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首页> 外文期刊>Journal of structural engineering >Full-Scale Measurements of Wind Pressures on a Low-Rise Building during Typhoons and Comparison with Wind Tunnel Test Results and Aerodynamic Database
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Full-Scale Measurements of Wind Pressures on a Low-Rise Building during Typhoons and Comparison with Wind Tunnel Test Results and Aerodynamic Database

机译:台风期间,在低层建筑物上进行风压的全尺寸测量,与风洞测试结果和空气动力学数据库的比较

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This study investigated wind-induced pressures on an instrumented low-rise building with gable roof and roof overhang during Typhoons Mujigae and Sarika by means of full-scale measurements. Then, detailed wind tunnel tests on a 1:100 scale model of the instrumented building were performed under different upstream exposure conditions. Moreover, cross-comparisons between the field measurements, wind tunnel testing results, and aerodynamic database for low-rise buildings established by the Tokyo Polytechnic University (TPU) were made for validation purposes. The comparative study illustrates that the mean and RMS wind pressure coefficients on the roof of the low-rise building among the field measurements, model test results, and aerodynamic database are in reasonable agreement, and the wind tunnel modeling methodology could reproduce the minimum pressure coefficient in terms of the ratios of peak wind pressures to maximum dynamic pressures. An improved peak pressure estimate approach was proposed, and its effectiveness was verified against the field measurements. The combined study of full-scale measurement, wind tunnel testing, and usage of aerodynamic database aimed to further the understanding of wind effects on typical low-rise buildings during typhoons and improve their wind-resistant design. (C) 2020 American Society of Civil Engineers.
机译:本研究通过满量程测量,在台风屋顶和纱布期间调查了风引起的仪表低层建筑用山墙屋顶和屋顶悬垂。然后,在不同上游曝光条件下进行1:100规模模型的详细风洞测试。此外,对于东京工业大学(TPU)建立的田间测量,风洞测试结果和空气动力学数据库之间的交叉比较是为了验证目的而制作的。比较研究说明了现场测量,模型测试结果和空气动力学数据库的低层建筑物屋顶上的平均值和RMS风压系数是合理的一致性,而风洞建模方法可以再现最小压力系数就峰风压的比率而言以最大动态压力。提出了一种改进的峰值压力估计方法,其有效性验证了田间测量。空气动力学数据库全尺度测量,风洞检测和使用的综合研究旨在进一步了解台风期间对典型低层建筑的风力影响,提高防风设计。 (c)2020年美国土木工程师协会。

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