首页> 外文会议>ASME Fluids Engineering Division summer meeting >A SIGNIFICANT ADVANCEMENT IN UNDERSTANDING SELF-SUSTAINING PULSATILE INJECTOR DYNAMICS: EFFECTS OF NUMERICS, NOZZLE GEOMETRY, GAS FEED RATE, AND NON-NEWTONIAN SLURRY
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A SIGNIFICANT ADVANCEMENT IN UNDERSTANDING SELF-SUSTAINING PULSATILE INJECTOR DYNAMICS: EFFECTS OF NUMERICS, NOZZLE GEOMETRY, GAS FEED RATE, AND NON-NEWTONIAN SLURRY

机译:认识自我维持的脉动动力学的重大进步:数值,喷嘴几何形状,供气速度和非牛顿浆的影响

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The performance of a rather large-scale self-exciting coaxial three-stream airblast injector was studied experimentally and computationally by Strasser and the computational method was validated using an air-water test stand (AWTS). Frequency domain analyses revealed distinct changes in spray character and pulsations as a function of air feed rates. Since that work, efforts have progressed in studying the effects of injector geometry, including inner nozzle retraction, stream meeting angle, outer annulus gap, and nozzle diameter. Changes to retraction produce the most profound, but not always monotonic, responses in the energy content and nature of the spray pattern. Later, the use of slurry and a high-density gas (SH) as replacements for air and water is investigated, revealing that the nature of the SH flow is dramatically different from its AW counterpart. As with AW, inner nozzle retraction and stream meeting angle prove to be the most influential geometry variables. Strong geometry, materials, and gas flow rate interactions are found among the metrics considered. Estimated droplet length scales of the SH system are not much different than those of the AW system. Attempts to further stimulate the spray via modulating the inner gas provide marginal influence for both sets of flowing materials. Lastly, swirling feeds and a multitude of modeling issues are addressed.
机译:利用Strasser通过实验和计算研究了一种相当大型的自激同轴三流喷丸器的性能,并使用空气-水试验台(AWTS)验证了该计算方法。频域分析显示,喷雾特性和脉动随进气速率的变化而发生明显变化。自从这项工作以来,在研究喷油器几何形状的影响方面已经取得了进展,包括内部喷嘴缩回,水流汇合角,外部环隙和喷嘴直径。缩回的变化会在喷雾的能量含量和性质方面产生最深刻但并非总是单调的响应。后来,研究了使用泥浆和高密度气体(SH)替代空气和水的方法,发现SH流动的性质与AW流动的性质截然不同。与AW一样,内喷嘴缩回和水流汇合角被证明是最有影响力的几何变量。在所考虑的指标之间发现了强烈的几何形状,材料和气体流速之间的相互作用。 SH系统的估计液滴长度尺度与AW系统的估计没有太大差异。试图通过调节内部气体进一步刺激喷雾,对两组流动材料都产生了边际影响。最后,解决了旋流进料和大量建模问题。

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