The Wind Tunnel Study of the Influence of Terrain and Surrounding Structures on the Distribution of Wind Pressure on a Chimney

IF 1.1 Q3 ENGINEERING, CIVIL
O. Hubová, M. Franek, Ivana Véghová
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引用次数: 0

Abstract

Abstract The value of the total aerodynamic resistance of the structure is depended on the values of the highly variable coefficients of external pressure, the quantification of which is a typical task of aerodynamics of structures solved on a rigid model in a wind tunnel. The aim of the paper is to analyze the distribution of wind pressure on a 150 m high chimney of a nuclear power plant. Due to today’s changing climate and the emergence of unwanted windstorms, it is necessary to pay increased attention to tall and slender structures, where the effects of wind play an important role. The effect of wind, the influence of the terrain and surrounding structures has a significant impact on the safety of the chimney, which is a part of the nuclear power plant, where increased safety is required not only for the chimney itself but also for buildings in its immediate vicinity. Surrounding structures can modify wind flow and cause increased chimney load. Experimental measurements were performed in the STU BLWT wind tunnel in Bratislava, where the influence of the changing terrain, as well as the influence of the surrounding objects on the external wind pressure coefficients at different altitude levels were monitored.
地形和周围结构对烟囱风压分布影响的风洞研究
摘要结构的总空气动力学阻力的值取决于高度可变的外压系数的值,对其进行量化是在风洞刚性模型上求解结构空气动力学的典型任务。本文的目的是分析核电站150米高烟囱上的风压分布。由于当今气候的变化和不必要的风暴的出现,有必要更加关注高大细长的结构,因为风的影响在这些结构中发挥着重要作用。风的影响、地形和周围结构的影响对烟囱的安全产生了重大影响,烟囱是核电站的一部分,不仅烟囱本身,而且其附近的建筑物都需要提高安全性。周围的结构会改变气流,导致烟囱荷载增加。实验测量是在布拉迪斯拉发的STU BLWT风洞中进行的,在那里监测了地形变化的影响以及周围物体对不同海拔水平下外部风压系数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.00
自引率
58.30%
发文量
69
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