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Influence of construction method on the load bearing capacity of skew masonry arches

机译:施工方法对砌体斜拱承载力的影响

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摘要

This paper investigates the influence of construction method (e.g. false skew, helicoidal and logarithmic method) on the mechanical behaviour and load carrying capacity of single span skew masonry arches. Simulations were performed with the three dimensional computational software, based on the Discrete Element Method of analysis. Each stone/brick of the masonry skew arch was represented by a distinct block. Mortar joints were modelled as zero thickness interfaces which can open and close depending on the magnitude and direction of the stresses applied to them. The variables investigated were the construction method, the angle of skew, the size of masonry blocks and the critical location of the live load along the span of the arch. At each skew arch, a full width vertical line load was applied incrementally until collapse. From the results analysis, it was found that for a skew masonry arch constructed using the false skew method, as the angle of skew increase, sliding between voussoirs in the arch increases and failure load decreases. However, for skew masonry arches constructed using the helicoidal and logarithmic method, as the angle of skew increases, the failure load increases. Three different characteristic failure modes were identified depending on the contact friction angle and the method of construction. These observations provide new insight into the behaviour and lead to suggestions for understanding the load carrying capacity and failure mode of skew arches.
机译:本文研究了施工方法(例如假偏斜,螺旋和对数方法)对单跨偏斜砌体拱的力学性能和承载能力的影响。在分析的离散元方法的基础上,使用三维计算软件进行了仿真。砌体斜拱的每个石头/砖块都由一个不同的块表示。砂浆接头被建模为零厚度界面,该界面可以根据施加到它们的应力的大小和方向来打开和关闭。研究的变量包括构造方法,偏斜角,砌块的大小以及沿拱跨度的活荷载的关键位置。在每个斜拱处,逐渐施加全宽垂直线载荷,直到坍塌为止。从结果分析中发现,对于使用假偏斜法建造的偏斜砌体拱,随着偏斜角的增加,拱顶中各孔之间的滑动增加而破坏荷载减小。但是,对于使用螺旋和对数方法构造的斜砌体拱,随着斜角的增加,破坏荷载也会增加。根据接触摩擦角和构造方法,确定了三种不同的特征失效模式。这些观察为行为提供了新的见解,并为理解斜拱的承载能力和破坏模式提供了建议。

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