Study of Wind Loads on Free-Standing and Closely Spaced Hyperbolic Cooling Towers

V. V. Dutov, A. Chepurnenko
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Abstract

Introduction. The construction of cooling towers has always been and remains a pressing issue in today's world. Wide spreading of cooling towers is necessary for power industry. The problem lies in the allowable location of a set of hyperbolic cooling towers at a premises of a single fuel-and-energy facility. The aim of the present study is to investigate the wind pressure distribution on a cooling tower having the shape of a single-cavity hyperboloid of rotation and the cross-interference of the closely spaced cooling towers. To achieve the set forth aim the following objectives are being solved: the finite-element modeling of a free-standing and several closely spaced structures, the analysis of the wind pressure isofields at different elevations and the comparison of the results with the currently valid standards.Materials and methods. The object of the study is the hyperboloid type cooling towers of total height 53.3 m. The analysis is carried out with the help of the three-dimensional finite-element modeling in the CFX module of the verified ANSYS software package. The k-epsilon turbulence model is used. For simplification, the wind speed is assumed constant along the structure’s height. The shells in the shape of a single-cavity hyperboloid including the airspace are specified by a parametric equation, which is modeled by using the solid finite elements in the form of tetrahedrons. The surface of the shells is assumed to be perfectly smooth. Besides finite-element analysis, the calculation of the interference factor is made according to the standards currently valid for reinforced concrete cooling towers.Results. The results of wind pressure distribution on free-standing and closely spaced cooling towers were obtained. The data on the wind pressure isofields at various elevations at various locations of tower structures was given.Discussion and conclusions. Upon comparing the obtained results with the currently valid SP 20.13330.2016 «Loads and actions» and SP 340.1325800.2017 «Reinforced concrete and concrete structures of cooling towers. Design rules» it was found that the distribution of wind pressure along circumference depends on the height, which had not been taken into account in the regulatory documentation. The analysis of cross-interference of the closely spaced cooling towers was carried out and it was demonstrated that in the currently valid standards the interference factor had been greatly overestimated.
独立密距双曲冷却塔风荷载研究
介绍。在当今世界,冷却塔的建设一直是一个紧迫的问题。在电力工业中,冷却塔的广泛应用是必要的。问题在于一组双曲冷却塔在一个单一的燃料和能源设施的场所的允许位置。本研究的目的是研究具有单腔旋转双曲面形状的冷却塔上的风压分布和紧密间隔的冷却塔的交叉干扰。为实现上述目标,将解决以下问题:独立和几个紧密间隔结构的有限元建模,分析不同海拔高度的风压等场,并将结果与现行有效标准进行比较。材料和方法。研究对象为总高度53.3 m的双曲面型冷却塔。利用已验证的ANSYS软件包的CFX模块中的三维有限元建模进行分析。采用k-epsilon湍流模型。为简化起见,假设风速沿结构高度恒定。包含空域的单腔双曲面壳体由参数方程指定,该参数方程采用四面体形式的实体有限元建模。假设壳的表面是完全光滑的。在进行有限元分析的基础上,按照现行钢筋混凝土冷却塔规范进行了干扰系数的计算。得到了独立冷却塔和密距冷却塔的风压分布结果。给出了塔结构不同高度、不同位置的风压等场数据。讨论和结论。将所得结果与现行有效的SP 20.13330.2016《载荷和作用》和SP 340.1325800.2017《冷却塔的钢筋混凝土和混凝土结构》进行比较。设计规则»研究发现,风压沿圆周的分布取决于高度,这在监管文件中没有考虑到。对密距冷却塔的交叉干扰进行了分析,表明现行标准中干扰系数被大大高估。
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