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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Numerical predictions of the flow around a profiled casing equipped with passive flow control devices
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Numerical predictions of the flow around a profiled casing equipped with passive flow control devices

机译:装有被动流量控制装置的异型套管周围流动的数值预测

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The aim of this study is to optimize the shape of a casing for a small wind turbine. The optimization is performed to augment the airflow in the active transversal circular section in which the turbine rotor will be mounted. The axial length of the case was constrained. To increase the volumetric flow through the casing, we equipped the casing with passive flow control devices (i.e., circular injection slots) that operate by the overlapping of multiple aerodynamic effects. This research was conducted using numerical simulations as an investigational tool, and experimental tests performed in the wind tunnel showed that the computed results are reasonably verified by the experimental data. Furthermore, the flow mechanism around the case is better understood via the numerical data post-processing. In this investigation, a total of 13 shapes of the casing were tested, and the results suggest that the optimal variant ensures a maximum axial velocity increase in the active transversal section of the casing by a factor of up to 3.25.
机译:这项研究的目的是优化小型风力涡轮机外壳的形状。执行优化以增加将在其中安装涡轮转子的有效横向圆形截面中的气流。外壳的轴向长度受到限制。为了增加通过机壳的体积流量,我们为机壳配备了被动式流量控制装置(即圆形喷射槽),该装置通过多种空气动力作用的重叠而工作。这项研究是使用数值模拟作为研究工具进行的,在风洞中进行的实验测试表明,计算结果得到了实验数据的合理验证。此外,通过数字数据后处理可以更好地了解案件周围的流动机制。在这项研究中,总共对13种形状的套管进行了测试,结果表明,最佳变形可确保套管的有效横向截面中​​的最大轴向速度增加幅度最大为3.25。

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