混凝土环中厚度变化和横向应力的实验测量和数值预测

IF 1.1 Q4 MECHANICS
Djopkop Kouanang Landry, Bodol Momha Merlin, Amba Jean Chills, Nkongho Anyi Joseph, Fongho Eric, Zoa Ambassa, Nzengwa Robert
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引用次数: 1

摘要

摘要混凝土壳体广泛应用于土木工程中。由于混凝土的可塑性,圆顶、桥梁沉箱、埋入式或抬高式水库以及拱坝等特殊结构都是用混凝土建造的。在这项研究中,我们对处于弹性阶段的混凝土环在短期机械载荷期间的厚度变化和由此产生的应变特别感兴趣。一方面,通过使用二维壳体模型实现特定的有限元族(每个顶点节点四个自由度),对穿过厚度的横向应力进行数值计算,该模型考虑了厚度变化和横向变形。另一方面,为了验证数值预测,安装了一个实验装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental measurement and numerical predictions of thickness variation and transverse stresses in a concrete ring
Abstract Concrete shells are widespread in civil engineering constructions. Because of the moldability of concrete, special structures such as domes, bridge caissons, buried or raised reservoirs, and arch dams are built with concrete. In this study, we are particularly interested in the variation of the thickness and the resulting strains during a short-term mechanical loading of a concrete ring in its elastic phase. On the one hand, transverse stresses through the thickness are calculated numerically by implementing a particular family of finite elements (four degrees of freedom per summit node) with a two-dimensional shell model, which accounts for thickness variations and transverse distortions. On the other hand, an experimental device was mounted in order to validate numerical predictions.
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来源期刊
CiteScore
2.60
自引率
13.30%
发文量
25
审稿时长
14 weeks
期刊介绍: The aim of Curved and Layered Structures is to become a premier source of knowledge and a worldwide-recognized platform of research and knowledge exchange for scientists of different disciplinary origins and backgrounds (e.g., civil, mechanical, marine, aerospace engineers and architects). The journal publishes research papers from a broad range of topics and approaches including structural mechanics, computational mechanics, engineering structures, architectural design, wind engineering, aerospace engineering, naval engineering, structural stability, structural dynamics, structural stability/reliability, experimental modeling and smart structures. Therefore, the Journal accepts both theoretical and applied contributions in all subfields of structural mechanics as long as they contribute in a broad sense to the core theme.
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