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Physics engine-driven visualization of deactivated elements and its application in bridge collapse simulation

机译:物理引擎驱动的停用元素可视化及其在桥梁倒塌仿真中的应用

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摘要

Element deactivation is one of the most suitable methods in a finite element (FE) analysis of discontinuous features of collapse accidents. However, deactivated elements are typically invisible in the general purpose FE analysis, leading to a very incomplete outcome. To visualize the deactivated elements, a 3D simulation method of fragments based on a physics engine is proposed herein. A working system for fragment simulation is designed by integrating a graphics engine, an FE analysis and a physics engine. To reduce the extensive computational workload due to massive fragments, a grid-clustering algorithm for fragment modeling is also proposed. Using the proposed simulation methodology, the collapse processes of two bridges are completely replicated. The results demonstrate a realistic and real-time visual simulation of deactivated elements, which complements the limitations of the general FE analysis results. This study provides an important reference for conducting detailed investigations of bridge collapse accidents.
机译:在倒塌事故的不连续特征的有限元(FE)分析中,元素停用是最合适的方法之一。但是,停用的元素通常在通用FE分析中是不可见的,从而导致非常不完整的结果。为了可视化去激活的元素,本文提出了基于物理引擎的片段的3D仿真方法。通过集成图形引擎,有限元分析和物理引擎来设计用于片段模拟的工作系统。为了减少大量碎片导致的大量计算工作量,还提出了一种用于碎片建模的网格聚类算法。使用所提出的仿真方法,可以完全复制两个桥梁的倒塌过程。结果表明了停用元素的逼真的实时视觉模拟,弥补了一般有限元分析结果的局限性。该研究为进行桥梁倒塌事故的详细研究提供了重要参考。

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