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Hydrodynamics Characteristics of High Speed Multi--Phase Flow in AWJ Nozzles (1st Report, Analytical Model and Comparison with Experimental Data)

机译:AWJ喷嘴中高速多相流动的流体动力学特性(第一报告,分析模型和与实验数据的比较)

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摘要

This paper describes the hydrodynamic characteristics of the abrasive water jet (AWJ) flowing within smallbored nozzles. For analyzing high speed water jet containing fine solid particles, we introduce the slip velocity model to the one dimensional momentum equation and estimate the axial distribution of pressure and phase-velocities within the nozzle. The analytical result shows that (1) the pressure within nozzle is always in the vacuum side in case of high speed water jet and (2 ) the pressure along the nozzle axis is greatly affected with the change in slip ratio. Experimental data using high-speed two speed two-phase flow of air-water mixture coincide with these predicted tendency. The data also show that there is steep pressure rise at the nozzle exit. From the data analysis, it is concluded that gas phase velocity exceeds its sonic velocity in some region within the nozzle and the phenomena like as normal shock wave may occur in the AWJ nozzle.
机译:本文介绍了在小口径喷嘴中流动的磨料射流(AWJ)的流体力学特性。为了分析包含细小固体颗粒的高速水射流,我们将滑移速度模型引入一维动量方程,并估计喷嘴内压力和相速度的轴向分布。分析结果表明:(1)在高速喷水的情况下,喷嘴内的压力始终处于真空侧;(2)沿喷嘴轴的压力受滑移率变化的影响很大。使用空气-水混合物的高速两速两相流的实验数据与这些预测趋势一致。数据还表明,喷嘴出口处压力急剧上升。从数据分析可以得出结论,气相速度在喷嘴内的某些区域超过了声速,并且在AWJ喷嘴中可能会出现像正常冲击波这样的现象。

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