SCEC Publications
Documents published by the SCEC community, including journal articles, books, chapters,
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Elbanna, A. E., & Carlson, J. M. (2014). A two‐scale model for sheared fault gouge: Competition between macroscopic disorder and local viscoplasticity. Journal of Geophysical Research, 119(6), 4841. doi: 10.1002/2014JB011001.
Burks, L. S., & Baker, J. W. (2014). Fling in near-fault ground motions and its effect on structural collapse capacity. Oral Presentation at Tenth U.S. National Conference on Earthquake Engineering.
Tong, X., Smith-Konter, B. R., & Sandwell, D. T. (2014). Is there a discrepancy between geological and geodetic slip rates along the San Andreas Fault System?. Journal of Geophysical Research: Solid Earth, 119(3), 2518-2538. doi: 10.1002/2013JB010765..
Trugman, D. T., Borsa, A. A., & Sandwell, D. T. (2014). Did stresses from the Cerro Prieto Geothermal Field influence the El Mayor-Cucapah rupture sequence?. Geophysical Research Letters, 41(24), 8767-8774. doi: 10.1002/2014GL061959.
Sorlien, C. C., Nicholson, C., Behl, R. J., Marshall, C. J., & Kennett, J. P. (2014). The Quaternary North Channel-Pitas Point Fault System in Northwest Santa Barbara Channel, California. Eos (Transactions of AGU), 95(52), T34A-07.
Nicholson, C., Plesch, A., Sorlien, C. C., Shaw, J. H., & Hauksson, E. (2014). The SCEC 3D Community Fault Model (CFM Version 5.0): An updated and expanded fault set of oblique crustal deformation and complex fault interaction for southern California. Eos (Transactions of AGU), 95(52), T31B-4585.
Plesch, A., Shaw, J. H., & Jordan, T. H. (2014, 4). Stochastic Descriptions of Basin Velocity Structure from Analyses of Sonic Logs and the SCEC Community Velocity Model (CVM-H). Presentation at 2014 SSA Annual Meeting.
Weiser, D. A., & Jones, L. M. (2014, 4). Geothermal Pumping and Induced Seismicity in California Geothermal Fields. Presentation at 2014 SSA Annual Meeting.
Lee, R. L., Bradley, B. A., Pettinga, J. R., Hughes, M. W., & Graves, R. W. (2014, 5). Ongoing development of a 3D seismic velocity model of Canterbury, New Zealand for broadband ground motion simulation. Poster Presentation at 2014 NZSEE Annual Conference.
Arrowsmith, J. R. (2014, 9). High resolution topography and active faulting. Poster Presentation at 5th International INQUA Meeting on Paleoseismology, Active Tectonics and Archeoseismology. doi: 10.13140/2.1.3571.8409.
Liu, Z., Lundgren, P., & Shen, Z. (2014, 9). Improved imaging of Southern California crustal deformation using InSAR and GPS. Poster Presentation at SCEC Annual Meeting 2014.
Poyraz, E., Xu, H., & Cui, Y. (2014). Application-specific I/O optimizations on petascale supercomputers. Procedia Computer Science, 29, 910-923. doi: 10.1016/j.procs.2014.05.082.
Zechar, J. D., & Zhuang, J. (2014). A parimutuel gambling perspective to compare probabilistic seismicity forecasts. Geophysical Journal International, 199(1), 60-68. doi: 10.1093/gji/ggu137.
Xu, H., Cui, Y., Dieterich, J. H., Richards-Dinger, K. B., Poyraz, E., & Choi, D. (2014). Aftershock sequence simulations using synthetic earthquakes and rate-state seismicity formulation. Earthquake Science, 27(4), 401-410. doi: 10.1007/s11589-014-0087-7.
Yikilmaz, M. B., Turcotte, D. L., Heien, E. M., Kellogg, L. H., & Rundle, J. B. (2014). Critical jump distance for propagating earthquake ruptures across stepovers. Pure and Applied Geophysics,. doi: 10.1007/s00024-014-0786-y.
Song, S., Dalguer, L. A., & Mai, P. M. (2014). Pseudo-dynamic source modeling with 1-point and 2-point statistics of earthquake source parameters. Geophysical Journal International, 196(3), 1770-1786. doi: 10.1093/gji/ggt479.
