The effect of vertical aspect ratio of RC Structures on the Performance Levels using Pushover Analysis

Q4 Engineering Disaster Advances Pub Date : 2023-06-15 DOI:10.25303/1607da042049
W. Mushina, H. Alewi, J. Mushina
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Abstract

The effect of earthquakes in the present date had special attention in the evaluating process of the damage degree or collapse in the structures. It needs clear indications for evaluating the adequacy for existing buildings. To reduce the severe damage and stability loss, more preparations are required for safe buildings. During the earthquake, the building behaviors critically depend on building size, shape and the geometry. The pushover method is classified as nonlinear type and it is becoming a common tool used to evaluate the seismic performance for new and existing structures. The study shows the effect of building height to plan length ratio (height/length) on the base shear force, displacement, performance point and plastic hinge formation. Four buildings were compared with same seismic conditions Ca and Cv equal to 0.4, the plans of vertical aspect ratio of 0.5,1, 1.5 and 2 with plan dimension 18 m × 18 m having same area of 324 m2. The results show a proportional value of displacement against height, while the base shear force has nearly close values for different height with small increments. The behaviors of hinges mean that the building height increments make the building be more flexible and had more energy absorption.
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用推覆分析研究钢筋混凝土结构竖向纵横比对性能水平的影响
目前,在结构损伤程度或倒塌程度的评估过程中,地震的影响尤为突出。它需要明确的指示来评估现有建筑的适当性。为了减少严重的破坏和稳定性损失,需要为安全建筑做更多的准备。在地震期间,建筑物的行为主要取决于建筑物的大小、形状和几何形状。pushover方法被归类为非线性类型,它正成为评估新结构和现有结构抗震性能的常用工具。研究表明,建筑高度与平面长度之比(高度/长度)对基底剪力、位移、性能点和塑性铰形成的影响。对四栋建筑在相同地震条件下进行了比较,Ca和Cv分别为0.4,竖向纵横比分别为0.5、1、1.5和2,平面尺寸为18m×18m,面积为324m2。结果表明,位移与高度成正比,而基底剪力在不同高度下几乎接近,增量较小。铰链的行为意味着建筑高度的增加使建筑更加灵活,并具有更多的能量吸收。
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来源期刊
Disaster Advances
Disaster Advances 地学-地球科学综合
CiteScore
0.70
自引率
0.00%
发文量
57
审稿时长
3.5 months
期刊介绍: Information not localized
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