Study of Vertical-Axis Wind Farm Layouts Using a 2D Actuator-Cylinder RANS Model

Edgar Martinez-Ojeda, Francisco Javier Solorio Ordaz, M. Sen
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引用次数: 0

Abstract

The actuator-cylinder RANS (Reynolds-averaged Navier-Stokes equations) model was used to study the performance of two different arrays of wind turbines. The staggered array proved to be more efficient than the fish-school array (grouped in pairs) in most directions; however, the fish-school array outperformed the conventional staggered array when the pairs of turbines were facing the wind. Increases in global power coefficient up to 16% were found when the wind speed was 8 ms-1 and up to 10% when the wind speed was 10 ms-1. Despite the fish-school array being slightly less efficient, this array yielded almost twice as much power density as the staggered array in almost all directions. The current methodology proves to be a fast tool for the estimation of vertical-axis wind turbine farms compared to full RANS simulations.
基于二维作动器-圆柱RANS模型的垂直轴风电场布局研究
采用执行器-气缸RANS (reynolds -average Navier-Stokes方程组)模型研究了两种不同风力发电机组阵列的性能。在大多数方向上,交错排列比鱼群排列(成对排列)更有效;然而,当一对涡轮机面对风时,鱼群阵列的性能优于传统的交错阵列。当风速为8 ms-1时,全球功率系数增加16%,当风速为10 ms-1时,全球功率系数增加10%。尽管鱼群阵列的效率略低,但在几乎所有方向上,这种阵列产生的功率密度几乎是交错阵列的两倍。与全RANS模拟相比,目前的方法被证明是一种快速估计垂直轴风力发电场的工具。
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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