首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Computational Fluid Dynamics Simulations of Aerodynamic Performance of Low-Pressure Axial Fans With Small Hub-to-Tip Diameter Ratio
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Computational Fluid Dynamics Simulations of Aerodynamic Performance of Low-Pressure Axial Fans With Small Hub-to-Tip Diameter Ratio

机译:具有小枢纽直径比的低压轴向风扇的空气动力学性能计算流体动力学模拟

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摘要

Rotor-only ducted axial fans with small hub-to-tip diameter ratio are widely used in many branches of industry, especially for cooling and ventilation purposes. For such fans, extensive regions of backflow are present downstream of the fan near the hub. Only few computational fluid dynamics (CFD) studies for such fans have been reported in the scientific literature. In order to develop guidelines for obtaining accurate CFD predictions for such fans, validation simulations of a fan with small hub-to-tip diameter ratio have been performed by comparing experimental and computed aerodynamic performance characteristics. These guidelines pay special attention to the trailing edge shape, presence of nonaerodynamically shaped blade sections, tip gap, and employed turbulence model. The results for the fan studied here show that the actual (rounded) trailing edge is necessary; the main blade (without nonaerodynamically shaped blade sections) well represents the aerodynamic performance of the whole fan blade; it is recommended not to take the tip gap into consideration due to the existence of significant flow separation; the use of the Spalart-Allmaras turbulence model is advised for giving better agreement with measurements.
机译:仅具有小的毂到尖端直径比的转子管式轴向风扇被广泛用于许多工业分支,特别是用于冷却和通风目的。对于这样的风扇,在枢纽附近的风扇的下游存在宽阔的回流区域。在科学文献中仅报告了对这种风扇的几项计算流体动力学(CFD)研究。为了制定用于获得这种风扇的准确CFD预测的准则,通过比较实验和计算的空气动力学性能特征来执行具有小的轮尖直径比的风扇的验证模拟。这些指导方针特别注意后缘形状,非实际动力学叶片部分,尖端间隙和采用湍流模型的存在。这里研究的风扇的结果表明,实际(圆形)后缘是必要的;主刀片(没有非实际动力学叶片部分)良好代表整个风扇叶片的空气动力学性能;由于存在重大流动分离,建议不要考虑尖端间隙;建议使用Spalart-Allmaras湍流模型,以便与测量更好地协议。

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