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首页> 外文期刊>Modelling and simulation in engineering >Dynamic Response of Cable-Supported Façades Subjected to High-Level Air Blast Loads: Numerical Simulations and Mitigation Techniques
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Dynamic Response of Cable-Supported Façades Subjected to High-Level Air Blast Loads: Numerical Simulations and Mitigation Techniques

机译:高空爆炸载荷作用下的电缆支撑立面的动力响应:数值模拟和缓解技术

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A glazing façade subjected to blast loads has a structural behaviour that strongly differs from the typical response of a glazing system subjected to ordinary loads. Consequently, sophisticated modelling techniques are required to identify correctly its criticalities. The paper investigates the behaviour of a cable-supported façade subjected to high-level blast loading. Nonlinear dynamic analyses are performed in ABAQUS/Explicit using a sophisticated FE-model (M01), calibrated to dynamic experimental and numerical results. The structural effects of the total design blast impulse, as well as only its positive phase, are analyzed. At the same time, the possible cracking of glass panels is taken into account, since this phenomenon could modify the response of the entire façade. Finally, deep investigations are dedicated to the bearing cables, since subjecting them to elevated axial forces and their collapse could compromise the integrity of the cladding wall. Based on results of previous studies, frictional devices differently applied at their ends are presented to improve the response of the façade under the impact of a high-level explosion. Structural effects of various solutions are highlighted through dynamic simulations. Single vertical devices, if appropriately calibrated, allow reducing significantly the axial forces in cables, and lightly the tensile stresses in glass panes.
机译:承受爆炸载荷的玻璃幕墙的结构特性与经受普通载荷的玻璃系统的典型响应有很大不同。因此,需要复杂的建模技术来正确识别其关键性。本文研究了承受高爆炸载荷的电缆支撑立面的行为。使用复杂的FE模型(M01)在ABAQUS / Explicit中进行非线性动态分析,并根据动态实验和数值结果进行校准。分析了整个设计冲击波脉冲的结构效应以及仅其正相位。同时,考虑到玻璃面板可能出现的开裂,因为这种现象会改变整个立面的响应。最后,对轴承电缆进行了深入的研究,因为使它们承受较高的轴向力并使其塌陷可能会损害包层壁的完整性。根据以前的研究结果,提出了在端部采用不同方式的摩擦装置,以改善立面在高强度爆炸的影响下的响应。通过动态模拟突出显示了各种解决方案的结构效果。如果进行了适当的校准,则单个垂直设备可以显着减小电缆中的轴向力,并可以轻微地减小玻璃板中的拉应力。

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