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Limit equilibrium analysis of masonry buttresses and towers under lateral and gravity loads

机译:侧向和重力作用下砌体和塔的极限平衡分析

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This paper revisits the fracturing of masonry buttresses and towers when subjected either to a concentrated oblique force at their head or to lateral inertial loading due to ground shaking and presents the corresponding failure criteria in elongation and shear. The loading configurations examined result either from the thrust that an elevated arch exerts on its supporting buttresses or from earthquake shaking on solitary masonry towers. At their limit state, tall, slender masonry buttresses and towers collapse by pivoting about their base corner, whereas less slender masonry structures may collapse by developing a shear failure. Because of the unilateral behavior of masonry, at the initiation of collapse of a slender buttress, the compression-free region separates from the rest of the buttress and reduces the stabilizing moment. As the ratio, base/height or the gravity load, increases, masonry buttresses and towers may fail in shear; therefore, the paper presents envelopes of their limit lateral capacity depending on the aspect ratio, the mechanical properties of masonry and the level of vertical loading. The equivalent static analysis adopted in this paper concludes that in most cases under lateral inertial loading, elongation failure is the lower failure mechanism of a tall masonry tower; nevertheless, a subsequent initiation of rocking that engages the large rotational inertia of the detached portion of the tower attracts additional inertia forces that may induce a follower shear failure.
机译:本文回顾了砖石支撑结构和塔楼在其头部受到集中的斜向力或由于地面震动而受到侧向惯性载荷时的断裂情况,并提出了相应的断裂和伸长准则。所研究的荷载配置是由高架拱施加在支撑拱上的推力引起的,或者是由孤立砖石塔的地震引起的。在其极限状态下,高大细长的砖石支撑结构和塔架通过绕其基角枢转而坍塌,而较不细长的砌体结构则可能由于剪切破坏而坍塌。由于砖石的单方面行为,在细长的支撑倒塌开始时,无压缩区域与支撑的其余部分分开,并减小了稳定力矩。随着基础/高度或重力载荷之比的增​​加,砖石支撑和塔架可能无法承受剪切力。因此,本文提出了根据纵横比,砌体的机械性能和垂直荷载水平限制其极限横向承载力的封套。本文采用的等效静力分析得出的结论是,在大多数情况下,在横向惯性载荷下,伸长破坏是高层砌体塔的较低破坏机理;然而,随后引起的摇摆的启动与塔架分离部分的大旋转惯性相接合,从而吸引了额外的惯性力,这可能会导致随动剪切失效。

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