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Visualization and High-Performance Computing for City-Scale Nonlinear Time-History Analyses
To facilitate interpretation of the urban building seismic simulation results, realistic visualizations are highly critical particularly for nonprofessional stakeholders and users. With this in mind, 2.5D, 3D, and photo-realistic visualization models are proposed in this chapter to enhance visualization capabilities of urban building seismic simulation outcomes. In addition, collapse simulation of urban buildings is achieved through physics engines. Earthquake disaster simulation of an urban area based on nonlinear MDOF models or high-fidelity computational models brings more challenges in computational workload. A coarse-grained CPU/GPU collaborative parallel computing, a distributed computing framework, and a cloud computing for multi-fidelity models are therefore proposed in this chapter which can impressively accelerate the earthquake disaster simulation of an urban area.
Visualization and High-Performance Computing for City-Scale Nonlinear Time-History Analyses
To facilitate interpretation of the urban building seismic simulation results, realistic visualizations are highly critical particularly for nonprofessional stakeholders and users. With this in mind, 2.5D, 3D, and photo-realistic visualization models are proposed in this chapter to enhance visualization capabilities of urban building seismic simulation outcomes. In addition, collapse simulation of urban buildings is achieved through physics engines. Earthquake disaster simulation of an urban area based on nonlinear MDOF models or high-fidelity computational models brings more challenges in computational workload. A coarse-grained CPU/GPU collaborative parallel computing, a distributed computing framework, and a cloud computing for multi-fidelity models are therefore proposed in this chapter which can impressively accelerate the earthquake disaster simulation of an urban area.
Visualization and High-Performance Computing for City-Scale Nonlinear Time-History Analyses
Lu, Xinzheng (author) / Guan, Hong (author)
Earthquake Disaster Simulation of Civil Infrastructures ; Chapter: 9 ; 641-711
2021-02-02
71 pages
Article/Chapter (Book)
Electronic Resource
English
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