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Integrated Platform for the Analysis and Design of Tall Buildings for Wind Loads

机译:风力负荷高层建筑物分析与设计的集成平台

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The Romanian, as well as other wind design codes for building structures, provides with limited degree of accuracy, the aerodynamic loads distribution on buildings up to 200 meters tall in an equivalent static approach (ESWL). For tall wind-sensitive building structures, especially for those with irregular shapes, most of the codes or standards recommend for design to use pressure data recorded in the wind tunnel. The ESWL approach is however used as reference estimation and structural first phase design. Advances on experimental and computational capabilities, led in the past decade to a significant development of time-domain analysis framework, both for seismic and wind loads. While the major outcome for earthquake engineering practitioners is to select appropriate design input ground motions at a particular site, the wind engineering practitioners are facing numerical difficulties to handle large wind loading durations, especially dealing with nonlinear-induced effects.The paper presents a real-time integrated framework for the analysis and design of tall buildings to wind loads, based on the time-domain analysis tool, as a prerequisite for higher level modules as vulnerability, risk and loss estimation, and optimization analyses.
机译:罗马尼亚语以及用于建筑结构的其他风设计码,提供有限程度的准确度,空气动力负载在高达200米的建筑物上分配到等效的静态方法(ESWL)。对于高风敏感的建筑结构,特别适用于具有不规则形状的人,大多数代码或标准建议设计用于在风洞中记录的压力数据。然而,ESWL方法用作参考估计和结构第一相位设计。对实验和计算能力的进步,在过去十年中导致了时域分析框架的显着发展,都是用于地震和风力荷载。虽然地震工程从业者的主要结果是在特定地点选择适当的设计输入地面运动,但风力工程从业者正面临数值困难,以处理大型风装载持续时间,特别是处理非线性诱导的效果。纸张呈现真实的时间综合框架为高层建筑的分析和设计到风负载,基于时域分析工具,作为更高级别模块作为漏洞,风险和损失估算的先决条件,以及优化分析。

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