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Moment-less arches for reduced stress state. Comparisons with conventional arch forms

机译:减少压力状态的少变拱门。 与传统拱形形成的比较

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This paper presents a study of two-pin arches of constant cross-section that are moment-less under statistically prevalent (permanent) load. The arches are defined by analytical form-finding previously reported in Lewis (2016) [1]. The work provides guidance regarding the solution process, and expressions for reactions and axial forces. New analytical results include the derivation of the arch length, and a method for finding co-ordinates of individual arch segments in pre-fabricated construction. The accuracy of the shape prediction for inextensible moment-less arches is good, compared to the results from elastic models. Case studies report on medium and large-span arches, with the latter resembling the iconic Hoover Dam arch. Comparative studies of the moment-less and conventional arch forms (mostly of parabolic configuration), are carried out using permanent and variable loads. Additionally, the Hoover Dam arch is analysed for a discrete load transfer from the deck. Circular arches are analysed for the permanent load only, and are shown to be extremely inefficient in load resistance. Moment-less arches are found to provide a minimal stress response to loading and require least amount of material - a feature observed in natural objects. These characteristics are important from a durability perspective - a key concern for our future infrastructure. Crown Copyright (C) 2021 Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了恒定横截面的两引脚拱,在统计上普遍(永久性)负载下的时刻。拱门由先前在刘易斯(2016年)[1]中报告的分析形式定义。该作品提供了关于解决方案过程的指导,以及用于反应和轴向力的表达。新的分析结果包括拱长的推导,以及在预制造的建筑中查找单个拱形段的协调的方法。与弹性模型的结果相比,对较少的较大力矩拱门的形状预测的精度是好的。案例研究报告中型和大跨度拱门,后者类似于标志性胡佛大坝拱门。使用永久性和可变载荷进行对较少的较短型和常规弓形形成(大多数抛物线配置)的比较研究。此外,分析了胡佛坝拱的离散载荷从甲板传输。仅针对永久载荷分析圆形拱形,并且被认为是负载电阻的极低效率。发现较少时刻的拱迹提供对装载的最小应力响应,并且需要最少的材料 - 在天然物体中观察到的特征。这些特征从耐久性角度来看很重要 - 这是我们未来基础设施的关键问题。皇冠版权(c)2021由elestvier有限公司出版。保留所有权利。

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