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In-Plane Seismic Performance of Plain and TRM-Strengthened Rammed Earth Components

机译:平面锯齿和TRM加强的夯土部件的平面地震性能

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Raw earth is one of the most widely used building materials and is employed in different techniques, among which adobe and rammed earth are the most common. The respective structural systems, like in masonry buildings, acceptably withstand against gravity loads, though they are significantly vulnerable to earthquakes. Moreover, a great percentage of the World's population is still inhabited in such environments, which are endangered by future earthquakes. The current article investigates the seismic in-plane performance of an I-shaped rammed earth component by means of advanced nonlinear finite element modelling. In this regard, conventional pushover analyses were conducted to evaluate load/displacement capacities and to assess probable failure modes. It was observed that the component fails mainly due to detachment of the wing walls from the web wall and due to occurrence of diagonal shear cracks at the web. Subsequently, the application of Textile Reinforced Mortar (TRM) strengthening solution to the component was studied and shown to be able to maintain the integrity of the component for larger lateral load levels. Finally, the reliability of the pushover analyses to predict the seismic response was evaluated by comparison with outcomes from incremental nonlinear dynamic analysis.
机译:原始地球是最广泛使用的建筑材料之一,采用不同的技术,其中Adobe和夯土是最常见的。相应的结构系统,如在砌体建筑物中,可接受地承受重力载荷,但它们显着容易受到地震。此外,世界各种人口的大量百分比仍然居住在这种环境中,这些环境受到未来地震的危害。本文通过先进的非线性有限元建模研究了I形夯土组分的地震面内性能。在这方面,进行常规的推进器分析以评估负载/位移容量并评估可能的故障模式。观察到,该部件主要是由于翼壁从腹板壁分离而导致的,并且由于幅材处的对角线剪切裂缝的发生。随后,研究了纺织品增强砂浆(TRM)强化溶液对组分的施加,并显示能够保持组分的完整性以进行较大的横向载荷水平。最后,通过与来自增量非线性动态分析的结果进行比较来评估推送分析的可靠性来预测地震反应。

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