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Cost minimization of columns and elevator shafts in tall buildings

机译:降低高层建筑中的立柱和电梯井的成本

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Column-like components such as elevator shafts, stairwells and columns have significant impact upon the structural integrity as well as the cost of tall buildings. The main costs include that of concrete(furnish and place), steel reinforcement (furnish and place bars, splices, dowels and ties) and formwork (furnish and place). For typical columns designed economically according to ACI Code, the concrete contributes around 40% of the cost of square(55% of circular) columns and the corresponding contributions of reinforcement and formwork are around 25% for square(25% for circular) columns and around 35% for square(20% for circular) columns respectively. While the above data is considered reasonable for the United States and Canada, it is expected to vary in other countries where the relative labour and material costs are likely to be different. Due to the large number of combinations of column sizes, reinforcements and concrete compressive strengths, it is beneficial to choose a design that minimizes the cost while meeting the building code requirement. In this paper, an efficient numerical technique is described for the analysis and design of column-like reinforced concrete components under load and biaxial bending. When combined with the costs of labour and material, the procedure yields design and cost curves which enable the engineer to arrive at an economical design. Based on available data, it is shown that for a given concrete compressive strength, the cost/unit concrete area of the column behaves as a linear function of the square root of the vertical reinforcement. It was also observed that for various shapes of columns, the lowest cost corresponds to a vertical steel ratio in the neighbourhood of 1%. Cost optimization examples are given for square, rectangular and circular columns in addition to an elevator shaft in a tall building.
机译:诸如电梯井,楼梯间和立柱之类的柱状部件对结构完整性以及高层建筑的成本具有重大影响。主要成本包括混凝土(装饰物和放置物),钢筋(装饰物和放置条,接头,销钉和扎带)和模板(装饰物和放置物)的成本。对于根据ACI规范经济设计的典型立柱,混凝土占方形立柱成本的40%(圆形为55%),而钢筋和模板的相应贡献约为方形立柱的25%(圆形为25%),分别约为方形柱的35%(圆形柱的20%)。尽管上述数据在美国和加拿大被认为是合理的,但在相对劳动和材料成本可能不同的其他国家中,预期该数据也会有所不同。由于柱尺寸,钢筋和混凝土抗压强度的大量组合,因此选择一种能够在满足建筑规范要求的同时将成本降至最低的设计是有益的。在本文中,描述了一种有效的数值技术,用于在荷载和双轴弯曲下分析和设计圆柱状钢筋混凝土构件。当与人工和材料成本结合在一起时,该过程将得出设计和成本曲线,使工程师能够进行经济的设计。根据现有数据,可以看出,对于给定的混凝土抗压强度,立柱的成本/单位混凝土面积表现为垂直钢筋的平方根的线性函数。还观察到,对于各种形状的圆柱,最低的成本对应于大约1%的垂直钢比率。除了高层建筑中的电梯竖井外,还针对正方形,矩形和圆形圆柱提供了成本优化示例。

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