首页> 外文会议>ASME turbo expo >RADIAL SWIRLERS AND MIXING TUBE ASSEMBLY AERODYNAMICS AND PERFORMANCE PARAMETERS EVALUATION PART 1 HOT-WIRE MEASUREMENTS IN THE SWIRLER EXIT PLANE
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RADIAL SWIRLERS AND MIXING TUBE ASSEMBLY AERODYNAMICS AND PERFORMANCE PARAMETERS EVALUATION PART 1 HOT-WIRE MEASUREMENTS IN THE SWIRLER EXIT PLANE

机译:径向旋流器和混合管总成的空气动力学和性能参数评估,第1部分,旋流器出口平面的热线测量

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Swirling flows have been widely used to generate the suitable conditions for self substained flames inside modern aeroengine combustors, both for the recirculation generation capability and turbulence intensity. Nevertheless the recent attempt to employ lean premixed prevaporized burners, which can be affected by pressure and velocity fluctuations, requires a deep knowledge of the parameters influencing the swirlers aerodynamics.The purpose of this experimental work is to characterize the aerodynamics of the assembly composed by a centripetal swirler and a straight mixing tube as a function of basic geometrical design parameters. The typical geometrical configuration of the centripetal swirler - mixing tube assembly allows to identify a group of geometrical parameters which can influence the characteristics of the flow leaving both the swirler and the straight duct: the swirler geometrical angle, the vane pitch to chord ratio, and the swirler axial height to mixing tube diameter ratio. Their range of variation has been obtained through the analysis of existing prototypes. According to the range of variation analysis a minimum number of geometries (combinations of the fundamental geometrical parameters) has been defined and tested in order to obtain significant information on the relationships between geometrical parameters and aerodynamic performances.The complex aerodynamic phenomena, which take place both inside and downstream the swirler - mixing tube assembly, have been studied with different and complementary techniquesin order to have a complete characterization of the effect of the geometrical parameters variation on many aspects of the flow.All the measuring campaign has been performed at fixed total pressure drop between the settling chamber and the mixing tube outlet section.Present work has been divided in two parts. In the first part, which is here presented, velocity components, turbulence intensity and the flow angle has been measured by means of a two-components crossed miniature hot-wire probe, which has been traversed circumferentially downstream of the swirler vanes.Results from the hot-wire anemometer measuring campaign allow basically to evaluate two main performance parameters which are the swirler velocity reduction coefficient and the mass averaged flow angle, that is actually the main indicator of the swirler capability to deflect the flow and consequently it influences largely the phenomena which can occur in the mixing tube or downstream of the discharge section.
机译:旋流已被广泛用于为现代航空发动机燃烧器内的自含火焰产生合适的条件,无论是再循环能力还是湍流强度。然而,最近尝试使用可能受到压力和速度波动影响的稀薄预混预蒸发燃烧器,需要对影响旋流器空气动力学的参数有深入的了解。 这项实验工作的目的是表征由向心旋流器和直混合管组成的组件的空气动力学特性,它是基本几何设计参数的函数。向心旋流器-混合管组件的典型几何结构允许确定一组几何参数,这些参数会影响离开旋流器和直管的流动特性:旋流器的几何角度,叶片螺距与弦比以及旋流器轴向高度与混合管直径之比。它们的变化范围是通过对现有原型的分析获得的。根据变化分析的范围,已经定义并测试了最小数量的几何形状(基本几何参数的组合),以便获得有关几何参数与空气动力性能之间关系的重要信息。 在旋流器-混合管组件的内部和下游都发生了复杂的空气动力学现象,已经用不同的补充技术进行了研究。 为了完全表征几何参数变化对流的许多方面的影响。 所有的测量工作都是在沉降室和混合管出口之间的总压降固定的情况下进行的。 目前的工作分为两部分。在此处显示的第一部分中,速度分量,湍流强度和流动角是通过两部分交叉的微型热线探针测量的,该探针在旋流器叶片的下游沿周向移动。 热线风速计测量活动的结果基本上可以评估两个主要性能参数,即旋流器速度降低系数和质量平均流量角,这实际上是旋流器偏转气流的主要指标,因此,它对流速的影响很大在混合管中或在卸料段下游可能发生的现象。

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