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  1. 2009opportunitiesandchallengesincomputationalgeophysics x
  2. shorttermcrustaldynamics x
  3. 2006challengesandopportunitiesattheinterfacesofscientificcomputingandcomputationalgeodyn x
  4. 2005mantleconvectionworkshop x
  1. Modeling Geophysical Mass Flows – Mesh(Free), Model and Parameter Adaptivity

    11 Feb 2021 | Contributor(s): Abani Patra

    Modeling Geophysical Mass Flows – Mesh(Free), Model and Parameter Adaptivity. October 16-18, 2006. Abani Patra. 

  2. Modeling the geodynamo: Successes and challenges

    24 Jan 2021 | Contributor(s): Moritz Heimpel

    Modeling the geodynamo: Successes and challenges. October 16-18, 2006. Moritz Heimpel. 

  3. Multiscale/Multiphysics

    02 Apr 2021 | Contributor(s): C. Norton

    Multiscale/Multiphysics. March 30-31, 2009. C. Norton. 

  4. Plate Boundary Dynamics

    02 Apr 2021 | Contributor(s): Anonymous

    Plate Boundary Dynamics. March 30-31, 2009. 

  5. Plumbing the Depths

    27 Dec 2020 | Contributor(s): Marc Spiegelman, Richard Katz

    Plumbing the Depths: Towards an integration of magma dynamics and global mantle convection. June 23, 2005. Marc Spiegelman, Richard Katz. 

  6. Plumbing the Depths: Computational Challenges for Magma Dynamics in Earth Sciences

    11 Feb 2021 | Contributor(s): Marc Spiegelman, Richard Katz

    Plumbing the Depths: Computational Challenges for Magma Dynamics in Earth Sciences. October 16-18, 2006. Marc Spiegelman, Richard Katz. 

  7. PyLith

    27 Oct 2021 | Software: Download | Contributor(s): Brad Aagaard (primary-developer), Charles A. Williams (primary-developer), Matthew Knepley (primary-developer)

    PyLith is a finite-element code for dynamic and quasistatic simulations of crustal deformation, primarily earthquakes and volcanoes.Binary packages are available for macOS and Linux. Detailed installation instructions for the binary packages are in the PyLith manual. Use the PyLith...

  8. Pyre

    27 Dec 2020 | Workshops | Contributor(s): Michael Aivazis

    Pyre - An overview of a software architecture for scientific applications. June 20, 2005. Michael Aivazis. 

  9. Relax

    26 Oct 2021 | Software: Download | Contributor(s): Sylvain Barbot (primary-developer)

    Relax implements a semi-analytic Fourier-domain solver and equivalent body forces to compute quasi-static relaxation of stress perturbation.It is not an acronym, it's a motto!The open-source program Relax evaluates the displacement and stress in a half space with gravity due to...

  10. Rheologic Controls on Slab Dynamics

    27 Dec 2020 | Workshops | Contributor(s): Magali Billen

    Rheologic Controls on Slab Dynamics. June 23, 2005. Magali Billen. 

  11. Scalable Techniques for Scientific Visualization

    11 Feb 2021 | Workshops | Contributor(s): Claudio Silva

    Scalable Techniques for Scientific Visualization. October 16-18, 2006. Claudio Silva. 

  12. Science goals: 3-5 years from now

    02 Apr 2021 | Workshops | Contributor(s): Anonymous

    Science goals: 3-5 years from now. March 30-31, 2009. 

  13. Scientific and computational challenges in simulating fluid-rock interaction

    11 Feb 2021 | Workshops | Contributor(s): Mousumi Roy

    Scientific and computational challenges in simulating fluid-rock interaction and its role in the long-term tectonics of continental lithosphere. October 16-18, 2006.Mousumi Roy. 

  14. Seismic anisotropy

    27 Dec 2020 | Workshops | Contributor(s): Thorsten Becker

    Seismic anisotropy from nested flow models with fabric development: enough already? June 21, 2005. Thorsten Becker. 

  15. Seismology: Multiple-Scale Imaging

    02 Apr 2021 | Workshops | Contributor(s): Alan Levander

    Seismology: Multiple-Scale Imaging. March 30-31, 2009. Alan Levander. 

  16. SELEN

    25 Oct 2021 | Software: Download | Contributor(s): Giorgio Spada (primary-developer), Daniele Melini (primary-developer)

    SELEN: a program for solving the "Sea Level Equation.The open source program SELEN solves numerically the so-called "Sea Level Equation" (SLE) for a spherical, layered, non-rotating Earth with Maxwell viscoelastic rheology. The SLE is an integral equation that was introduced in...

  17. Short-Term Tectonics Science

    02 Apr 2021 | Workshops | Contributor(s): Brad Aagaard

    Short-Term Tectonics Science. March 30-31, 2009. Brad Aagaard. 

  18. Software, complexity & reuse... Robust -to- experimental codes for geodynamics

    02 Apr 2021 | Workshops | Contributor(s): Steve Quenette

    Software, complexity & reuse... Robust -to- experimental codes for geodynamics. March 30-31, 2009. Steve Quenette. 

