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Analytical and numerical analysis on the collapse modes of least-thickness circular masonry arches at decreasing friction

机译:最小厚度圆形砌体拱在减小摩擦作用下的倒塌分析与数值分析

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Departing from pioneering Heyman modern rational investigations on the purely-rotational collapse mode of least-thickness circular masonry arches, the hypothesis that joint friction shall be high enough to prevent inter-block sliding is released. The influence of a reducing Coulomb friction coefficient on the collapse modes of the arch is explicitly inspected, both analytically and numerically, by tracing the appearance of purely-rotational, mixed sliding-rotational and purely-sliding modes. A?classical doubly built-in, symmetric, complete semi-circular arch, with radial joints, under self-weight is specifically considered, for a main illustration. The characteristic values of the friction coefficient that limit the ranges associated to each collapse mode are first analytically derived and then numerically identified, with self-consistent outcomes. Explicit analytical representations are provided to estimate the geometric parameters that define the limit equilibrium states of the arch, specifically the minimum thickness to radius ratio, at reducing friction. These formulas, starting from the analysis of classical Heymanian instance of purely-rotational collapse, make new explicit reference to the mixed sliding-rotational collapse mode, arising within a narrow range of limited friction coefficients (or friction angles). The obtained results are consistently compared to existing numerical ones from the competent literature.
机译:不同于开创性的Heyman关于最小厚度圆形砌体拱的纯旋转倒塌模式的现代理性研究,假说关节摩擦力应足够高以防止块间滑动。通过追踪纯旋转,混合滑动-旋转和纯滑动模式的出现,从分析和数值上明确地检查了减小的库仑摩擦系数对拱倒塌模式的影响。主要说明是专门考虑在自重作用下具有径向接头的经典双内置对称完整半圆拱​​。限制与每个崩溃模式相关的范围的摩擦系数的特征值首先进行分析得出,然后通过数值确定,并得出自洽的结果。提供了明确的分析表示,以估计定义拱的极限平衡状态的几何参数,尤其是减小摩擦时的最小厚度与半径之比。这些公式从对纯旋转崩溃的经典Heymanian实例的分析开始,为有限滑动系数(或摩擦角)的狭窄范围内出现的混合滑动-旋转崩溃模式提供了新的明确参考。将获得的结果与现有文献中的现有数值进行比较。

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