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Performance of reinforced concrete buildings and wooden structures during the 2015 M-w 6.0 Sabah earthquake in Malaysia

机译:马来西亚2015年M-W 6.0 Sabah地震中钢筋混凝土建筑和木制结构的性能

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摘要

This paper discusses the outcome of an investigation which was conducted soon after the 2015 Sabah earthquake in Malaysia. Buildings in the affected area were mainly constructed from reinforced concrete (RC) and wooden materials. Although the Mw 6.0 earthquake imposed significant damage to the majority of RC buildings, no significant structural damage was observed for the wooden structures. It was found that damage to the RC buildings was mainly because of non-ductile detailing of the structural components, strong-beam weak-column condition, captive-column and short-column effects, soft and weak stories mechanism, irregularity in plan and elevation, unconfined gable/infill walls, bad workmanship, and the low quality of construction materials. It was observed that many wooden structures had flaws in their design and construction as well. However, because of the high strength-to-weight ratio and the flexible properties of wooden materials which allow them to undergo several cycles of deformation without breaking, they survived the seismic actions. This paper identifies and discusses the main reasons for the damage observed in RC buildings and the construction flaws that were observed for wooden structures. Recommendations from seismic design codes in order to prevent the occurrence of such damage in the future are also highlighted.
机译:本文讨论了在马来西亚2015年沙巴地震之后不久的调查的结果。受影响地区的建筑主要由钢筋混凝土(RC)和木质材料构成。虽然MW 6.0地震对大多数RC建筑造成了重大损害,但木结构没有观察到显着的结构损伤。结果发现,RC建筑物的损坏主要是由于结构部件的非延展性细节,强梁弱柱状况,坚固柱和短柱效应,软弱故事机制,计划和高度的不规则性,无限制的山墙/填充墙,良好的工艺,以及低质量的建筑材料。观察到,许多木制结构也在其设计和施工中具有缺陷。然而,由于高强度重量比和木质材料的柔性性能,使它们能够经历几个变形循环而不会破裂,它们幸存下来的地震动作。本文识别并讨论了RC建筑物中观察到的损害的主要原因,以及为木结构观察到的施工缺陷。震动设计代码的建议也突出了防止在未来发生这种损坏。

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