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Development of a vibration based method to update axial shortening of vertical load bearing elements in reinforced concrete buildings

机译:开发基于振动的方法来更新钢筋混凝土建筑物中垂直承载元件的轴向缩短

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Axial shortening in reinforced concrete members in a building is usually predicted at design stage and updated during construction in order to mitigate adverse effects of differential axial shortening between members. This paper presents a novel procedure which uses vibration characteristics to update the elastic shortening of members at any stage of construction or service of the building. Towards this end, a relationship between the vibration characteristics using the dynamic stiffness and the elastic shortening using the static stiffness is first established. An approximate method to add the effects of creep and shrinkage, at that stage, is also proposed in the paper. The capability of the proposed procedure is demonstrated through its application to a 64 storey building having out riggers and belt systems.
机译:通常会在设计阶段预测建筑物中钢筋混凝土构件的轴向缩短,并在施工期间进行更新,以减轻构件之间的差异性轴向缩短的不利影响。本文提出了一种新颖的方法,该方法利用振动特性在建筑物的任何建造或使用阶段更新构件的弹性缩短。为此,首先建立利用动态刚度的振动特性与利用静态刚度的弹性缩短之间的关系。本文还提出了在该阶段添加蠕变和收缩影响的近似方法。拟议程序的功能通过将其应用到一栋没有索具和皮带系统的64层建筑中得到证明。

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