首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Mixing in turbulent free jets issuing from isosceles triangular orifices with different apex angles
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Mixing in turbulent free jets issuing from isosceles triangular orifices with different apex angles

机译:从具有不同顶角的等腰三角形孔中发出的湍流自由射流混合

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This paper reports the results of an experimental investigation on mixing in turbulent free air jets issuing from isosceles triangular orifices with apex angles of 10°, 20° and 30°. The results obtained in a contoured nozzle round jet are also presented for comparison. The measurements were made with an x-array hot-wire probe and a pitot-static tube in isothermal, incompressible jets issuing into still surrounding air. The Reynolds number, based on the equivalent diameter of the triangular orifices (the same as the diameter of the contoured round nozzle), was on average 1.69×10 ~5 for all jets. The results of the mean streamwise centreline velocity decay, mass entrainment and jet spreading suggest that the 10° jet has the highest mixing rate among all the test jets and that the contoured nozzle round jet has the lowest mixing rate. The high mixing rate of the 10° jet is supported by the jet centreline profile of the streamwise turbulence intensity and the one-dimensional energy spectra, which develop much more rapidly in this jet than in any of the other jets.
机译:本文报道了从等腰三角形小孔(顶角为10°,20°和30°)发出的湍流自由气流混合的实验研究结果。还给出了轮廓喷嘴圆形射流中获得的结果以进行比较。测量是通过x阵列热线探针和皮托管在等温,不可压缩的射流中产生的,该射流排入周围的空气。雷诺数基于三角形孔的等效直径(与轮廓圆形喷嘴的直径相同),对于所有喷嘴而言,平均为1.69×10〜5。平均流向中心线速度衰减,质量夹带和射流扩展的结果表明,在所有测试射流中,10°射流的混合率最高,而轮廓喷嘴圆射流的混合率最低。 10°射流的高混合速率由射流中心线分布的湍流湍流强度和一维能谱支持,它们在此射流中的发展比其他任何射流都快得多。

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