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首页> 外文期刊>International journal of architectural heritage >Applied Element Modelling of the Dynamic Response of a Full-Scale Clay Brick Masonry Building Specimen with Flexible Diaphragms
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Applied Element Modelling of the Dynamic Response of a Full-Scale Clay Brick Masonry Building Specimen with Flexible Diaphragms

机译:柔性隔膜的全规模粘土砖砌体建筑试样的动态响应应用元素建模

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摘要

Structural design of unreinforced masonry buildings in The Netherlands, recently exposed to low-intensity ground motions induced by gas extraction, was not originally conceived for earthquake-resistance. Indeed, the presence of both large openings and flexible diaphragms, and the lack of any specific seismic consideration or detailing significantly increase their vulnerability towards horizontal loading. In this paper, the Applied Element Method (AEM), which explicitly represents the discrete nature of masonry, is used to simulate the shake-table response of a full-scale building specimen representative of a typical Dutch detached house made of unreinforced solid clay-brick masonry. Using this modelling strategy, the damage evolution, as well as both global failure mode and hysteretic behaviour, are described. The results show a good agreement with the experimentally observed response, confirming the capabilities of the AEM in reproducing effectively the behaviour of masonry structures, whilst simultaneously keeping computational costs within acceptable limits for this type of detailed modelling.
机译:荷兰未原始的砌体建筑的结构设计,最近暴露于气体提取诱导的低强度地面运动,最初尚未构思地震抵抗。实际上,存在大开口和柔性隔膜的存在,以及缺乏任何特定的地震考虑或细节显着增加他们对水平载荷的脆弱性。在本文中,应用元素方法(AEM)明确代表砌体的离散性质,用于模拟一个代表典型的荷兰独立式房屋的全尺寸建筑标本的摇动表响应,由未原始的固体粘土制成 - 砖砌砖。描述了使用该建模策略,描述了损伤演化以及全局失败模式和滞后行为。结果表明,与实验观察到的反应吻合良好,确认了AEM在有效再现砌体结构的行为中的能力,同时将计算成本保持在可接受的限制内的这种类型的详细建模。

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