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The application of a new structural control concept for tall building with large podium structure

机译:一种新的结构控制概念在具有大型裙楼结构的高层建筑中的应用

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The concept of coupled building control has been proposed and investigated extensively but mainly limited to theoretical and experimental studies concerning two parallel adjacent buildings. As a further step, this paper extends the applicable scope of the control concept and presents an investigation on its engineering application to a tall building (60 stories of total height of 333 m) and its surrounding large podium structure (10 stories of total height of 49 m) in order to, principally, reduce seismic torsional response of the podium structure, which results from large eccentricity of stiffness and mass distribution in podium structures. First the building is briefly described, and a macroscopic finite element model for this structure is introduced. Subsequently, the analytical model and performance test of the linking viscous fluid dampers are introduced simply. Next, seismic responses of the building subjected to two levels of earthquake with different return periods are analyzed comprehensively. The results show that using linking dampers can effectively reduce torsional seismic response of the podium structure. In addition, seismic performance of the main building can be also enhanced but in different ways. Finally, 40 linking viscous fluid dampers with maximum capacity of 600 kN for each damper were selected to connect the podium structure to the main building, and the construction of the building was completed already and put into use in the year of 2005.
机译:已经提出并广泛地研究了建筑物耦合控制的概念,但主要限于关于两个平行相邻建筑物的理论和实验研究。作为进一步的步骤,本文扩展了控制概念的适用范围,并对其在高层建筑(60层,总高度为333 m的建筑物)及其周围的大型讲台结构(10层,总高度的故事)的工程应用进行了研究。 49 m),主要是为了减少裙楼结构的地震扭转响应,这是由于裙楼结构的刚度和质量分布较大而引起的。首先简要描述建筑物,然后介绍该结构的宏观有限元模型。随后,简单介绍了连接粘性流体阻尼器的分析模型和性能测试。接下来,综合分析了建筑物在不同返回周期下经历两次地震的地震响应。结果表明,采用连杆阻尼器可以有效地减小平台结构的扭转地震响应。此外,主建筑的抗震性能也可以通过不同的方式得到提高。最后,选择了40个连接式粘性流体阻尼器,每个阻尼器的最大容量为600 kN,以将裙楼结构连接到主体建筑物,该建筑物的建设已经完成并于2005年投入使用。

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