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Numerical modeling of the seismic out-of-plane response of a plain and TRM-strengthened rammed earth subassembly

机译:平板和经TRM加固的夯土子组件地震面外响应的数值模型

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The importance of raw earth is highlighted by the millions of persons living in earthen buildings around the World and by numerous historical monuments made of this material. Its widely availability led to the development of a variety of building techniques, including rammed earth, which is the main focus of this study. Similarly to unreinforced masonry structures, rammed earth buildings acceptably withstand gravity loads, but are significantly vulnerable to earthquakes. In this regard, great attention has been put on the proposal of efficient, compatible, affordable and reversible strengthening solutions. However, very limited studies address either the experimental testing or modeling of the seismic response of such buildings. The current study investigates the seismic out-of-plane performance of a plain and subsequently strengthened rammed earth sub-assembly (U-shape) using an advanced finite element modeling approach calibrated based on previously conducted small-scale experiments. Here, failure mechanisms, corresponding capacity and efficiency of the adopted strengthening solution (low-cost textile-reinforced mortar) are evaluated by means of pushover analyses. Then, the reliability of the pushover analyses is assessed by comparing its outcomes with that of the incremental dynamic analyses. In general, the failure was found to be governed by overturning of the web wall due to its detachment from the wing walls, while the strengthening was found to increase the capacity and delay the damage development.
机译:居住在世界各地的土楼中的数百万人以及用这种材料制成的众多历史古迹凸显了原始地球的重要性。它的广泛可用性导致了各种建筑技术的发展,包括夯土,这是本研究的重点。与未加固的砖石结构相似,夯土建筑可以承受重力载荷,但极易受到地震的影响。在这方面,已经高度重视有效,兼容,负担得起和可逆的加强解决方案的提议。但是,很少有研究针对此类建筑物的地震响应进行实验测试或建模。当前的研究使用一种先进的有限元建模方法,根据先前进行的小规模实验校准,研究了平原和随后加固的夯土子组件(U形)的地震面外性能。在此,通过推覆分析来评估所采用的加固解决方案(低成本的纺织增强砂浆)的破坏机理,相应的容量和效率。然后,通过将推覆分析的结果与增量动态分析的结果进行比较,来评估推覆分析的可靠性。通常,发现失效是由于腹板墙脱离翼板墙而引起的,而腹板墙的翻转是受支配的,而加强筋可以增加承载能力并延缓损伤的发展。

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