首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Effects of area discontinuity at nozzle inlet on the characteristics of high speed self-excited oscillation pulsed waterjets
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Effects of area discontinuity at nozzle inlet on the characteristics of high speed self-excited oscillation pulsed waterjets

机译:喷嘴入口区域不连续性对高速自激振荡脉冲水射流特性的影响

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High speed self-excited oscillation pulsed waterjet (SEOPW) offers many advantages over continuous jets or external-excited pulsed jets and has a large number of practical and industrial applications, In order to take better advantage of SEOPWs, effects of area discontinuity at nozzle inlet were analyzed based on the previous related research and then experimentally investigated with respect to the axial pressure oscillations. A jet-driven Helmholtz oscillator, which is capable of producing effective SEOPWs, was employed in the experiment. It was found that area discontinuity has a capacity of enhancing the peak, which largely depends on the inlet pressure and standoff distance. The enhancement decreases with increasing inlet pressure and only happens within small standoff distances. Compared with the continuous case, area enlargement enhances the peak by 25%, 21%, and 16%, corresponding to inlet pressures of 10, 15, and 20 MPa, respectively; while area contraction turns to be a better one by improving the peak by 8% at inlet pressure of 25 MPa. However, at inlet pressure of 30 MPa, both enlargement and contraction decrease the peak. Moreover, area discontinuity cannot influence the optimum standoff distance where the maximum peak appears. For the pressure oscillation amplitude, even both area discontinuities have the ability of increasing the amplitude regardless of inlet pressure and standoff distance, contraction enhances the amplitude much more than enlargement does at all the testing inlet pressures. In addition, area discontinuity has nearly no influence on the oscillating frequency and causes perturbations that may only affect the intensity of self-excitation by amplitude. (C) 2016 Elsevier Inc. All rights reserved.
机译:高速自激振荡脉冲水刀(SEOPW)与连续射流或外激脉冲射流相比具有许多优势,并且具有大量的实际和工业应用,为了更好地利用SEOPW,喷嘴入口处的区域不连续性的影响在先前相关研究的基础上进行了分析,然后就轴向压力振荡进行了实验研究。实验中使用了能够产生有效SEOPW的喷气驱动亥姆霍兹振荡器。发现面积不连续性具有增强峰的能力,这在很大程度上取决于入口压力和支座距离。增强作用随入口压力的增加而减小,并且仅在较小的支座距离内发生。与连续情况相比,面积增大将峰值提高了25%,21%和16%,分别对应于10、15和20 MPa的入口压力。而通过在25 MPa的入口压力下将峰值提高8%,面积收缩将变得更好。但是,在入口压力为30 MPa时,膨胀和收缩都会降低峰值。此外,区域不连续性不会影响出现最大峰值的最佳对峙距离。对于压力振荡振幅,即使两个区域的不连续性都具有增大振幅的能力,而与入口压力和支座距离无关,在所有测试入口压力下,收缩增大的振幅都比增大的振幅大得多。此外,区域的不连续性几乎对振荡频率没有影响,并且会引起扰动,而扰动仅会影响振幅的自激强度。 (C)2016 Elsevier Inc.保留所有权利。

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