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An Experimental Study of Nozzle Geometry Effect on Mixing Characteristics of Two Different Twin Jets

机译:喷嘴几何效应对两种不同双射流混合特性的实验研究

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This experimental work investigates the effect of circular nozzle with non-circular nozzle in a flow-field issuing from circle-ellipse twin jet and the same is compared with circular twin jet for Mach numbers 0.4 and 0.6. For the two twin jet cases, the jets emanated from both nozzles of the twin jets are free jets and had the identical Mach number. In both twin jet cases, for all the Mach numbers, the nozzle spacing (S) is 20 mm. The exit area is 78.5 mm~2 which is same for all the nozzles. The ratio of nozzle spacing to nozzle exit diameter (S/D) for both cases was kept as 2. The results from the radial (Y) direction and shadowgraph pictures indicate that the circle-ellipse twin jet show better mixing enhancement as the entrainment between the ambient fluid and the jets from the nozzles is more. It is also observed that both the nozzle exit Mach number and nozzle geometry strongly influences the mixing of the two jets.
机译:该实验工作研究了圆形喷嘴在圆形椭圆形双射流中发出的流场中的非圆形喷嘴的影响,与马赫数0.4和0.6的圆形双射流进行比较。 对于两个双射流情况,从双喷射器的两个喷嘴散发的喷射器是自由喷射器,并且具有相同的马赫数。 在双喷射案例中,对于所有马赫数,喷嘴间隔为20毫米。 出口区域为78.5 mm〜2,所有喷嘴都是相同的。 两种情况的喷嘴间距与喷嘴出口直径(S / D)的比例保持为2.径向(Y)方向和影子图的结果表明圆形椭圆双射流显示出更好的混合增强作为夹带之间的夹带 来自喷嘴的环境流体和喷嘴更多。 还观察到喷嘴出口马赫数和喷嘴几何形状都强烈影响两个喷射器的混合。

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