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Dynamic discrete element modelling for seismic assessment of rammed earth walls

机译:夯土墙抗震评估的动态离散元建模

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Rammed earth (RE) is a construction material which is manufactured by compacting the soil within a formwork, in superimposed layers. RE is attracting scientific studies because of its sustainable properties : a very low embodied energy and an advantageous living comfort due to a particular benefic hygro-thermal behaviour. Numerous studies have been conducted to investigate RE material and RE structures, however, a lack of knowledge on the seismic performance of RE buildings is noticed. This paper presents an advanced numerical study to investigate the in-plane seismic behaviour of RE walls. First, a numerical model of an in-situ RE wall was constructed by using discrete element modelling (DEM). The relevancy of the numerical model was verified by comparing dynamic properties of the model with that measured on the in-situ wall. Then, a real earthquake excitation was applied to the model, in order to evaluate the seismic performance of the RE wall studied. This is the first time, to our knowledge, that a dynamic discrete explicite analysis was performed for a RE wall. The excitation was scaled at different amplitudes to assess the damages following different earthquake intensities. The results showed that for seismic excitations lower than 2.3 m/s(2), RE walls studied had satisfying in-plane earthquake performance.
机译:夯土(RE)是一种建筑材料,通过将模板内的土壤压成叠层来制造。可再生能源由于其可持续的特性而吸引了科学研究:由于特殊的有益的湿热行为,其极低的内在能量和有利的生活舒适度。已经进行了许多研究来研究可再生能源的材料和可再生能源的结构,但是,人们注意到对可再生能源建筑的抗震性能缺乏了解。本文提出了一种先进的数值研究,以研究可逆墙的面内地震行为。首先,通过使用离散元建模(DEM)构建原位RE墙的数值模型。通过将模型的动态特性与在原位壁上测得的动力学特性进行比较,验证了数值模型的相关性。然后,将真实地震激励应用于模型,以评估所研究的RE墙的抗震性能。据我们所知,这是首次对RE墙进行动态离散显式分析。在不同的振幅下缩放激励,以评估在不同地震强度下的破坏。结果表明,对于低于2.3 m / s(2)的地震激励,所研究的RE墙具有令人满意的面内地震性能。

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