Computational and Experimental Study on Flow Quality of Open-Loop Low-Speed Wind Tunnel

Hariprasad Thimmegowda, S. Yadukrishnan
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Abstract

- Several kinds of wind tunnels are developed in the past few decades. It is an essential tool for aerodynamic studies in research and academia. However, irrespective of the tunnel, it becomes crucial to maintain the flow quality in the test section holding the measurements accurate. This study emphasizes on the flow quality of low speed subsonic open-loop wind tunnel. Experimental findings were validated with computational results. Flow quality parameters were examined by verifying the uniformity and velocity profile of the test section. At various fan speed, test section wind velocity was measured and compared with numerical results. Both results agree with each other. Uniformity assessment was evaluated along the centerline of the test section and noted that wind velocity remains constant in both experimental and computational investigation. Velocity profile was measured from the upper to lower wall, which confirms the boundary layer near the walls. The profile, in computational and experimental results, were similar. These validated results can be employed as a reference to the design and construction of a low-speed subsonic wind tunnel.
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开环低速风洞流动质量的计算与实验研究
在过去的几十年里,有几种风洞被开发出来。它是研究和学术界进行空气动力学研究的重要工具。然而,无论隧道如何,保持测试段的流动质量以保持测量的准确性变得至关重要。本文着重研究了低速亚音速开环风洞的流动质量。实验结果与计算结果相吻合。通过验证试验段的均匀性和速度分布来检测流动质量参数。在不同风机转速下,测量了试验段风速,并与数值结果进行了比较。这两个结果是一致的。均匀性评估沿着测试段的中心线进行评估,并注意到在实验和计算研究中风速保持不变。从上到下壁面测量了速度剖面,证实了壁面附近存在边界层。计算结果与实验结果相似。这些验证结果可为低速亚音速风洞的设计和施工提供参考。
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