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Displacement-based design procedure of grouted anchoring systems for the seismic upgrade of heritage buildings

机译:基于位移的灌注锚固系统设计程序,遗产建筑地震升级

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摘要

A displacement-based design procedure is proposed to control the out-of-plane motion of masonry walls during seismic events by means of a Grouted Anchoring System (GAS) and a Dissipative Grouted Anchoring Systems (DGAS). Combining the non-linear static capacity of walls in three different configurations (unstrengthened, strengthened with GAS or D-GAS) with the inelastic demand spectra gives the expected performance of the system, which is then compared to a set of damage thresholds corresponding to the progression from linear to nonlinear behaviour of the system. The design method is validated comparing the expected performance with the evolution of the wall's rocking motion obtained by means of time-history analysis for a seismic acceleration adapted to the design spectrum used in the static analysis. The results highlight that the D-GAS provides the optimal design solution as it controls the amplitude and acceleration of the rocking motion while dissipating the seismic energy through friction. This allows for a reduced number of required anchors, thus a less invasive of the intervention, which is beneficial especially for applications to historical building with aesthetic value.
机译:提出了一种基于位移的设计过程,以通过灌浆锚固系统(气体)和耗散灌浆锚定系统(DGA)来控制地震事件期间砌体壁的平面外运动。将壁的非线性静态容量与无弹性需求光谱相结合的三种不同配置(使用气体或D-气体,加强,气体或D-气体)提供了该系统的预期性能,然后与对应的一组损坏阈值进行比较。从系统的线性到非线性行为的进展。验证设计方法比较预期的性能,通过通过时间历史分析获得的墙壁摇摆运动的演变,适用于静态分析中使用的设计光谱的地震加速度。结果突出显示D型气体提供最佳的设计解决方案,因为它控制摇摆运动的幅度和加速度,同时通过摩擦散发地震能量。这允许减少所需的锚点的数量,因此干预的侵入性较少,这对具有审美价值的历史建筑物的应用是有益的。

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