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Optimal Wind Resistant Performance-Based Design of Tall Buildings

机译:基于最佳抗风性能的高层建筑设计

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The world is experiencing an upsurge of tall building construction. Recent trends toward developing increasingly taller and irregularly-shaped complex buildings imply that these structures are potentially more sensitive to wind excitation. Structural engineers are facing the challenge of striving for the most efficient and economical design solution while ensuring that the final design of a building must be serviceable for its intended function, habitable for its occupants and safe over its design life-time. Performance-based design (PBD) is a modern approach to the design of building structures. While PBD is still under active development primarily in seismic engineering, the concept of performance-based wind engineering should be extended to the design of wind sensitive tall buildings. This paper presents a computer based technique for optimal wind resistant performance-based design of tall buildings under various levels of wind hazards. Once the wind-induced loads and responses of a tall building structure under multiple levels of wind events are accurately determined, the optimal performance-based design problem can then be explicitly formulated. A rigorously derived Optimality Criteria (OC) method is to be developed to solve the optimal structural solution satisfying the strength (life-safety), drift (damage) and acceleration (occupant comfort) design performance constraints. The effectiveness and practicality of the optimal design technique are illustrated through an actual 40-story building with complex 3D mode shapes.
机译:世界正在经历高楼大厦的热潮。发展越来越高和形状不规则的复杂建筑的最新趋势表明,这些结构可能对风激发更加敏感。结构工程师正面临着寻求最高效,最经济的设计解决方案的挑战,同时要确保建筑物的最终设计必须能够满足其预期功能,居住者的居住需求并在其设计生命周期内保持安全。基于性能的设计(PBD)是建筑结构设计的一种现代方法。尽管PBD主要在地震工程领域仍处于积极发展中,但基于性能的风能工程的概念应扩展到对风敏感的高层建筑的设计中。本文提出了一种基于计算机的技术,用于在各种风害水平下基于最佳抗风性能的高层建筑设计。一旦准确确定了高层建筑结构在多个风事件下的风荷载和响应,便可以明确制定基于最佳性能的设计问题。为了解决满足强度(生命安全),漂移(损坏)和加速度(乘员舒适性)设计性能约束的最佳结构方案,将开发一种严格派生的最佳性标准(OC)方法。通过一个具有复杂3D模式形状的实际40层建筑物,说明了最佳设计技术的有效性和实用性。

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