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Analytical and Experimental Study of Pressure Dynamics in a Pulsed Water Jet Device

机译:脉冲水射流装置中压力动力学的分析和实验研究

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Pulsed high-velocity water jets are of interest for breaking rocks and other materials. This paper describes a straightforward way of generating single water pulse with a hammer impacting a piston that rests on top of a chamber filled with water. This impacting action pressurises the water, expelling it at high velocity through a nozzle. A theoretical investigation is outlined aimed at gaining a better understanding of this system for generating water pulses. A computational model is developed to simulate the pressure dynamics in the chamber based on continuity and momentum equations for a compressible viscous flow. This model is used to optimise the relative sizes of the hammer and piston as well as the height of the water column to produce the highest velocity water pulse. The model was validated by building an experimental apparatus. In these experiments maximum pressures of about 200 MPa were measured inside the chamber over a time period of about 560 μs. This produced a water pulse with maximum velocity of 600 m/s. Experiments were conducted with nozzle diameters between about 1 mm and 4 mm to study the effect of discharge volume on the pressure history. The results illustrate that although the peak attainable pressure decreases with an increase in nozzle diameter, the duration of the elevated pressure remains similar for all nozzles.
机译:脉冲高速水射流对于破碎岩石和其他材料非常有用。本文介绍了一种简单的方法,用锤子撞击位于充有水的腔室顶部的活塞来产生单个水脉冲。这种冲击作用使水加压,使水以高速通过喷嘴排出。概述了理论研究,目的是为了更好地理解用于生成水脉冲的系统。基于可压缩粘性流的连续性和动量方程,开发了一种计算模型来模拟腔室内的压力动态。该模型用于优化锤和活塞的相对尺寸以及水柱的高度,以产生最高速度的水脉冲。通过建立实验装置来验证该模型。在这些实验中,在约560μs的时间段内在腔室内测得的最大压力约为200 MPa。这产生了最大速度为600 m / s的水脉冲。用约1mm至4mm的喷嘴直径进行实验以研究排出量对压力历史的影响。结果表明,尽管可达到的峰值压力随喷嘴直径的增加而降低,但对于所有喷嘴而言,升高压力的持续时间仍然相似。

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