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首页> 外文期刊>Journal of structural engineering >Stiffness Optimization for Wind-Induced Dynamic Serviceability Design of Tall Buildings
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Stiffness Optimization for Wind-Induced Dynamic Serviceability Design of Tall Buildings

机译:高层建筑风致动态可服务性设计的刚度优化

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Contemporary tall buildings with increasing height and slenderness are highly sensitive to the actions of wind. The structural design of modern tall buildings is generally governed by the need to provide adequate strength and stiffness against dynamic movement induced by strong wind. In addition to the strength-based safety design considerations, the major design effort of a tall building is related to the assessment of the wind-induced serviceability design requirements in terms of lateral drift and motion perception criteria. With tall buildings of today continuing to increase in height, the mitigation of wind-induced vibrations in tall buildings becomes a more critical challenge in the design synthesis process. This paper presents an integrated dynamic analysis and computer-based design optimization method for minimizing the structural cost of tall buildings subject to wind-induced serviceability acceleration design criteria. Once the optimal dynamic serviceability design problem is explicitly formulated, a rigorously derived optimality criteria method is developed for seeking the optimal distribution of element stiffness for a tall building system, satisfying the peak acceleration design constraints. Two full-scale 60-story building examples of mixed steel and concrete construction, with and without complex three-dimensional (3D) mode shapes, are used to illustrate the effectiveness and practical application of the optimal design technique. The results showed that the computer-based optimal design technique provides a powerful tool for wind-induced dynamic serviceability design of tall general buildings with complex 3D mode shapes.
机译:随着高度和细长度增加的当代高层建筑对风的作用高度敏感。现代高层建筑的结构设计通常取决于需要提供足够的强度和刚度,以抵抗强风引起的动态运动。除了基于强度的安全设计考虑之外,高层建筑的主要设计工作还涉及根据侧向漂移和运动感知标准评估风诱导的可维护性设计要求。随着当今高层建筑的高度不断增加,减轻高层建筑中风引起的振动成为设计综合过程中更为关键的挑战。本文提出了一种综合的动态分析和基于计算机的设计优化方法,该方法可根据风诱导的可使用性加速设计标准,使高层建筑的结构成本最小化。一旦明确提出了最佳动态可维修性设计问题,便会开发出严格推导的最佳性准则方法,以寻求满足高层加速度设计约束的高层建筑系统的单元刚度的最佳分布。使用两个完整的60层混合钢和混凝土建筑的完整建筑示例,分别具有和不具有复杂的三维(3D)模式形状,来说明最佳设计技术的有效性和实际应用。结果表明,基于计算机的最佳设计技术为具有复杂3D模式形状的高层通用建筑的风致动态可服务性设计提供了强大的工具。

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