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Frequency Response of Flat Post-tensioned Concrete Floors: Frequency Coefficient-Root Function Method

机译:平板后张法混凝土楼板的频率响应:频率系数-根函数法

摘要

Vibration is a serviceability limit-state for the design of suspended floor systems in buildings that is not well understood by many structural engineers, and is often ignored. Dynamic response is an important design consideration for slender, two-way floors, particularly for those of post-tensioned concrete construction. At present, there are no reliable design guidelines that deal with this problem. This paper describes a research program, which will enable the development of much needed design guidance on the dynamic behavior of suspended post-tensioned concrete floors. Results from this parametric investigation have led to the preliminary development of new approach for predicting the natural frequency of flat, post-tensioned concrete floor structures. This new method has been named, the Frequency Coefficient-Root Function (FCRF) method. The FCRF method is a revolutionary and convenient tool structural engineers can use to design for the vibration serviceability limit-stateudof cast-insitu, post-tensioned concrete floor systems.
机译:振动是建筑物中悬浮地板系统设计的可使用性极限状态,许多结构工程师对此并不了解,并且经常被忽略。对于细长的双向地板,尤其是后张拉混凝土结构的地板,动态响应是重要的设计考虑因素。当前,没有可靠的设计准则可以解决此问题。本文介绍了一个研究计划,该计划将使有关悬架后张拉的混凝土楼板动力特性的迫切设计指南的开发成为可能。该参数研究的结果导致了新方法的初步开发,该新方法可预测平坦,后张预应力混凝土楼板结构的固有频率。这种新方法已被命名为频率系数根函数(FCRF)方法。 FCRF方法是一种革命性且方便的工具,结构工程师可以使用它来设计用于现浇后张预应力混凝土楼板系统的振动可使用性极限状态 ud。

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