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首页> 外文期刊>The Structural Design of Tall and Special Buildings >COLUMN SHORTENING OF CONCRETE CORES AND COMPOSITE COLUMNS IN A TALL BUILDING
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COLUMN SHORTENING OF CONCRETE CORES AND COMPOSITE COLUMNS IN A TALL BUILDING

机译:高层建筑中混凝土和复合材料柱的收缩

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摘要

The effect of column shortening is a major consideration in the design and construction of tall buildings, especially in concrete and composite structural systems. The method presented in the PCA report is the most widely used for the analysis of column shortening, but results can be very different depending on the time function of shrinkage suggested by ACI, CEB-FIP and PCA. To determine which method is most appropriate, this paper presents predicted and measured shortenings of two reinforced concrete core walls and four steel-embedded concrete columns in a 69-storey building. The results show that the measured strains of both core walls and composite columns are more consistent with calculated strains using the shrinkage time functions of CEB-FIP and PCA rather than of ACI. The results also indicate that further studies are needed on the effect of high steel ratio on the development of column shortening when composite columns of a building have much higher steel ratios than usual.
机译:缩短圆柱的效果是高层建筑设计和施工中的主要考虑因素,尤其是在混凝土和复合结构系统中。 PCA报告中介绍的方法是最广泛用于色谱柱缩短的分析方法,但结果可能会有所不同,具体取决于ACI,CEB-FIP和PCA建议的收缩时间函数。为了确定哪种方法最合适,本文介绍了预测和实测的69层建筑中两个钢筋混凝土芯墙和四个钢嵌入式混凝土柱的缩短量。结果表明,使用CEB-FIP和PCA而不是ACI的收缩时间函数,测得的核心壁和复合柱的应变与计算应变更加一致。结果还表明,当建筑物的复合柱的钢比比通常高得多时,需要进一步研究高钢比对缩短柱的发展的影响。

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