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Numerical Modelling of the Aerodynamic Roughness of Trapezoidal and Corrugated Sheets

机译:梯形和波纹板空气动力学粗糙度的数值模拟

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The shape of a covering of smokestacks significantly influences the load from wind effects. In civil engineering practice, particularly for high chimneys, there is often a requirement for their coating with shaped sheet metal as a result of dilatation. The calculation of load effects according to the valid standard only takes into account the size of roughness of the flow around the body, therefore the size of the wave-height sheet regardless of its shape is ignored, which in some cases leads to a substantial increase of the coefficient forces. This paper deals with the possibilities of defining of an equivalent aerodynamic drag coefficient value for flow around a sheathed chimney referred to as the aforementioned coefficient forces. The problem is solved numerically using the finite volume computational fluid dynamics codes in the software ANSYS Fluent. Meshing of the shaped sheathing makes high demands on the number of cells in the computational area currently unrealistic for desktop PCs. The aim is to determine a suitable equivalent aerodynamic roughness of the selected two types of sheet metal with the same wave height. This roughness can be subsequently used for modelling of the required processes in the simplified calculation.
机译:烟囱的覆盖物形状会显着影响风效应产生的负荷。在土木工程实践中,特别是对于高烟囱,由于膨胀的缘故,经常需要用成形金属板进行涂覆。根据有效标准计算载荷效应时,仅考虑了围绕身体的流动的粗糙度大小,因此忽略了波高片的形状,无论其形状如何,这在某些情况下会导致大幅增加系数力。本文探讨了为鞘烟囱周围流动定义等效的空气阻力系数值的可能性,即上述系数力。使用ANSYS Fluent软件中的有限体积计算流体动力学代码可以数字方式解决该问题。成形护套的网格划分对当前对于台式PC不现实的计算区域中的单元数量提出了很高的要求。目的是确定选定的两种具有相同波高的金属板的合适的等效空气动力学粗糙度。随后可以将该粗糙度用于简化计算中所需过程的建模。

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