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Comparative study of grid validation methods for wind load computations of transmission lines

机译:输电线路风荷载计算的网格验证方法比较研究

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Strong unsteady aerodynamic forces are generated by severe flow separations around transmission lines, and galloping can be induced by this inherent motive force. Due to the severe flow separations around transmission line with blunt cross-sections, transitions of boundary layers, and dissipations of vortex wakes, it is troublesome to calculate the wind load accurately. To account for the accurate computation of wind load for both single conductor and bundle conductor, comparative study of four different grid validation methods, including unsteady lift/drag forces, power spectral density (PSD) analysis of both lift/drag forces, wall shear stress on cylinder surface, unsteady turbulent kinetic energy in the flow field far down stream of the conductor cylinder, are conducted by solving Navier-Stokes equations. The results indicate that, it is feasible to employ the unsteady lift/drag force, PSD results of lift/drag forces to validate grid convergence of single conductor and wall shear stress is proposed to provide a more thorough insight into flow separation characteristics on cylinder surface; while besides the above three methods, the convergence of far field turbulent kinetic energy PSD results is as well proposed and then validated to be suitable for bundle conductors.
机译:传输线周围严重的气流分离会产生很强的不稳定空气动力,而这种固有的动力会引起飞驰。由于具有钝面的传输线周围严重的气流分离,边界层的过渡以及涡流的耗散,因此要精确计算风荷载是很麻烦的。为了准确计算单导体和束导体的风荷载,对四种不同的网格验证方法进行了比较研究,包括不稳定的提升/拖动力,提升/拖动力的功率谱密度(PSD)分析,壁切应力通过求解Navier-Stokes方程,在圆柱体表面上,在导体圆柱体下游的流场中产生了不稳定的湍动能。结果表明,采用非恒定的升/降力是可行的,升/降力的PSD结果验证了单导体的网格收敛性,并提出了壁切应力,以提供对缸体表面流分离特性的更全面的了解。 ;除上述三种方法外,还提出了远场湍动能PSD结果的收敛性,然后证明适用于束导体。

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