弯曲中空玻璃构件结构性能的数值模拟

M. Kozłowski, Kinga Zemła
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引用次数: 1

摘要

弯曲中空玻璃单元(igu)在立面上的应用已经成为一种满足美学和能源性能目标的新解决方案。由于刚度的提高,弯曲的igu不能像扁平的igu那样通过枕动来平衡内部和大气压力的变化。因此,弯曲igu中的气候负荷可能比平坦igu中的气候负荷高几倍。本文对圆柱弯曲igu进行了实验和数值模拟。它提出了一项实验活动的结果,旨在收集数据,以验证本研究中开发的弯曲IGU的数值模型。该模型随后用于分析一个案例研究,该案例研究比较了在DIN18008-1给出的特征气候作用下,平面和弯曲IGU中玻璃的内部压力、位移和应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Modelling of Structural Behaviour of Curved Insulating Glass Units
: The application of curved Insulating Glass Units (IGUs) in facades has emerged as a novel solution to meet aesthetic and energy performance objectives. Due to improved stiffness, curved IGUs cannot equalise internal and atmospheric pressure changes by pillowing, as flat IGUs do. Thus, the climatic loads in curved IGUs may be several times higher than those in flat units. This paper deals with experiments and numerical simulations of cylindrically curved IGUs. It presents the results of an experimental campaign designed to collect data that validate the numerical model of a curved IGU developed within this study. The model is sequentially used to analyse a case study that compares the resulting internal pressure, displacement, and stress in glass in a flat and curved IGU subjected to the characteristic climatic actions given by DIN18008-1.
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