  19. Spectral-Element and Adjoint Methods in Seismology

    11 Feb 2021 | Workshops | Contributor(s): Jeroen Tromp

    Spectral-Element and Adjoint Methods in Seismology. October 16-18, 2006. Jeroen Tromp. 

  20. Steering Geodynamics Models with Plate Tectonics Reconstruction Software: GPlates

    02 Apr 2021 | Workshops | Contributor(s): Mark Turner, Mike Gurnis, Lydia DiCaprio, James Boyden, James Clark, John Cannon, Dietmar Muller, Robin Watson, Trond Torsvik

    Steering Geodynamics Models with Plate Tectonics Reconstruction Software: GPlates. March 30-31, 2009. Mike Turner, Mike Gurnis, Lydia Di Caprio, James Boyden, James Clark, Joh Cannon, Dietmar Muller, Robin Watson, Trond Torsvik. 

  21. Stress Evolution and Fault Interactions before and after the 2008 Great Wenchuan Earthquake

    02 Apr 2021 | Workshops | Contributor(s): Gang Luo, Mian Liu

    Stress Evolution and Fault Interactions before and after the 2008 Great Wenchuan Earthquake. March 30-31, 2009. Gang Luo, Mian Liu. 

  22. Subduction Dynamics

    27 Dec 2020 | Workshops | Contributor(s): Mike Gurnis

    Subduction Dynamics: From Initiation to Maturity. June 22, 2005. Mike Gurnis, Chad Hall. 

  23. The Existence, Longevity and Composition of Mantle Plumes and Hotspot Volcanoes

    27 Dec 2020 | Workshops | Contributor(s): Mark Jellinek, Michael Manga

    The Existence, Longevity and Composition of Mantle Plumes and Hotspot Volcanoes.June 19, 2005. Mark Jellinek, Michael Mark. 

  24. Thermo-chemical convection: a comparison of numerical methods, and application to modeling planetary evolution

    27 Dec 2020 | Workshops | Contributor(s): Paul Tackley

    Thermo-chemical convection: a comparison of numerical methods, and application to modeling planetary evolution. June 20, 2005. Paul Tackley. 

  25. Thermochemical mantle plumes: tracers, markers and chains

    27 Dec 2020 | Workshops | Contributor(s): Peter van Keken, Shu-Chuan (Sky) Lin

    Thermochemical mantle plumes: tracers, markers and chains. June 19, 2005. Peter van Keken, Shu-Chuan (Sky) Lin.

  26. Three-dimensional numerical simulations of thermo-chemical multiphase convection in Earth's Mantle

    27 Dec 2020 | Workshops | Contributor(s): Takashi Nakagawa, Paul J. Tackley

    Three-dimensional numerical simulations of thermo-chemical multiphase convection in Earth's Mantle. June 19, 2005. Takashi Nakagawa, Paul J. Tackley. 

  27. Trilinos Overview

    24 Jan 2021 | Workshops | Contributor(s): Roscoe Bartlett

    Trilinos Overview. October 16-18, 2006. Roscoe Bartlett. 

  28. Unlocking the Secrets of the Rocky Planets

    27 Dec 2020 | Workshops | Contributor(s): John Baumgardner

    Numerical and Benchmarking Issues for 3D Spherical Codes (Unlocking the Secrets of the Rocky Planets) June 19, 2005. John Baumgardner

  29. Upper Mantle Dynamics Expressed in Hotspot Basalt Chemistry

    27 Dec 2020 | Workshops | Contributor(s): Garrett Ito, Todd Bianco, John Mahoney, Janet Becker, Michael Garcia

    Upper Mantle Dynamics Expressed in Hotspot Basalt Chemistry. June 19, 2005. Garrett Ito, Todd Bianco, John Mahoney, Janet Becker, Michael Garcia.

  30. Using multi-cycle earthquake simulations to understand crustal dynamics

    24 Jan 2021 | Workshops | Contributor(s): Brad Aagaard

    Using multi-cycle earthquake simulations to understand crustal dynamics. October 16-18, 2006. Brad Aagaard. 

  31. Virtual Quake

    26 Oct 2021 | Software: Download | Contributor(s): John M. Wilson, Kasey W. Schultz, Eric M. Heiein, Michael K. Sacks, John B. Rundle

    Virtual Quake (formerly Virtual California) is a boundary element code that performs simulations of fault systems based on stress interactions between fault elements to understand long term statistical behavior.

  32. Wave propagation in highly complex models

    24 Jan 2021 | Workshops | Contributor(s): Heiner Igel, Marco Stupazzini, Christoph Moder, Martin Kaser, Josep de la Puente

    Wave propagation in highly complex models: grid generation–local time stepping-parallelization. October 16-18, 2006. Heiner Igel, Martin Käser, Josepde la Puente, Marco Stupazzini, Christoph Moder.