确保结构完整性:高层混凝土建筑的垂直缩短评估

CivilEng Pub Date : 2024-02-07 DOI:10.3390/civileng5010010
Esmerald Filaj, Enio Deneko, R. Moezzi, M. Gheibi, A. Annuk
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引用次数: 0

摘要

垂直缩短是混凝土结构固有的一种现象,在建筑质量和安全方面起着关键作用,尤其是在高层钢筋混凝土建筑中。这种行为与混凝土随时间变化的特性有着内在联系,包括徐变和收缩。忽视这些方面,尤其是在非均匀分布的情况下,会引发各种结构问题,包括分区窘迫、超载和水平构件的潜在开裂。本文深入研究了影响垂直缩短的主要因素,并提出了一种严格的评估方法,将蠕变和收缩作为关键参数。调查采用了两个说明性案例研究:第一个案例围绕一栋 15 层的钢筋混凝土建筑展开,该建筑采用单柱支撑不同楼层的支流区域,作为校准案例;第二个案例包括一栋采用双系统的 30 层钢筋混凝土结构,提供了适用于三维结构的更广阔视角。我们进行了一系列分析,考虑了混凝土的线性和非线性行为以及施工阶段的影响。我们的研究结果表明,垂直缩短与建筑物的高度成正比,与混凝土强度、纵向配筋比、构件尺寸、体积表面比、施加荷载时的结构龄期和相对湿度成反比。因此,精确评估差异缩短效应至关重要。建议使用分阶段施工分析和随时间变化的效应作为评估垂直缩短效应的最合适方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ensuring Structural Integrity: An Evaluation of Vertical Shortening in Tall Concrete Buildings
Vertical shortening, a phenomenon inherent to concrete structures, plays a key role in the quality and safety of construction, particularly in tall reinforced concrete buildings. This behavior is intrinsically linked to the time-dependent properties of concrete, encompassing both creep and shrinkage. Neglecting these aspects, especially when non-uniformly distributed, can give rise to various structural issues, including partition distress, overloading, and potential cracking in horizontal elements. This paper delves into the principal factors influencing vertical shortening and presents a rigorous approach to their evaluation, treating creep and shrinkage as critical parameters. The investigation employs two illustrative case studies: the first revolves around a 15-story reinforced concrete building with single columns supporting tributary areas at various levels, acting as a calibration case; the second encompasses a 30-story reinforced concrete structure employing a dual system, providing a broader perspective applicable to three-dimensional structures. A diverse array of analyses is conducted, incorporating considerations for concrete’s linear and nonlinear behavior as well as the impact of construction stages. Our findings reveal that vertical shortening is directly proportional to the building’s height and inversely related to concrete strength, longitudinal reinforcement ratios, member dimensions, volume-to-surface ratios, age of the structure upon load application, and relative humidity. Consequently, precise assessments of differential shortening effects are paramount. The utilization of staged construction analysis and time-dependent effects is recommended as the most suitable approach for evaluating vertical shortening effects.
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