Currently the building is being developed in a variety of formats. By used to form the appropriate building to get out. The design of these buildings must take into account the impact that will occur due to various factors. Such as force due to gravity Which is caused by the weight of the building. And load The lateral force acting on a body building such as wind and earthquake loads and so on. But when the height of the building increases and a more erect. The ability to resist Lateral force is reduced. Make the building stable decline. From the above reasons, The navigation system Outrigger strap and truss (Outrigger and belt truss system), a braided steel shear walls extending from the center of the building to the outside pole. And hold each pole together. Which makes building frames have greater stiffness of the floor. Currently, the study of the behavior. Outrigger system of trusses and tie (Outrigger and belt truss system) that has helped to reduce the lateral forces that occur. With the high-rise building This research will study the introduction of the system, Outrigger and trusses band (Outrigger and belt truss system) used on the building efficiently. It analyzes the position and level of Outrigger trusses and tie. Most suitable for 50-storey concrete building with shear wall in the middle of the building and the outside pole. Under a fixed base simulator. By analyzing the behavior and response of structures Outrigger trusses and tie. Due to gravity and lateral loads. Simulation of the building for use by the program ETABS. Outrigger system and trusses band (Outrigger and belt truss system) to achieve maximum efficiency.
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