伊斯法罕塞尔柱式宣礼塔的建造技术研究,重点关注其几何砖纹

IF 1.1 Q4 MECHANICS Curved and Layered Structures Pub Date : 2021-10-18 DOI:10.1515/cls-2022-0002
Ali Safaeianpour, N. Valibeig
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引用次数: 2

摘要

使用装饰元素是伊朗建筑不可分割的一个方面。许多建筑物的建筑装饰,包括尖塔,都代表了建筑师的手艺。因此,伊斯法罕的宣礼塔有不同类型的砖砌装饰,如90度人字形(Khofteh-Rasteh),篮织bond (Hasiri)和其他复杂类型。此外,最高的尖塔通常被建造成一个截锥形,以减少其整体重量,改善其抗风和侧向力的稳定性。因此,在保持砖砌图案的几何完整性的同时,所有的装饰都应用在一个缩小的表面上。然而,这些结构的施工过程的实际解决方案尚未得到充分的研究。因此,本研究旨在探讨尖塔上的砖砌投影方法,并分析不同高度下尖塔图案的变化。因此,在调查了伊斯法罕选定的单个尖塔之后,使用绘图软件应用程序对它们进行建模,然后进行分析。
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A study on the construction technology of the Seljuk minarets in Isfahan with focus on their geometric brick pattern
Abstract Using decorative elements is an inseparable aspect of Iranian architecture. Architectural ornaments in many buildings, including the minarets, represent the architect’s craftsmanship. As such, the minarets in Isfahan have different types of brickwork ornamentations, such as 90-degree herringbone (Khofteh-Rasteh), basket weave bond (Hasiri), and other complex types. Additionally, the highest minarets are usually constructed in a truncated conical shape to reduce their overall weight and ameliorate their stability against the wind, and lateral forces. Therefore, while the geometric integrity of brickwork patterns should be maintained, all the ornamentations are applied on a shrinking surface area. However, the practical solutions for the construction processes in these structures haven’t been sufficiently investigated. Hence, this study aims to explore the methods of brickwork projection on the minarets and analyse the changes in girih patterns at different height levels. Accordingly, after surveying the selected single minarets in Isfahan, they were modeled using drafting software applications and then analysed.
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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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