Difference between revisions of "CyberShake Study 17.3"

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(Created page with "CyberShake Study 16.8 is a computational study to calculate 2 CyberShake hazard models - one with a 1D velocity model, one with a 3D - for Central California, at 1 Hz. We wil...")
 
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CyberShake Study 16.8 is a computational study to calculate 2 CyberShake hazard models - one with a 1D velocity model, one with a 3D - for Central California, at 1 Hz.  We will use the GPU implementation of AWP-ODC-SGT, the Graves & Pitarka (2014) rupture variations with 200m spacing and uniform hypocenters, and the UCERF2 ERF. The SGT and post-processing calculations will both be run on both NCSA Blue Waters and OLCF Titan.
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CyberShake Study 16.8 is a computational study to calculate 2 CyberShake hazard models - one with a 1D velocity model, one with a 3D - at 1 Hz in a new region, [[CyberShake Central California]].  We will use the GPU implementation of AWP-ODC-SGT, the Graves & Pitarka (2014) rupture variations with 200m spacing and uniform hypocenters, and the UCERF2 ERF. The SGT and post-processing calculations will both be run on both NCSA Blue Waters and OLCF Titan.
  
 
== Status ==
 
== Status ==
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Currently we are in the planning stages and hope to begin the study by the end of August, 2016.
  
 
== Science Goals ==
 
== Science Goals ==
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== Technical Goals ==
 
== Technical Goals ==
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== Velocity Models ==
 
== Velocity Models ==
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== Verification ==
  
 
== Performance Enhancements (over Study 15.4) ==
 
== Performance Enhancements (over Study 15.4) ==
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== Production Checklist ==
 
== Production Checklist ==
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*Complete the database migration outlined in [[2016_CyberShake_database_migration]].
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*Decide on 3D velocity model to use.
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*Upgrade Condor on shock to v8.4.8.
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*Get the Pegasus Dashboard up and running.
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*Run verification tests on 4 sites, including an overlapping site between Blue Waters and Titan.

Revision as of 16:41, 19 July 2016

CyberShake Study 16.8 is a computational study to calculate 2 CyberShake hazard models - one with a 1D velocity model, one with a 3D - at 1 Hz in a new region, CyberShake Central California. We will use the GPU implementation of AWP-ODC-SGT, the Graves & Pitarka (2014) rupture variations with 200m spacing and uniform hypocenters, and the UCERF2 ERF. The SGT and post-processing calculations will both be run on both NCSA Blue Waters and OLCF Titan.

Status

Currently we are in the planning stages and hope to begin the study by the end of August, 2016.

Science Goals

Technical Goals

Sites

Velocity Models

Verification

Performance Enhancements (over Study 15.4)

Codes

Computational and Data Estimates

Production Checklist

  • Complete the database migration outlined in 2016_CyberShake_database_migration.
  • Decide on 3D velocity model to use.
  • Upgrade Condor on shock to v8.4.8.
  • Get the Pegasus Dashboard up and running.
  • Run verification tests on 4 sites, including an overlapping site between Blue Waters and Titan.