Introducing the new ShakeOut Scenario 2.0 aftershock benchmark exercise for community verification of dynamic rupture codes
Date: October 14, 2026
Location: Online via Zoom
Workshop Organizers: Ruth Harris (USGS), Michael Barall (USGS)
SCEC Award: 26059
Registration Deadline: October 7, 2026
The ShakeOut Scenario 2.0 is a collaborative effort to generate updated earthquake scenarios that build upon the influential 2008 ShakeOut Scenario using current scientific understanding and engineering capabilities to evaluate earthquake impacts under today’s built environment, infrastructure systems, and societal conditions. The simulated ShakeOut Scenario 2.0 mainshock is a dynamically propagating large earthquake rupturing the southern San Andreas fault in California. Working within SCEC’s ShakeOut Scenario Technical Activity Group (TAG), the Statewide California Earthquake Center – U.S. Geological Survey (SCEC-USGS) dynamic rupture group is modeling a scenario large aftershock occurring in the weeks following the mainshock in a region of calculated increased static stress generated by the mainshock. The scenario large aftershock will be an M6.7-6.9 on the Raymond-Hollywood faults in the densely populated Los Angeles Basin. The scenario will be used by members of the engineering and earthquake effects teams to investigate its impact on the built and human environment in the Los Angeles Basin and beyond.
Dynamic rupture codes simulate how earthquake ruptures evolve from specified fault geometry, rock, stress, and friction conditions. Benchmark exercises test whether independently developed codes produce consistent results under the same assumptions—an essential step in confirming that the codes are working as intended before the models can be validated against observations. The SCEC-USGS dynamic rupture group is using this scenario aftershock as a benchmark exercise to test if multiple codes can produce the same earthquake source and near-field ground motion results when incorporating the 3D fault geometry adapted from the SCEC Community Fault Model (CFM), 3D velocity and density structure from the SCEC Community Velocity Model (CVM) truncated at the lowest velocities, along with slip-weakening friction, and initial stress conditions informed by the SCEC Community Stress Model (CSM).
At this workshop we will introduce the aftershock-scenario benchmark exercise, and discuss the latest findings from dynamic rupture simulations and related projects. Presentations and discussions will explain the benchmark’s scientific basis, prescribed model inputs, and participation process; invite additional modeling groups to contribute results from their own codes; and provide a forum for sharing new scientific ideas and related community projects. The workshop will conclude by reviewing what was learned and identifying next steps for the community verification effort.
The workshop is open to researchers, model developers, students, and others interested in dynamic rupture simulation, earthquake-source physics, code verification, and near-field ground motions. Modelers interested in participating in the new ShakeOut Scenario 2.0 aftershock benchmark exercise are especially encouraged to attend.
To participate, complete the online registration form by October 7. Registrants may also propose a one-slide, 100-second lightning talk through the form. There is no registration fee, and the Zoom link will be provided with the registration confirmation.
All times are Pacific Daylight Time (UTC-7).
| Time | Agenda Item | Speaker | |
|---|---|---|---|
| 09:00 - 09:15 | Introductions & Workshop Goals (Ruth Harris) | ||
| 09:20 - 10:30 | Session 1: The ShakeOut Scenario 2.0 Presentations will introduce the broader ShakeOut Scenario 2.0 effort and the scientific context for its mainshock and aftershock scenarios, setting the stage for the new dynamic rupture benchmark exercise.
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| 10:30 - 11:30 | Session 2: The Benchmark Exercise Description This session will introduce the technical specifications for the ShakeOut Scenario 2.0 aftershock benchmark, including its fault geometry, material structure, friction, initial stress conditions, and requested outputs. Community discussion will clarify the exercise and how modeling groups can participate.
| ||
| 11:30 - 11:45 | Break | ||
| 11:45 - 12:45 | Session 3: Lightning Talks on New Science Ideas Participants will share emerging research, methods, questions, and project ideas related to dynamic rupture simulation, earthquake-source physics, code verification, and near-field ground motions through one-slide, 100-second presentations. | ||
| 12:45 - 13:15 | Break | ||
| 13:15 - 14:30 | Session 4: Related Projects Presentations will highlight related projects and emerging scientific ideas and methodologies that may open opportunities for future community research.
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| 14:30 - 15:00 | Break | ||
| 15:00 - 16:00 | Session 5: More Lightning Talks on New Science Ideas A second series of one-slide, 100-second lightning talks will continue the rapid exchange of new findings, methods, and community projects related to dynamic rupture science and simulation. | ||
| 16:00 - 16:30 | Session 6: Workshop Recap Group discussion will synthesize the day’s presentations, review questions arising from the benchmark exercise, and identify next steps for model participation and the broader community verification effort. | ||
| 16:30 | Workshop Adjourns | ||
This SCEC-USGS group is an international collaboration that focuses on verifying computer codes used to simulate earthquakes as spontaneous dynamic ruptures. While the ultimate goal is model validation, we are currently using benchmarks to test for consistency of results under the same assumptions.
The Statewide California Earthquake Center (SCEC) fosters a diverse and inclusive community where everyone feels safe, productive, and welcome. We expect all participants in SCEC-supported events to uphold this commitment by adhering to the SCEC Activities Code of Conduct.
The SCEC Annual Meeting brings together 400-500 participants worldwide to share breakthroughs, assess progress, and chart a collaborative path for earthquake science. All of the Center activities are presented, analyzed, and woven into a set of priorities for SCEC to pursue in the future.