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首页> 外文期刊>International Journal of Solids and Structures >Numerical analysis of 3D dry-stone masonry structures by combined finite-discrete element method
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Numerical analysis of 3D dry-stone masonry structures by combined finite-discrete element method

机译:组合有限离散元素方法3D干石砌体结构的数值分析

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摘要

The evaluation of damage mechanism and the failure of dry-stone masonry structures subjected to seismic load is one of the most important aspects of seismic assessment of existing masonry buildings. Discontinuities between the blocks, their mechanical interaction, large displacement and rotation are the main causes of degradation and collapse of these structures. This paper presents the application of the combined finite-discrete element method (FDEM) in the analysis of 3D dry-stone masonry structures which is able to capture such mechanisms and structural damage both at joint and at block level. Moreover, the proposed approach includes friction forces based on Coulomb-type of law accounting for friction effects across dry joints and open cracks, in order to correctly simulate the mechanical behaviour of dry-stone masonry. The capabilities of presented approach are demonstrated in a series of numerical tests, starting with sliding and rocking of single blocks, examination of dry joints shear behaviour, walls subjected to in-plane and out-of-plane load, and finally the simulation of the simple spatial stone masonry structure. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对受地震载荷进行抗石砌体结构的损伤机制和干石砌体结构的失效是现有砌体建筑地震评估的最重要方面之一。块之间的不连续性,它们的机械相互作用,大的位移和旋转是这些结构的劣化和崩溃的主要原因。本文介绍了组合有限离散元素法(FDEM)在分析3D干石砌体结构中,该结构能够在关节和块水平上捕获这种机构和结构损伤。此外,所提出的方法包括基于库仑类型的摩擦力,该法律核对干接头和开放裂缝的摩擦效应,以便正确模拟干石砌体的机械行为。呈现方法的能力在一系列数值测试中,从单块滑动和摇摆开始,检测干接头剪切行为,墙壁经受面内和平面负载,最后模拟简单的空间石砌体结构。 (c)2017 Elsevier Ltd.保留所有权利。

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