasting and Nowcasting of Earthquakes", Reports on Progress in Physics, : . Cited by:

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  • Limnios, N., Papadimitriou, E., Tsaklidis, G., (2021), "Statistical Methods and Modeling of Seismogenesis", Wiley: 9781789450378, . Cited by:

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  • Damasceno, Rafael Ricardo, (2020), "Co-Simulation Architecture for Environmental Disturbances", Universidade do Porto, Portugal: . Cited by:

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  • Max Wilson, J., Schultz, K. W., Grzan, D., Rundle, J. B., Ward, S. N., Bhaskar, R., Saeed, O., Kaushal, H., (2019), "Tsunami Squares Simulation of Megathrust-Generated Waves: Application to the 2011 Tohoku Tsunami", Progress in Disaster Science, : pg: 100063, (DOI: 10.1016/j.pdisas.2019.100063). Cited by:

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  • Wilson, J. M., Schultz, K., Heien, E., Sachs, M., Rundle, J., (2017), "Virtual Quake v3.1.1", : (DOI: 10.5281/zenodo.1098321). Cited by:

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  • Wilson, J. M., Schultz, K., Heien, E., Sachs, M., Rundle, J., (2017), "Virtual Quake v3.1.0", : (DOI: 10.5281/zenodo.569592). Cited by:

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  • Wilson J.M., Schultz, Heien, E. M., Sachs, M. K., Yoder, M. R., Rundle, J. B., Turcotte, D. L., (2017), "Virtual Quake User Manual, Version 3.1.0", Computational Infrastructure for Geodynamics, Davis, CA: . Cited by:

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  • Schultz, K. W., Yoder, M. R., Wilson, J. M., Heien, E. M., Sachs, M. K., Rundle, J. B., Turcotte, D. L., (2017), "Parametrizing Physics-Based Earthquake Simulations", Pure and Applied Geophysics, 174, 6: pg: 2269--2278, (DOI: 10.1007/s00024-016-1428-3). Cited by:

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  • Kasey W. Schultz, Michael K. Sachs, Manabu Hashimoto (2017), "Virtual Quake: Statistics, Co-seismic Deformations and Gravity Changes for Driven Earthquake Fault Systems", Springer International Publishing, 145: pg: 29--37, 978-3-319-39768-9, (DOI: 10.1007/1345_2015_134). Cited by:

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  • Wilson, J. M., Yoder, M. R., Rundle, J. B., Turcotte, D. L., Schultz, K. W., (2016), "Spatial Evaluation and Verification of Earthquake Simulators", Pure and Applied Geophysics, 1: pg: 85--99, (DOI: 10.1007/s00024-016-1385-x). Cited by:

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  • Schultz, K. W., Sachs, M. K., Heien, E. M., Rundle, J. B., Turcotte, D. L., Donnellan, A., (2016), "Simulating Gravity Changes in Topologically Realistic Driven Earthquake Fault Systems: First Results", Pure and Applied Geophysics, 173, 3: pg: 827--838, (DOI: 10.1007/s00024-014-0926-4). Cited by:

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  • Schultz, K. W., Sachs, M. K., Heien, E. M., Rundle, J. B., Turcotte, D. L., Donnellan, A., (2016), "Simulating Gravity Changes in Topologically Realistic Driven Earthquake Fault Systems: First Results", Pure and Applied Geophysics, 173, 3: pg: 827--838, (DOI: 10.1007/s00024-014-0926-4). Cited by:

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  • K.W. Schultz, E. M. Heien, (2016), "Virtual Quake User Manual, Version 3.0.0", Computational Infrastructure for Geodynamics, Davis, CA: . Cited by:

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  • Khodaverdian, A., Zafarani, H., Schultz, K. W., Rahimian, M., (2016), "Recurrence Time Distributions of Large Earthquakes in Eastern Iran", Bulletin of the Seismological Society of America, 106, 6: pg: 2624--2639, (DOI: 10.1785/0120160077). Cited by:

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  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2016), "Virtual Quake v3.0.0 [software]", Computational Infrastructure for Geodynamics: (DOI: 10.5281/zenodo.569886). Cited by:

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  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2016), "Virtual Quake v2.1.2 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2016), "Virtual Quake v2.1.1 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Yoder, M. R., Schultz, K. W., Heien, E. M., Rundle, J. B., Turcotte, D. L., Parker, J. W., Donnellan, A., (2015), "The Virtual Quake earthquake simulator: a simulation-based forecast of the El Mayor-Cucapah region and evidence of predictability in simulated earthquake sequences", Geophysical Journal International, 203, 3: pg: 1587--1604, (DOI: 10.1093/gji/ggv320). Cited by:

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  • Yikilmaz, M. B., Turcotte, D. L., Heien, E. M., Kellogg, L. H., Rundle, J. B., (2015), "Critical Jump Distance for Propagating Earthquake Ruptures Across Step-Overs", Pure and Applied Geophysics, 172, 8: pg: 2195--2201, (DOI: 10.1007/s00024-014-0786-y). Cited by:

