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首页> 外文期刊>Journal of Mechanical Science and Technology >A characterization of the spray evolution by dual-mode phase doppler anemometry in an injector of liquid-propellant thruster
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A characterization of the spray evolution by dual-mode phase doppler anemometry in an injector of liquid-propellant thruster

机译:液体推进剂推进器喷油器中双模相位多普勒风速仪对喷雾演变的表征

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摘要

Spray characteristics of an injector employed in the 5 Newton-class of liquid-propellant thruster are addressed with an evolutionary feature of droplets. Information for the droplets is obtained through Dual-mode phase Doppler anemometry (DPDA) measurement in terms of the velocity, diameter, number density, and turbulent intensity. In addition, instantaneous images for the macroscopic view of spray are supplemented by flow visualization technique using laser sheet. It is demonstrated by the investigation of spray images that the injector under consideration meets an angular injection requirement at all of the injection pressures specified. Spray shedding is also featured with a schematization of the frozen images. Dynamic behavior of spray droplets and their atomization evolution along the geometric axis of injector-nozzle orifice with varying injection pressures are scrutinized by depicting the cumulative droplet populations mapped onto a velocity-diameter domain. The evolutionary behavior is further authenticated on the basis of the distribution for number density and turbulent intensity of droplets. It is inferred that the higher injection pressure generates the smaller droplets undergoing the greater deceleration along the spray stream due to the augmented Reynolds number and Weber number. Even though spray characterization of the current type of injectors is to be inevitable to their performance estimation at the design stage, it has never been reported to date. It is expected that the present results will be able to contribute to the appreciation of injector performance and to the design engineering of brand-new thrusters as well.
机译:通过液滴的演化特性解决了在5牛顿级液体推进器中使用的喷射器的喷雾特性。通过双模式相位多普勒风速计(DPDA)测量获得有关液滴的信息,包括速度,直径,数量密度和湍流强度。此外,通过使用激光片的流动可视化技术,可以补充喷雾宏观视图的瞬时图像。通过对喷射图像的研究表明,所考虑的喷射器在所有指定的喷射压力下均满足角喷射要求。喷雾脱落还具有冻结图像的示意图。通过描绘映射到速度直径域上的累积液滴数量,可以检查液滴的动态行为及其在不同喷射压力下沿喷嘴孔口几何轴的雾化演变。基于液滴的数量密度和湍流强度的分布,进一步证实了进化行为。可以推断,由于雷诺数和韦伯数的增加,较高的喷射压力会产生较小的液滴,使液滴沿喷雾流产生较大的减速度。尽管在设计阶段对当前类型的喷油器进行喷雾特性分析对于其性能评估是不可避免的,但迄今为止尚未有过报道。可以预期,目前的结果将有助于提高喷油器的性能,也有助于新推力器的设计工程。

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