支撑
结构工程
帧(网络)
一致性(知识库)
地震分析
外骨骼
简单
概念设计
工程类
剪力墙
建筑工程
计算机科学
土木工程
机械工程
模拟
撑杆
人工智能
哲学
认识论
作者
Francesco Nigro,Gaetano Della Corte,Enzo Martinelli
标识
DOI:10.1016/j.engstruct.2024.117623
摘要
The use of external steel bracing systems (named exoskeletons) has recently emerged as a convenient technique for seismic upgrading of existing RC structures, as it possibly limits disturbance or interruption of building occupancy. However, although some conceptual formulations of the design problem can be found in the scientific literature, there are no universally accepted design criteria. The present paper highlights how alternative design choices can reverberate their effects on (i) the seismic performance of the upgraded structural system, (ii) its economic and ecological impact. For the sake of simplicity and consistency with the most common approach of practicing engineers, the present study adopted a force-based seismic design approach. The critical discussion proposed herein was obtained by varying the intensity of the seismic base shear force adopted for the exoskeleton design. Results of the design assessment show that the adoption of larger values of exoskeleton seismic design forces may not be the most suitable choice, especially if economic and ecological impacts are taken into account.
科研通智能强力驱动
Strongly Powered by AbleSci AI