Unruh, J., Hauksson, E., & Jones, C. (2014). Internal deformation of the southern Sierra Nevada microplate associated with foundering lower lithosphere, California. Geosphere, 10(1), 107-128. doi: 10.1130/GES00936.1.
Avouac, J., Ayoub, F., Wei, S., Ampuero, J., Meng, L., Leprince, S., Jolivet, R., Duputel, Z., & Helmberger, D. V. (2014). Seismic slip boosted on a misoriented fault bend during the 2013, Mw7.7 Balochistan Earthquake. Earth and Planetary Science Letters, 391, 128-134.
Tong, X., Smith-Konter, B. R., & Sandwell, D. T. (2014). Is there a discrepancy between geological and geodetic slip rates along the San Andreas Fault System?. Journal of Geophysical Research: Solid Earth, 119(3), 2518-2538. doi: 10.1002/2013JB010765.
Schneider, M., Clements, R. A., Rhoades, D. A., & Schorlemmer, D. (2014). Likelihood- and residual-based evaluation of medium-term earthquake forecast models for California. Geophysical Journal International, 198(3), 1307-1318. doi: 10.1093/gji/ggu178.
Savran, W. H., & Olsen, K. B. (2014). Deterministic simulation of the Mw5.4 Chino Hills event with frequency-dependent attenuation, heterogeneous velocity structure and realistic source model. Seismological Research Letters, 85(2), 498.
Roten, D., Olsen, K. B., Day, S. M., Cui, Y., & Fäh, D. (2014). Expected seismic shaking in Los Angeles reduced by San Andreas fault zone plasticity. Geophysical Research Letters, 41(8), 2769-2777. doi: 10.1002/2014GL059411.
Page, M. T., Field, E. H., Milner, K. R., & Powers, P. M. (2014). The UCERF3 Grand Inversion: Solving for the Long‐Term Rate of Ruptures in a Fault System. Bulletin of the Seismological Society of America, 104(3), 1181-1204. doi: 10.1785/0120130180.
Mak, S., Clements, R. A., & Schorlemmer, D. (2014). The Statistical Power of Testing Probabilistic Seismic-Hazard Assessments. Seismological Research Letters, 85(4), 781-783. doi: 10.1785/0220140012.
Lee, E., Chen, P., Jordan, T. H., Maechling, P. J., Denolle, M. A., & Beroza, G. C. (2014). Full-3-D tomography for crustal structure in Southern California based on the scattering-integral and the adjoint-wavefield methods. Journal of Geophysical Research: Solid Earth, 119(8), 6421-6451. doi: 10.1002/2014JB011346.
Dolan, J. F., & Haravitch, B. (2014). How Well Do Surface Slip Measurements Track Slip at Depth in Large Strike-Slip Earthquakes? The Importance of Fault Structural Maturity in Controlling on-Fault Slip versus off-Fault Surface Deformation. Earth and Planetary Science Letters, 388(15), 38-47. doi: 10.1016/j.epsl.2013.11.043.
Bradley, A. M. (2014). Software for efficient static dislocation-traction calculations in fault simulators. Seismological Research Letters, 85(6), 1358-1365. doi: 10.1785/0220140092.
Asimaki, D., & Taborda, R. (2014). Site-specific response in validation studies of physics-based earthquake simulations. Seismological Research Letters, 85(2), 470.
Olsen, K. B., & Takedatsu, R. (2014). The SDSU Broadband Ground Motion Generation Module BBtoolbox Version 1.5 . Seismological Research Letters, 86(1), 81-88. doi: 10.1785/0220140102.
Nissen, E., Maruyama, T., Arrowsmith, J. R., Elliott, J., Krishnan, A. K., Oskin, M. E., & Saripalli, S. (2014). Coseismic fault zone deformation revealed with differential LiDAR: examples from Japanese Mw 7 intraplate earthquakes. Earth and Planetary Science Letters, 405, 244-256. doi: 10.1016/j.epsl.2014.08.031.
Dreger, D. S., Beroza, G. C., Day, S. M., Goulet, C. A., Jordan, T. H., Spudich, P. A., & Stewart, J. P. (2014). Validation of the SCEC Broadband Platform V14.3 Simulation Methods Using Pseudo Spectral Acceleration Data. Seismological Research Letters, 86(1), 39-47. doi: 10.1785/0220140118.
