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DISCRETE FINITE ELEMENT METHOD APPLICATION FOR ANALYSIS OF UNREINFORCED MASONRY UNDERGROUND STRUCTURES

机译:离散有限元方法应用于分析未原始的砌体地下结构

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Unreinforced masonry underground structures are comprised of a finite number of distinct interacting blocks that have length scales relatively comparable with the underground openings of interest. Therefore, they are ideal candidates for modeling as discrete systems instead of as continuous systems. The discrete finite element method (DFEM) developed by the author to model discontinuous media consisting of blocks of arbitrary shapes is adopted for the static analysis of unreinforced masonry underground structures. The developed DFEM is based on the principles of the finite element method incorporating contact elements. DFEM considers blocks as sub-domains and represents them by solid elements. Contact elements, which are far superior to joint or interface elements, are used to model block interactions such as sliding or separation. In this study, the DFEM is briefly reviewed; then, through some illustrative examples, the applicability of the DFEM to the analysis of unreinforced masonry underground structures is examined and discussed. It is shown that the DFEM provides an efficient tool for researchers and practical engineers in designing, analyzing, and studying behavior of unreinforced masonry underground structures under static loading.
机译:未充成的砌体地下结构包括有限数量的不同的相互作用块,其具有与感兴趣的地下开口相对相当的长度尺度。因此,它们是用于模拟作为离散系统而不是连续系统的理想候选者。由作者开发的离散有限元方法(DFEM)用于模型不连续介质,用于模拟由任意形状块组成的静止分析,对未原始的砌体地下结构进行静态分析。开发的DFEM基于包含接触元件的有限元方法的原理。 dfem将块视为子域,并表示通过纯元素。远远优于关节或接口元件的接触元件用于模拟块相互作用,例如滑动或分离。在本研究中,简要审查DFEM;然后,通过一些说明性示例,检查和讨论了DFEM对未原始的砌体地下结构的分析的适用性。结果表明,DFEM为研究人员和实践工程师提供了一种有效的工具,用于在静载荷下设计,分析和研究未原始的砌体地下结构的不良砌体地下结构的行为。

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