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Seismic vulnerability enhancement of medieval and masonry bell towers externally prestressed with unbonded smart tendons

机译:外部无粘结智能筋预应力的中世纪和砌体钟楼的地震易损性增强

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摘要

Medieval and masonry bell towers are highly vulnerable to suffer strong earthquake damage due to the mechanical and physical characteristics of masonry and other important factors. An approach for the seismic vulnerability reduction of masonry towers with external prestressing is proposed. The devices are vertically and externally located in order to be removable when needed. The characteristic flexural failure mode of medieval towers and the shear mechanism of bell towers are simulated. Both failure modes are in agreement with earthquake damage in similar towers. Medium prestressing level enhances force capacity of towers failing by bending without reducing ductility. High prestressing level slightly reduces the displacement capability of towers failing ductile. In case of belfry failure, both prestressing levels permit to increase displacement but lower force than towers failing by bending. The proposed medium prestressing level is the optimal for masonry towers and other slender structures failing by bending and shear. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于砌体的机械和物理特性以及其他重要因素,中世纪和砌体钟楼极易遭受强烈的地震破坏。提出了一种通过外部预应力降低砌体塔地震易损性的方法。这些设备垂直放置在外部,以便在需要时可移动。模拟了中世纪塔楼的典型弯曲破坏模式和钟楼的剪切机理。两种故障模式都与类似塔中的地震破坏一致。中等的预应力水平通过弯曲而不会降低延展性的情况下提高了塔架的受力能力。高预应力水平会略微降低无法延展的塔的位移能力。在钟楼发生故障的情况下,两个预应力水平都允许增加位移,但比因弯曲而失效的塔楼要低。拟议的中等预应力水平对于砌体塔和其他因弯曲和剪切破坏的细长结构是最佳的。 (C)2016 Elsevier Ltd.保留所有权利。

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