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Effect of primary nozzle geometry on the performance of rectangular ejectors

机译:初级喷嘴几何形状对矩形喷射器性能的影响

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An experimental study of the effect of primary nozzle geometry on the performance characteristics of a rectangular subsonic ejector was conducted. Four primary nozzle configurations having rectangular and notched-rectangular exit geometries each with and without boundary layer swirl vanes were studied in these experiments. The ejector and all primary nozzles had equal aspect ratios (defined as the ratio of the large to small dimensions) of 2.8. The primary jet Mach number and Reynolds number were kept constant at M=0.06 and R{sub}e=2.6 × 10{sup}4 for all cases. After installation of each nozzle in the ejector throat, the mean and fluctuating velocity field at the ejector exit plane and three other downstream stations were mapped using a single hot wire probe. Mass flow ratio, spreading rate, and ejector pumping were calculated from the above measurements. The flow measurements indicated that the ejector's mass flow rate, spread rate, as well as pumping characteristics were enhanced by installation of boundary layer swirl vanes to the exit of the primary nozzles.
机译:引发了初级喷嘴几何效果对矩形亚音速喷射器的性能特性的实验研究。在这些实验中,研究了具有矩形和切口矩形出口几何形状的四个初级喷嘴配置,并且在这些实验中研究了横边旋涡叶片。喷射器和所有初级喷嘴具有等于纵横比(定义为大于到小尺寸的比率)为2.8。主喷射Mach数和雷诺数在M = 0.06和R {sub} E = 2.6×10 {SUP} 4中保持恒定。在喷射器喉部安装每个喷嘴之后,使用单个热线探针映射出喷射器出口平面和三个其他下游站的平均和波动速度。根据上述测量计算质量流量比,扩散速率和喷射器泵送。流量测量表明,通过安装边界层旋转叶片到主喷嘴的出口,增强了喷射器的质量流量,扩散率以及泵送特性。

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