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Fragility functions for partially-grouted masonry shear walls with bed-joint reinforcement

机译:具有床联合加固的部分灌浆砌体剪力墙的脆弱功能

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Fragility functions are a key component of performance-based earthquake engineering methodologies. They relate the response of the building, quantified by means of engineering demand parameters (EDPs), with the probability of reaching or exceeding different levels of damage in structural or nonstructural components. This paper develops fragility functions for partially grouted reinforced masonry (PG-RM) shear walls with bed joint reinforcement using data from 44 and 32 full-scale in-plane cyclic tests conducted on clay brick (CLB) walls and hollow concrete block (HCB) walls, respectively. Fragility functions for two levels of damage are derived for shear-dominated CLB and HCB walls using two different EDPs: the story drift ratio and a force-based normalized shear demand parameter. Fragility data based on story drift ratio has shown that HCB walls present a higher deformation capacity as compared to CLB walls. In addition, the dispersion observed in the fragility functions has indicated that the normalized shear demand parameter is better correlated to the level of damage than the story drift ratio parameter for both types of walls. Finally, a comparison with existing fragility functions developed in a previous study for HCB walls with bond-beams is presented.
机译:脆弱功能是基于性能的地震工程方法的关键组成部分。它们涉及通过工程需求参数(EDP)量化的建筑物的响应,其概率达到或超过结构或非结构组件的不同损坏。本文利用44和32个全尺寸在粘土砖(CLB)墙壁和空心混凝土块(HCB)的全尺寸在线循环试验,为部分灌浆增强砌体(PG-RM)剪力墙的脆弱功能开发了具有床联合加固的部分灌浆型材(PG-RM)剪力墙。墙壁分别。使用两个不同EDP的剪切主导的CLB和HCB墙来导出两个损坏损坏的脆性功能:故事漂移比和基于力的归一化剪切需求参数。基于故事漂移比的脆弱性数据表明,与CLB墙相比,HCB墙壁呈现更高的变形容量。另外,在脆弱功能中观察到的色散已经表明,归一化剪切需求参数与损坏水平更好地相关,而不是两种类型的墙壁的故事漂移比参数。最后,介绍了与先前与键合梁的HCB壁进行的现有脆弱功能的比较。

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