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Experimental and numerical study on the behaviour of CFDST columns subjected to close-in blast loading

机译:爆炸载荷作用下CFDST柱性能的实验与数值研究

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The dynamic behaviour of concrete-filled double-skin steel tube (CFDST) columns under close-in blast loading was investigated using experimental and numerical approaches in the present study. Field test results on three large scale CFDST column specimens subjected to different blast loading conditions were presented. High-fidelity physics-based numerical models were developed utilizing the Arbitrary-Lagrangian-Eulerian (ALE) formulation coupled with Fluid-Structure Interaction (FSI) algorithm available in the nonlinear dynamic analysis program LS-DYNA. The numerical models were verified with the experiment results and were then used to investigate the dynamic response, damage mechanism and energy absorption capacity of CFDST columns subjected to close-in explosions. The results indicated that the typical failure pattern of CFDST columns under close-in blast loading is dominated by localized denting of the cross-section directly facing the explosion with minor global deformation of the column. The concrete core suffers severe damage while the steel tubes remain almost undamaged except in a limited region in the vicinity of the detonation. The energy absorbed by each part of the CFDST columns demonstrates that the severe plastic damage of concrete core plays a significant role in the energy absorption mechanism of CFDST columns under blast loading from close-in explosion. The primary function of the steel tubes is to provide confinement to the concrete core therefore prevent concrete spall damage. In addition, the influence of explosive charge setups and level of axial loads on the structural response and damage was assessed and discussed.
机译:本文采用实验和数值方法研究了密闭爆炸荷载下钢管混凝土双柱钢管(CFDST)的动力特性。给出了三个大型CFDST柱标本在不同爆炸载荷条件下的现场测试结果。利用任意非线性-拉格朗日-欧拉(ALE)公式和非线性动态分析程序LS-DYNA中可用的流固耦合(FSI)算法,开发了基于高保真物理的数值模型。数值模型与实验结果进行了验证,然后用于研究近爆CFDST柱的动力响应,损伤机理和能量吸收能力。结果表明,在爆破作用下,CFDST立柱的典型破坏模式主要是直接面对爆炸的横截面局部凹陷,而立柱的整体变形较小。除了在爆炸附近的有限区域内,钢管几乎保持完好无损,而混凝土芯则受到严重损坏。 CFDST柱各部分吸收的能量表明,混凝土芯的严重塑性破坏在近距离爆炸的爆炸荷载下对CFDST柱的能量吸收机理起着重要作用。钢管的主要功能是限制混凝土芯,从而防止混凝土剥落损坏。此外,评估并讨论了爆炸装药设置和轴向载荷水平对结构响应和破坏的影响。

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