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Numerical determination of wind forces acting on structural elements in the shape of a curved pipe

机译:风力作用在弯曲管形结构构件上的数值确定

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This paper reports the study on development and verification of numerical models and analyzes of flow at high speed around structural elements in the shape of a curved pipe (e.g., a fragment of a water slide). Possibility of engineering estimation of wind forces acting on an object in the shape of a helix is presented, using relationships concerning toroidal and cylindrical elements Determination of useful engineering parameters (such as aerodynamic forces, pressure distribution, and air velocity field) is presented, impossible to obtain from the existing standard EN 1991-1-4 (the so-called wind standard). For this purpose, flow at high speed around a torus and helix, arranged both near planar surface and high above it, was analyzed. Analyzes begin with the flow around a cylinder. This is the simplest object with a circular cross-section and at the same time the most studied in the literature. Based on this model, more complex models are analyzed: first in the shape of half of a torus, next in the shape of a helix.
机译:本文报道了关于开发和验证数值模型的研究,以及围绕弯管形状的结构元件(例如,水滑道的碎片)高速流动的分析。利用有关环形和圆柱形元素的关系,提出了对作用在螺旋形物体上的风力进行工程估算的可能性,提出了确定有用的工程参数(如空气动力,压力分布和空气速度场)的方法,这是不可能的从现有标准EN 1991-1-4(所谓的风标准)中获取。为此,分析了围绕圆环和螺旋线的高速流动,圆环和螺旋线既布置在平面附近,又布置在其上方。分析从圆柱体周围的流动开始。这是具有圆形横截面的最简单的对象,同时也是文献中研究最多的对象。基于此模型,将分析更复杂的模型:首先是半个圆环的形状,然后是螺旋形。

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