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Hybrid Framework for Simulating Building Collapse and Ruin Scenarios Using Finite Element Method and Physics Engine

机译:用于模拟建筑折叠和使用有限元方法和物理引擎的崩溃和废墟情景的混合框架

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Reliable and high-fidelity virtual ruin scenarios for collapsed buildings are essential for post-earthquake emergency search and rescue training. However, the existing research on the distribution of ruins caused by building collapse is insufficient for supporting post-earthquake rescue training. Therefore, this paper proposes a hybrid framework for simulating building collapse and ruin scenarios, using a finite element (FE) model and a physics engine. Based on this framework, the following methods are proposed: (1) geometric model conversion from the FE model to the physics engine; (2) determination of the initial moment of collapse; and (3) data mapping of the FE simulation results. In addition, a corresponding program, Finite Element Method to Rigid Body Dynamics (FEM2RBD), is developed for the hybrid framework. The proposed framework simulates the entire process of building collapse and the distribution of ruins. The accuracy of the framework is validated using a shaking table test of a three-story reinforced concrete frame. The collapse process and ruin scenario of a real-world library building is simulated as a case study. The results show that the proposed framework combines the advantages of the FE model during the small-deformation stage with the advantages of physics engines during the large-deformation stage. The proposed framework can be valuable in simulating building collapse and ruin scenarios for post-earthquake rescue training.
机译:折叠建筑物的可靠和高保真虚拟毁灭情景对于地震后应急搜索和救援培训至关重要。然而,对由建筑崩溃引起的废墟分布的现有研究不足以支持地震后救援训练。因此,本文提出了一种用于使用有限元(FE)模型和物理引擎模拟建筑物崩溃和破坏方案的混合框架。基于此框架,提出了以下方法:(1)从FE模型到物理引擎的几何模型转换; (2)确定崩溃的初始时刻; (3)FE仿真结果的数据映射。另外,对刚性体动力学(FEM2RBD)的相应程序,有限元方法用于混合框架。拟议的框架模拟了建筑崩溃的整个过程和废墟分布。使用三层钢筋混凝土框架的振动台试验验证了框架的准确性。将模拟现实世界图书馆建筑的崩溃过程和废墟情景作为案例研究。结果表明,该框架在小变形阶段在大变形阶段的物理发动机的优势期间将FE模型的优点结合在一起。拟议的框架可以在模拟地震后救援训练的建筑崩溃和废墟情景中有价值。

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