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The effect of skew angle on the mechanical behaviour of masonry arches

机译:斜角对砌体拱的力学性能的影响

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This paper presents the development of a three dimensional computational model, based on the Discrete Element Method (DEM), which was used to investigate the effect of the angle of skew on the load carrying capacity of twenty-eight different in geometry single span stone masonry arches. Each stone of the arch was represented as 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 nvestigated were the arch span, the span:rise ratio and the skew angle. At each arch, a full width vertical ine load was applied incrementally to the extrados at quarter span until collapse. At each load increment, the crack development and vertical deflection profile was recorded. The results compared with similar "square" (or regular) arches. From the results analysis, it was found that an increase in the angle of skew will increase the twisting behaviour of the arch and will eventually cause failure to occur at a lower oad. Also, the effect of the angle of skew on the ultimate load that the masonry arch can carry is more significant for segmental arches than circular one.
机译:本文介绍了基于离散元方法(DEM)的三维计算模型的开发,该模型用于研究偏斜角对几何单跨砌石中28种不同承载能力的影响拱门。拱门的每块石头都被表示为一个单独的块。砂浆接头建模为零厚度界面,可以根据施加到其上的应力的大小和方向打开和关闭。研究的变量是拱跨度,跨度:上升比和偏斜角。在每个拱形处,在四分之一跨度处将全宽垂直正弦荷载逐渐施加到拱门上,直到坍塌为止。在每个载荷增量下,记录裂纹扩展和垂直变形曲线。结果与类似的“正方形”(或常规)拱形相比。从结果分析中发现,倾斜角的增加将增加拱形件的扭曲行为,并最终导致较低燕麦含量的失效。同样,对于拱形拱来说,倾斜角度对砌体拱可以承受的最终荷载的影响比圆形拱更为显着。

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