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Field measurements and wind tunnel experimental investigations of wind effects on Guangzhou West Tower

机译:广州西塔风效的现场测量与风洞实验研究

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The wind-induced acceleration responses at the top of the Guangzhou West Tower (GZWT; 432 m) and the wind speed and direction at the top of Guangzhou Tower (532 m), which is located across the GZWT, were measured during the passage of Typhoon Mangkhut. The two buildings are separated by a river. The variation characteristics of the first two natural frequencies and damping ratios of the GZWT under strong vibrations are obtained by using random decrement technique (RDT) and modified Bayesian spectral density approach (MBSDA). Finally, field measurements of the maximum peak accelerations are compared with wind tunnel test results. The damping ratios identified by MBSDA are found to be greater than the results obtained by RDT. The natural frequencies decrease with increasing maximum acceleration of the corresponding acceleration segment. Besides, they decrease firstly and then increase with time elapses, reaching a minimum value at the maximum mean wind speed. The damping ratios are completely discrete, and no obvious linear correlation exists between the damping ratios and maximum acceleration of the corresponding acceleration segment. The peak accelerations at the top of the GZWT obtained from wind tunnel experiment agree well with that of full-scale measurements.
机译:在广州西塔(GZWT; 432米)顶部的风引起的加速响应和广州塔(532米)的风速和方向,在GZWT跨越GZWT,台风曼悟空。这两个建筑物由河流分开。通过使用随机递增技术(RDT)和改性贝叶斯光谱密度方法(MBSDA),获得强振动下GZWT的前两个固有频率和阻尼比的变形特性。最后,将最大峰值加速度的现场测量与风洞测试结果进行比较。发现MBSDA鉴定的阻尼比率大于RDT获得的结果。随着相应的加速度段的最大加速度,自然频率降低。此外,它们首先降低,然后随时间的增加而增加,在最大均值风速下达到最小值。阻尼比是完全离散的,并且在阻尼比和相应加速段的最大加速度之间不存在明显的线性相关性。从风隧道实验获得的GZWT顶部的峰值加速度与全尺寸测量相一致。

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