Automated workflow for validation of ground motion simulations using conventional and complex intensity measures (2019)
This is an open-source software project that provides engineering seismologists and structural/geotechnical earthquake engineers with an easy-to-use IM calculation and plotting capability, seen as a critical toolchain necessary to progress the comprehensive validation of ground motion simulation methods from the perspective of developers as well as users.
CitationMotha J, Loghman V, Bradley BA, Paterson J (2019). Automated workflow for validation of ground motion simulations using conventional and complex intensity measures. Nelson, New Zealand: QuakeCoRE Annual Meeting.
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ANZSRC Fields of Research37 - Earth sciences::3706 - Geophysics::370609 - Seismology and seismic exploration
46 - Information and computing sciences::4612 - Software engineering
RightsAll rights reserved unless otherwise stated
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Huang, J.; Bae, Sung Eun; Polak, V.; Bradley, Brendon; Razafindrakoto, H.; Thomson, E.; Lee, R.; Nazer, A.; Lagrava, D.; Motha, J. (2017)Background and objective : QuakeCoRE developed the Ground Motion (GM) simulation workflow based on the Graves and Pitarka (2010, 2015) methodology, we have strived to deliver the simulation result in timely manner to ...
Validation of ground motion simulations via response history analysis of special moment resisting frames using an automated workflow Loghman V; Chandramohan R; McGann C; Bradley, Brendon (2019)The aim of this poster is to examine the seismic response of two structural systems when subjected to observed and simulated ground motions (GMs) for the 22 February 2011 (22Feb2011) Christchurch earthquake (Razafindrakoto ...
Polak V; Bradley, Brendon; Zhu M; Bae, Sung Eun; Motha J; Razafindrakoto HNT (2018)Overview. GMSimViz is an automation tool that produces an animated 3D visualization of geological faults, ground motion and other earthquake related data. Typically verification of ground motion simulations involves ...