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Experimental study of external characteristics of a flashing water jet in water

机译:水中水射流外部特性的实验研究

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External characteristics of a flashing water jet released in water were studied using Particle Image Velocimetry and Shadowgraphy techniques for different pressure ratios and nozzle diameters. The flow dynamics of such a jet are dominated by vapor bubble formation due to thermal non-equilibrium and phase change processes. In order to gain insights into the physics of such complex flows, experiments were performed and measurements on velocity distribution and turbulence statistics were obtained. The bubble size distributions were also recorded to characterize the bubble disintegration mechanism. Flashing jet emanating from two different nozzle diameters, D = 5 mm and 2 mm, and at three different pressure ratios, P-R = 1.5 bar, 2 bar and 2.5 bar, were studied, at a fluid inlet temperature of T-0 = 380 K. The results revealed that the maximum value of centerline velocity occurs far downstream, at x = 0.02 m from the nozzle exit, due to the presence of vapor bubble formation that leads to an interaction between the liquid and gaseous phases. This is in contrast to a canonical water jet (i.e., without phase change), where the centerline velocity attains a maximum at the nozzle exit. For D = 5 mm, the turbulent kinetic energy (TICE) was higher and the decay rate was slower as compared to D = 2 mm for P-R = 2 bar. From the centerline velocity and TKE measurements, a critical injection pressure ratio, P-R 1.5 bar was documented, beyond which the external flow dynamics of the jet is governed primarily by the flashing mechanism. These observations were verified from the bubble size distribution measurements and can be attributed to thermal non-equilibrium and phase change process. Lastly, the presence of coherent structures in the flow reveals that the entrainment dynamics of a flashing jet is dominated by vorticity.
机译:对于不同的压力比和喷嘴直径,使用粒子图像测速和阴影成像技术研究了水中释放的闪蒸水的外部特征。由于热不平衡和相变过程,这种喷射流的流动动力学主要由蒸气气泡形成所决定。为了深入了解此类复杂流的物理原理,进行了实验并获得了速度分布和湍流统计的测量结果。还记录了气泡尺寸分布以表征气泡崩解机理。研究了在流体入口温度T-0 = 380 K时,由两种不同的喷嘴直径D = 5 mm和2 mm以及三种不同的压力比PR = 1.5 bar,2 bar和2.5 bar发出的闪射流。结果表明,中心线速度的最大值出现在距离喷嘴出口x> = 0.02 m的较远下游,这是由于蒸气气泡的形成导致了液相和气相之间的相互作用。这与规范的水射流(即,没有相变)相反,在该水射流中,中心线速度在喷嘴出口处达到最大值。对于D = 5 mm,与P-R> = 2 bar的D = 2 mm相比,湍动能(TICE)更高,衰减速率更慢。根据中心线速度和TKE的测量结果,记录了临界喷射压力比P-R> 1.5 bar,在该比率之外,射流的外部流动动力学主要由溢流机理决定。这些观察结果已从气泡尺寸分布测量结果中得到验证,可以归因于热非平衡和相变过程。最后,在流动中相干结构的存在表明,闪光射流的夹带动力学主要由涡度决定。

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