ON OPTIMAL DESIGN OF REINFORCED CONCRETE COLUMNS SUBJECTED TO COMBINED BIAXIAL BENDING AND AXIAL LOAD

IF 0.3 Q4 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
A. Ibraheem, Y. Pronina
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引用次数: 0

Abstract

This paper presents a new procedure for designing rectangular columns subjected to combined biaxial bending and axial load. The new procedure is realized within a new comprehensive structural analysis software for building analysis and design. Compared to existing engineering packages, the new program does not require pre-setting the distribution of bars before designing and gives more detailed results: not only the required reinforcement amount, but also a distribution of bars of a certain diameter along the sides of the column section. The program starts by inserting four reinforcement bars into the corners of the column, and checks if this reinforcement bars provide required resistance to the applied loads. If the reinforced concrete column fails to withstand the applied loads, then the program increases the reinforcement by adding new bars and checks required resistance again. This process continues until the reinforced concrete column is able to withstand the applied loads. The proposed procedure is realized within following methods: (I) calculation of the so-called column capacity interaction volume using a large number of interaction curves (usually 24 curves); (II) the elliptical approximation of the column capacity interaction volume (the load contour equation). Within the second method, the program calculates two interaction curves only: the first curve is for an eccentric case in X direction and the second curve is for an eccentric case in Y direction. In both methods, the interaction curves are calculated according to American concrete institute standards. The use of the new procedure within the second method gives results very close to the first method (the most accurate), but it requires much less time for calculation. This is very important when designing large structures with multiple columns.
双轴弯曲和轴向联合荷载作用下钢筋混凝土柱的优化设计
本文提出了一种设计双轴弯曲和轴向联合荷载作用下矩形柱的新方法。新的程序是在一个新的综合结构分析软件中实现的,用于建筑分析和设计。与现有的工程方案相比,新方案不需要在设计前预先设置筋的分布,并且给出了更详细的结果:不仅需要配筋量,而且还提供了沿柱截面两侧一定直径的筋的分布。该程序首先插入四根钢筋到柱子的角落,并检查这些钢筋是否提供了所需的抗载荷能力。如果钢筋混凝土柱无法承受所施加的载荷,则该程序通过添加新钢筋来增加钢筋,并再次检查所需的阻力。这个过程一直持续到钢筋混凝土柱能够承受施加的荷载。所提出的程序通过以下方法实现:(1)利用大量相互作用曲线(通常为24条曲线)计算所谓的柱容量相互作用体积;(二)柱容量相互作用体积的椭圆近似(荷载轮廓方程)。在第二种方法中,程序只计算两条相互作用曲线:第一条曲线用于X方向的偏心情况,第二条曲线用于Y方向的偏心情况。两种方法的相互作用曲线均按美国混凝土协会标准计算。在第二种方法中使用新程序的结果与第一种方法非常接近(最精确),但它需要的计算时间要少得多。这在设计多柱的大型结构时非常重要。
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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来源期刊
CiteScore
1.30
自引率
50.00%
发文量
10
期刊介绍: The journal is the prime outlet for the findings of scientists from the Faculty of applied mathematics and control processes of St. Petersburg State University. It publishes original contributions in all areas of applied mathematics, computer science and control. Vestnik St. Petersburg University: Applied Mathematics. Computer Science. Control Processes features articles that cover the major areas of applied mathematics, computer science and control.
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