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Energy based design of a novel timber-steel building

机译:新型木材钢大厦的能源设计

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摘要

Energy-based methodology is utilized to design novel timber-steel hybrid core wall system. The timber-steel core wall system consists of cross laminated timber (CLT), steel columns, angled brackets and t-stub connections. The CLT wall panels are stiff and strong, and ductility is provided through the steel t-stub connections. The structural system was modelled in SAP2000 finite element program. The hybrid system is explained in detail and validated using first principles. To evaluate performance of the hybrid core system, a 7-story building was designed using both forced-based design and energy based design (EBD) approaches. Performance of the structure was evaluated using 10 earthquakes records selected for 2500 return period and seismicity of Vancouver. The results clearly served as a good example of the benefits of EBD compared to conventional forced based design approaches.
机译:基于能量的方法用来设计新颖的木材 - 钢混合芯壁系统。 木材钢芯壁系统由交叉层压木材(CLT),钢柱,成角度支架和T型支架组成。 CLT壁板是僵硬且强的,并且通过钢T-Stub连接提供延展性。 结构系统在SAP2000有限元程序中进行了建模。 混合系统详细解释并使用第一原理验证。 为了评估混合核心系统的性能,使用强制性的设计和能源设计(EBD)方法设计了一座7层建筑。 使用选定的2500个返回期和温哥华的地震性选择的10个地震记录评估了结构的性能。 与传统的基于强制的设计方法相比,结果明确担任EBD益处的一个很好的例子。

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