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Unsteady Aspects of Multi-Interacting Swirlers Using POD Analysis

机译:使用POD分析的多相互作用旋流器的不稳定方面

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Twin annular premixed swirler known as TAPS by GE has provided an effective solution to generate low NOx combustion by implementing both diffusion and premixed flames. The fuel injector is less susceptible to combustion instabilities owing to its central diffusion flame and eco-friendly due to its radial premixed swirler. To this extent, 2D PIV experiment was conducted on three newly designed triple swirlers to measure their corresponding velocity fields. The swirlers were designed in a way that the inner and intermediate swirlers are axial type, counter-rotating and remained unchanged with three different radial type outer swirlers. The design characteristic swirl numbers of the outer swirlers were 0.5, 1.0 and 1.5, to impose low, medium and intense swirling motion, respectively. The main objective of the current study is to investigate the interaction of the shear layers emerging from the outer swirler with the both inner and intermediate. Air is used as working fluid and experiments were done in confined condition. The study of the mean flow field indicated that the outer swirler dominates the flow field and defines the behavior of the main features such as swirling jet angle, the resultant inner recirculation zone, and the wall stagnation points. Proper Orthogonal Decomposition (POD) analysis showed a wide range of low-frequency modes spread over the entire domain and stated the domination of the outer swirling flow. It was found that an increase in the intensity of the outer swirler contributes to an intensified interaction with the model chamber walls highlighting the significance of the confinement ratio in higher swirl numbers.
机译:GE称为TAPS的双环形预混旋流器通过实施扩散和预混火焰,提供了一种有效的解决方案,可降低NOx燃烧量。由于其中心扩散火焰,燃料喷射器不易受到燃烧不稳定的影响,并且由于其径向预混合旋流器,因此对环境友好。在此程度上,对三个新设计的三重旋流器进行了二维PIV实验,以测量其相应的速度场。旋流器的设计方式是,内部旋流器和中间旋流器为轴向型,反向旋转,并且对于三种不同的径向外部旋流器保持不变。外旋流器的设计特征旋流数分别为0.5、1.0和1.5,以施加低,中和强旋流运动。当前研究的主要目的是研究从外部旋流器出来的剪切层与内部和中间层之间的相互作用。将空气用作工作流体,并在密闭条件下进行了实验。对平均流场的研究表明,外旋流器主导了流场,并定义了主要特征的行为,例如旋流射流角,最终的内部再循环区和壁的滞留点。正确的正交分解(POD)分析表明,低频模式分布在整个域中,并表明了外部旋流的主导地位。发现外旋流器强度的增加有助于与模型腔室壁的相互作用增强,从而突出了较高旋流数时限制比的重要性。

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