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Control Of Separation In The Concave Portion Of Contraction To Improve The Flow Quality

机译:控制缩凹部分的分离以改善流动质量

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Subsonic wind tunnel experiments were conducted to study the effect of forced transition on the pressure distribution in the concave portion of contraction. Further more, the effect of early transition on the turbulence level in the test section of the wind tunnel is studied. Measurements were performed by installing several trip strips at two different positions in the concave portion of the contraction. The results show that installation of the trip strips, have significant effects on both turbulence intensity and on the pressure distribution. The reduction in the free stream turbulence as well as the wall static pressure distribution varied significantly with the location of the trip strip. The results confirm the significant impact of the tripped boundary layer on the control of adverse pressure gradient. The trip strip at X/L = 0.115 improves pressure distribution in contraction and reduces turbulence intensity in the test section, considerably.
机译:进行了亚音速风洞实验,研究了强制转变对收缩凹部压力分布的影响。此外,研究了早期过渡对风洞测试区湍流水平的影响。通过在收缩的凹入部分中的两个不同位置处安装几个脱扣条来进行测量。结果表明,防脱条的安装对湍流强度和压力分布均具有显着影响。自由气流湍流的减少以及壁静压力分布随跳闸带的位置而显着变化。结果证实了跳闸的边界层对不利压力梯度的控制具有重大影响。 X / L = 0.115处的脱扣带可显着改善收缩中的压力分布,并显着降低测试部分的湍流强度。

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