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Seismic damage simulation in urban areas based on a high-fidelity structural model and a physics engine

机译:基于高保真结构模型和物理引擎的城市地震破坏模拟

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摘要

Effective seismic damage simulation is an important task in improving earthquake resistance and safety of dense urban areas. There exist two significant technical challenges for realizing such a simulation: accurate prediction and realistic display. A high-fidelity structural model is proposed herein to accurately predict the seismic damage that was inflicted on a large number of buildings in an urban area via time-history analysis (THA), with which the local damage to different building stories is also explicitly obtained. The accuracy and efficiency of the proposed model are validated by a refined finite element (FE) analysis of a typical building. A physics engine-based algorithm is also proposed that realistically displays building collapse, thus overcoming the limitations of the high-fidelity structural model. Furthermore, a visualization system integrating the proposed model and collapse simulation is developed so as to completely display the seismic damage in detail. Finally, the simulated seismic damage of a real medium-sized Chinese city is evaluated to demonstrate the advantages of the proposed techniques, which can provide critically important reference information for urban disaster prevention and mitigation.
机译:有效的地震破坏模拟是提高密集城市地区的抗震性和安全性的重要任务。实现这种模拟存在两个重大的技术挑战:准确的预测和逼真的显示。本文提出了一种高保真结构模型,以通过时程分析(THA)准确预测市区内大量建筑物受到的地震破坏,还可以明确获得对不同建筑物故事的局部破坏。通过对典型建筑物的改进有限元(FE)分析,验证了所提出模型的准确性和效率。还提出了一种基于物理引擎的算法,该算法可以逼真的显示建筑物倒塌,从而克服了高保真结构模型的局限性。此外,开发了将提出的模型和倒塌模拟相结合的可视化系统,以完整地详细显示地震破坏。最后,对中国一个中型城市的模拟地震破坏进行了评估,以证明所提出技术的优势,该技术可以为城市防灾减灾提供至关重要的参考信息。

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