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Structural Design of Twin Towers with Vibration Absorbers

机译:具有振动吸收器的双塔的结构设计

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Throughout the ages, the building instability damage events caused by the earthquake are numerous. With the increase of the height and volume of the modern architectural structure, the seismic force of the building gradually increases. In order to avoid severe earthquake disaster, to ensure the stability of high-rise buildings and the life safety of people in the buildings, the seismic design has become a crucial factor in the design and analysis of building structures. In the conventional structural design, the response of the building structure under the action of earthquake is usually reduced by increasing the stiffness of the structure, etc., which is often of high cost and not obvious in practical application, and cannot fundamentally improve the seismic capacity of the structure. On the basis of existing research on super-tall twin towers conjoined construction carries on the theoretical model and physical model is made, at the same time, a kind of vibration absorber with energy dissipation and shock absorption function is designed and applied reasonably. By the movement of additional weights, the vibration amplitude of the main structure of the building can be slowed down to a certain extent, and the use of shaking table test on vibration absorber which is used to high-rise contour analysis and verification of the bearing capacity of the twin towers conjoined buildings model, so as to improve the seismic behavior of the building itself. It makes a certain contribution to put forward the innovative and practical research and design ideas in the seismic design of super high-rise buildings with twin towers.
机译:整个年龄段,地震造成的稳定损害事件众多。随着现代建筑结构的高度和体积的增加,建筑物的地震力逐渐增加。为了避免严重地震灾害,确保高层建筑的稳定和建筑物中人的生命安全,地震设计已成为建筑结构的设计和分析的关键因素。在传统的结构设计中,通过增加结构的刚度等,通常降低了地震作用下的建筑物结构的响应,这通常是实际应用中的高成本,并且在实际应用中不明显,并且无法从根本上改善地震结构的能力。在现有的超大型双塔的研究基础上进行了理论模型和物理模型的施工,同时,具有能量耗散和减震功能的振动吸收器合理设计和应用。通过额外的重量的运动,建筑物的主要结构的振动幅度可以减慢一定程度,并且在振动吸收器上使用振动台测试,其用于高层轮廓分析和轴承验证双塔的能力连体建筑模型,从而提高建筑本身的地震行为。提出了一定的贡献,提出了具有双塔的超高层建筑地震设计中的创新和实践研究和设计思路。

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