The Influence of Various Types of Bracing on Force Distribution in Braced Barrel Vaults

IF 0.6 Q4 ENGINEERING, CIVIL Civil and Environmental Engineering Reports Pub Date : 2022-09-01 DOI:10.2478/ceer-2022-0027
Jędrzej Chrust, M. Chybiński, Piotr Garasz, Zdzisław Kurzawa, Wojciech Piórecki, Ł. Polus, Weronika Stajkowska
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Abstract

Abstract In this paper the authors analysed four single-layered braced barrel vaults with different types of bracing. Each braced barrel vault covered the area of 20 m × 28 m and was made from steel hollow sections. The static-strength analyses of the structures were conducted using the Autodesk Robot Structural Analysis program, taking into account self-weight, glass cover, snow load and wind load. In the case of wind load, wind pressure perpendicular to the longitudinal wall was determined in accordance with the EN 1991-1- 4 standard. However, the standard does not specify how to calculate wind pressure perpendicular to a gable wall for braced barrel vaults. For this reason, two variants suggested by the authors of this article were analysed for this direction of the wind. The influence of the type of bracing on force distribution in a braced barrel vault and on material consumption was analysed. The impact of the gable wall boundary conditions on force distribution in the braced barrel vault was also evaluated. Both the bracing type and the boundary conditions had an impact on the force distribution in the analysed braced barrel vault.
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不同支撑形式对支撑筒形拱顶受力分布的影响
摘要本文分析了四种不同支撑形式的单层支撑筒形拱顶。每个支撑筒形拱顶的面积为20 m×28 m,由空心钢制成。结构的静强度分析是使用Autodesk Robot Structural Analysis程序进行的,考虑了自重、玻璃罩、雪荷载和风荷载。在风荷载的情况下,垂直于纵向墙的风压是根据EN 1991-1-4标准确定的。但是,该标准没有规定如何计算支撑筒形拱顶垂直于山墙的风压。因此,本文作者针对这一风向分析了两种变体。分析了支撑形式对筒形拱顶受力分布和材料消耗的影响。还评估了山墙边界条件对支撑筒形拱顶受力分布的影响。支撑类型和边界条件都对所分析的支撑筒形拱顶的受力分布产生影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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自引率
14.30%
发文量
40
审稿时长
52 weeks
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