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Experimental Study of a Circular Jet Spreading Rate due to a Secondary Jet

机译:二次射流引起的圆形射流扩展速率的实验研究

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The present study investigates the interaction between two jets: a primary round jet and secondary jets formed by a manipulated co-annular jet. Secondary jets were formed by a combination of a co-annular jet issuing from a nozzle with convex surfaces and fluid injection into the co-annular jet perpendicular to the primary jet axis. Experiments reported here were carried out using a two-component laser-Doppler-velocimetry system to determine the effects of the secondary jet on the primary jet. Mean velocity and Reynolds stress measurements were made along and across the primary jet centerline with and without the presence of the secondary jet. It was observed that fluid injection into the spacing between the inner jet pipe and the outer jet surface highly affects the characteristics of the mixing region. Fluid injection perpendicular to the co-annular jet transforms the co-annular jet into two separate jets positioned at 180 degrees apart from each other. Interaction of the secondary jets with the primary jet results in a planar primary jet reducing the primary jet centerline velocity faster with the presence of the secondary jet.
机译:本研究调查了两种射流之间的相互作用:一次圆形射流和由受控的环形射流形成的第二次射流。次级射流是由从具有凸面的喷嘴发出的同环形射流和垂直于主射流轴的流体注入同环形射流的组合形成的。这里报告的实验是使用两组分激光多普勒测速系统进行的,以确定次级射流对初级射流的影响。在有和没有次要射流的情况下,沿着和穿过主要射流中心线进行平均速度和雷诺应力测量。观察到流体注入到内部喷射管和外部喷射表面之间的空间中会极大地影响混合区域的特性。垂直于同环形射流的流体注入将同环形射流转换为彼此分开180度定位的两个单独的射流。次级射流与初级射流的相互作用导致平面初级射流在存在次级射流的情况下更快地降低了初级射流的中心线速度。

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