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Introducing Australia’s first hybrid testing facility for performance-based assessment of structures

机译:引入澳大利亚首个用于基于性能的结构评估的混合测试设施

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摘要

Hybrid simulation is a cost-effective cyber-physical testing technique, in which computational models and physical components are integrated at run-time. This method can be viewed as conventional finite element analysis, where physical models of some portions of the structure are embedded in the numerical model. In such a way, the errors related to the simplification of the theoretical modeling of complex nonlinear structures or subassemblies can be effectively mitigated as they are tested physically in the lab. This paper introduces Australia’s first hybrid testing facility, referred to as the Multi-Axis Substructure Testing (MAST) system, which is capable of simulating the complex three-dimensional time-varying boundary effects on large-scale structural components. The MAST system is unique in Australasia and is capable to serve the research community and practice, nationally and internationally. An application of the MAST system to investigate the performance of a CFRP-repaired limited-ductile RC column under sequential ground motions from linear-elastic response range through collapse is also presented.
机译:混合仿真是一种具有成本效益的网络物理测试技术,其中在运行时将计算模型和物理组件集成在一起。可以将这种方法视为常规的有限元分析,其中将结构某些部分的物理模型嵌入到数值模型中。这样,在实验室中对它们进行物理测试时,就可以有效地减轻与简化复杂非线性结构或子装配的理论建模有关的误差。本文介绍了澳大利亚第一个混合测试设备,称为多轴子结构测试(MAST)系统,该系统能够模拟复杂的三维时变边界对大型结构部件的影响。 MAST系统在澳大拉西亚是独一无二的,并且能够在国内和国际上为研究团体和实践服务。还介绍了MAST系统在研究CFRP修复的有限延性RC柱在从线性弹性响应范围到坍塌的连续地震动下的性能的应用。

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