3319727087

Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations

Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations By Luis A. Dalguer
English | PDF | 2017 (2018 Edition) | 333 Pages | ISBN : 3319727087 | 102.83 MB

This volume collects several extended articles from the first workshop on Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations (BestPSHANI). Held in 2015, the workshop was organized by the IAEA to disseminate the use of physics-based fault-rupture models for ground motion prediction in seismic hazard assessments (SHA).
Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations (Repost)

Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations By Luis A. Dalguer
English | PDF | 2017 (2018 Edition) | 333 Pages | ISBN : 3319727087 | 102.83 MB

This volume collects several extended articles from the first workshop on Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations (BestPSHANI). Held in 2015, the workshop was organized by the IAEA to disseminate the use of physics-based fault-rupture models for ground motion prediction in seismic hazard assessments (SHA).
Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations (Repost)

Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations By Luis A. Dalguer
English | PDF | 2017 (2018 Edition) | 333 Pages | ISBN : 3319727087 | 102.83 MB

This volume collects several extended articles from the first workshop on Best Practices in Physics-based Fault Rupture Models for Seismic Hazard Assessment of Nuclear Installations (BestPSHANI). Held in 2015, the workshop was organized by the IAEA to disseminate the use of physics-based fault-rupture models for ground motion prediction in seismic hazard assessments (SHA).