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Simulation and experimental study on the Self-excited oscillation jet device

机译:自激振荡喷射装置的仿真与实验研究

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Nearly 40 years, high pressure water jet technology has developed rapidly and increasingly[1,2], and it also added new methods to foundation engineering and geotechnical engineering for our country[3,4,5], such as High pressure jet grouting[6] and coal or ore mining[7,8], so choose what kind ofjet can be more effective to crush rock became the focus of researching[9,10]. In this paper, using the Fluent software numerical simulation technology to research the inlet velocity of jet from 5 m/s to 300 m/s and hit a target from 100 mm to 800 mm, exploring the hit force variation rule of oscillation pulsed jet. Then according to the variation curve draw force formula. Put forward that in the low velocity using exponential function fitting, and high velocity using the polynomial function fitting. Then tested self-excited oscillation pulsed jet force, the results is similar to the numerical simulation. And finally do contrast experiment between self-excited oscillation pulsed jet and consecutive jets, found that at low pressure condition, self-excited oscillation pulsed jet can crushing rock easier.
机译:近40年来,高压水射流技术已迅速并日益[1,2]开发的,它也增加了新的方法,以基础工程和岩土工程,为我国[3,4,5],如高压喷射灌浆[ 6]和煤或矿石开采[7,8],因此,选择什么样的ofjet可以更有效地破碎岩成为研究[9,10的焦点。在本文中,使用Fluent软件数值模拟技术,从5米研究喷流的入口速度/秒至300米/秒,并触及目标为100mm至800mm,探索振荡脉冲射流的命中力变化规律。然后根据变化曲线拉伸力式。提出了在低速使用指数函数拟合,并利用多项式函数拟合高速。然后进行测试的自激振荡脉冲射流的力,结果是类似的数值模拟。最后做自激振荡脉冲射流和连续的射流之间的对比实验,发现在低压条件下,自激振荡脉冲射流粉碎可以更容易的岩石。

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