Behr, W. M., & Platt, J. P. (2014). Brittle faults are weak, yet the ductile middle crust is strong: implications for lithospheric mechanics. Geophysical Research Letters, 41, 8067-8075. doi: 10.1002/ 2014GL061349.
Lindsey, E. O., Fialko, Y., Bock, Y., Sandwell, D. T., & Bilham, R. (2014). Localized and distributed creep along the southern San Andreas Fault. Journal of Geophysical Research: Solid Earth, 119(10), 7909-7922. doi: 10.1002/2014JB011275.
Kagan, Y. Y., & Jackson, D. D. (2014). Statistical earthquake focal mechanism forecasts. Geophysical Journal International, 197(1), 620-629. doi: 10.1093/gji/ggu015.
Sleep, N. H. (2014). Ambient tectonic stress as fragile geological feature. Geochemistry, Geophysics, Geosystems, 15(9), 3628-3644. doi: 10.1002/2014GC005426.
Thurber, C. H., Zeng, X., Thomas, A. M., & Audet, P. (2014). Phase-Weighted Stacking Applied to Low-Frequency Earthquakes. Bulletin of the Seismological Society of America, 104(5), 2567-2572. doi: 10.1785/0120140077.
Marzocchi, W., & Jordan, T. H. (2014). Testing for Ontological Errors in Probabilistic Forecasting Models of Natural Systems. Proceedings of the National Academy of Sciences, 111(33), 11973-11978. doi: 10.1073/pnas.1410183111.
Nagata, K., Kilgore, B., Beeler, N., & Nakatani, M. (2014). High-frequency imaging of elastic contrast and contact area with implications for naturally observed changes in fault properties. Journal of Geophysical Research: Solid Earth, 119(7), 5855-5875. doi: 10.1002/2014JB011014.
Graves, R. W., & Pitarka, A. (2014). Refinements to the Graves and Pitarka (2010) Broadband Ground Motion Simulation Method. Seismological Research Letters, 86(1), 75-80. doi: 10.1785/0220140101.
Li, Y. (2014). Co-seismic damage and post-mainshock healing of fault rocks at Landers, Hector Mine and Parkfield, California viewed by fault-zone trapped waves. Imaging, Modeling and Assimilation in Seismology, (Chapter 4, pp. 162-224) Beijing and Boston, : China High Education Press with De Gruyter
Coble, C., French, M. E., Chester, F. M., Chester, J. S., & Kitajima, H. (2014). In situ frictional properties of San Andreas Fault gouge at SAFOD. Geophysical Journal International,. doi: 10.1093/gji/ggu306.
French, M. E., Kitajima, H., Chester, J. S., Chester, F. M., & Hirose, T. (2014). Displacement and dynamic weakening processes in smectite-rich gouge from the Central Deforming Zone of the San Andreas Fault. Journal of Geophysical Research: Solid Earth, 119(3), 1777-1802. doi: 10.1002/2013JB010757.
Sleep, N. H., & Erickson, B. A. (2014). Nonlinear attenuation of S-waves and Love waves within ambient rock. Geochemistry, Geophysics, Geosystems, 15(4), 1419–1440. doi: 10.1002/2014GC005250.
Agnew, D. C. (2014). Variable Star Symbols for Seismicity Plots. Seismological Research Letters, 85(4), 775-780. doi: 10.1785/0220130214.
Bijelic, N., Lin, T., & Deierlein, G. (2014, 05). Seismic response of a tall building to recorded and simulated ground motions. Oral Presentation at 10th National Conference of Earthquake Engineering. doi: 10.4231/D3VH5CJ72.
Lindsey, E. O., Sahakian, V. J., Fialko, Y., Bock, Y., Barbot, S. D., & Rockwell, T. K. (2014). Interseismic strain localization in the San Jacinto fault zone. Pure and Applied Geophysics, 171(11), 2937-2954. doi: 10.1007/s00024-013-0753-z.
Lieou, C. K., Elbanna, A. E., & Carlson, J. M. (2014). Grain fragmentation in sheared granular flow: Weakening effects, energy dissipation, and strain localization. Physical Review E, 89(2), 022203. doi: 10.1103/PhysRevE.89.022203.
Hauksson, E. (2014). Median Earthquake Stress Drops of Local Earthquakes in Southern California in the Context of Crustal Geophysics: Implications for Fault Zone Healing. Pure and Applied Geophysics, 1-12. doi: 10.1007/s00024-014-0934-4.