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首页> 外文期刊>The Structural Design of Tall and Special Buildings >Evaluation of creep and shrinkage effects in composite tall buildings
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Evaluation of creep and shrinkage effects in composite tall buildings

机译:评估复合高层建筑的蠕变和收缩效应

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摘要

In a composite tall building, adjacent vertical members undergo differential time-dependent deformations due to creep and shrinkage. Highly elaborate, complex and requiring large computational effort procedure, utilizing stress transfer method, age-adjusted effective modulus method (AEMM) is available to evaluate creep and shrinkage effects in a composite building.nnRecently, a simple procedure and requiring lesser computational effort, utilizing AEMM has been presented for concrete and composite buildings. Studies comparing deflections and axial forces in reinforced concrete frames with those obtained from the procedure available in literature (using stress transfer method, RCM) have been reported.nnIn this paper, suitability of the above procedures for evaluation of creep and shrinkage effects in composite buildings has been demonstrated. Studies are reported for typical creep shrinkage parameters. It is shown that the error to determine axial forces from AP(AEMM) is small for composite frame–shear wall systems with very low beam stiffness (Ib = Ic/100). Use of CP(AEMM) is warranted for the frame–shear wall systems even with low beam stiffness (Ib = Ic/20). Copyright © 2010 John Wiley & Sons, Ltd.
机译:在复合高层建筑中,相邻的垂直构件由于蠕变和收缩而经历不同的时间相关变形。高度复杂,复杂且需要大量计算工作量的程序,利用应力传递法,年龄调整后的有效模量法(AEMM)可以评估复合建筑中的蠕变和收缩效果。 AEMM已被提出用于混凝土和复合建筑。已经进行了将钢筋混凝土框架的挠度和轴向力与文献中的方法(使用应力传递方法,RCM)进行比较的研究。nn本文针对上述方法对复合建筑的蠕变和收缩效应进行评估的适用性已经证明。研究报告了典型的蠕变收缩参数。结果表明,对于梁刚度很低(Ib = Ic / 100)的复合框架-剪力墙系统,从AP(AEMM)确定轴向力的误差很小。即使梁刚度低(Ib = Ic / 20),也要在框架剪力墙系统中使用CP(AEMM)。版权所有©2010 John Wiley&Sons,Ltd.

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    1 Department of Structural Engineering, Mugniram Bangur Memorial Engineering College, Jai Narain Vyas University,Jodhpur, India2 Department of Civil Engineering, College of Technology & Engineering, Maharana Pratap University of Agricultureand Technology, Udaipur, Rajasthan, India;

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