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  • Sengupta, P., Nguyen, J., Kwan, J., Menon, P. K., Heien, E. M., Rundle, J. B., (2015), "Accelerating earthquake simulations on general-purpose graphics processors: Accelerating Earthquake Simulations on General-Purpose Graphics Processors", Concurrency and Computation: Practice and Experience, 27, 17: pg: 5460--5471, (DOI: 10.1002/cpe.3618). Cited by:

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  • Sengupta, P., Nguyen, J., Kwan, J., Menon, P. K., Heien, E. M., Rundle, J. B., (2015), "Accelerating earthquake simulations on general-purpose graphics processors: Accelerating Earthquake Simulations on General-Purpose Graphics Processors", Concurrency and Computation: Practice and Experience, 27, 17: pg: 5460--5471, (DOI: 10.1002/cpe.3618). Cited by:

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  • Schultz, K. W., Sachs, M. K., Yoder, M. R., Rundle, J. B., Turcotte, D. L., Heien, E. M., Donnellan, A., (2015), "Virtual Quake: Statistics, Co-seismic Deformations and Gravity Changes for Driven Earthquake Fault Systems", International Association of Geodesy Symposia, Springer Berlin Heidelberg, Berlin, Heidelberg: pg: 1--9, (DOI: 10.1007/1345_2015_134). Cited by:

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  • Khodaverdian, A., Zafarani, H., Rahimian, M., (2015), "Long term fault slip rates, distributed deformation rates and forecast of seismicity in the Iranian Plateau", Tectonics, 34, 10: pg: 2190--2220, (DOI: 10.1002/2014TC003796). Cited by:

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  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2015), "Virtual Quake v2.0.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:

    BibTex | EndNote

  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2015), "Virtual Quake v2.1.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:

    BibTex | EndNote

  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2014), "Virtual Quake v1.1.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Heien, E. M., Sachs, M. K., Schultz, K. W., Rundle, J. B., (2014), "Virtual Quake v1.0.0 [software]", Computational Infrastructure for Geodynamics: . Cited by:

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  • Tullis, T. E., Richards-Dinger, K., Barall, M., Dieterich, J. H., Field, E. H., Heien, E. M., Kellogg, L. H., Pollitz, F. F., Rundle, J. B., Sachs, M. K., Turcotte, D. L., Ward, S. N., Burak Yikilmaz, M., (2012), "A Comparison among Observations and Earthquake Simulator Results for the allcal2 California Fault Model", Seismological Research Letters, 83, 6: pg: 994--1006, (DOI: 10.1785/0220120094). Cited by:

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  • Sachs, M. K., Heien, E. M., Turcotte, D. L., Yikilmaz, M. B., Rundle, J. B., Kellogg, L. H., (2012), "Virtual California Earthquake Simulator", Seismological Research Letters, 83, 6: pg: 973--978, (DOI: 10.1785/0220120052). Cited by:

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  • Heien, E. M., Sachs, M., (2012), "Understanding Long-Term Earthquake Behavior through Simulation", Computing in Science & Engineering, 14, 5: pg: 10--20, (DOI: 10.1109/MCSE.2012.39). Cited by:

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  • Yikilmaz, M. B., Heien, E. M., Turcotte, D. L., Rundle, J. B., Kellogg, L. H., (2011), "A fault and seismicity based composite simulation in northern California", Nonlinear Processes in Geophysics, 18, 6: pg: 955--966, (DOI: 10.5194/npg-18-955-2011). Cited by:

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  • Yikilmaz, M. B., Turcotte, D. L., Yakovlev, G., Rundle, J. B., Kellogg, L. H., (2010), "Virtual California earthquake simulations: simple models and their application to an observed sequence of earthquakes", Geophysical Journal International, 180, 2: pg: 734--742, (DOI: 10.1111/j.1365-246X.2009.04435.x). Cited by:

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  • Yakovlev, G., Turcotte, D. L., Rundle, J. B., Rundle, P. B., (2006), "Simulation-Based Distributions of Earthquake Recurrence Times on the San Andreas Fault System", Bulletin of the Seismological Society of America, 96, 6: pg: 1995--2007, (DOI: 10.1785/0120050183). Cited by:

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  • Rundle, P. B., Rundle, J. B., Tiampo, K. F., Donnellan, A., Turcotte, D. L., (2006), "Virtual California: Fault Model, Frictional Parameters, Applications", Pure and Applied Geophysics, 163, 9: pg: 1819--1846, (DOI: 10.1007/s00024-006-0099-x). Cited by:

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  • Rundle, J. B., Rundle, P. B., Donnellan, A., Turcotte, D. L., Shcherbakov, R., Li, P., Malamud, B. D., Grant, L. B., Fox, G. C., McLeod, D., Yakovlev, G., Parker, J., Klein, W., Tiampo, K. F., (2005), "A simulation-based approach to forecasting the next great San Francisco earthquake", Proceedings of the National Academy of Sciences, 102, 43: pg: 15363--15367, (DOI: 10.1073/pnas.0507528102). Cited by:

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