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UNSTEADY FLOW STRUCTURES IN RADIAL SWIRLER FED FUEL INJECTORS

机译:径向旋流器馈电燃料喷射器中的不稳定流动结构

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Many fuel injector geometries proposed for lean-premixed combustion systems involve the use of radial swirlers. At the high swirl numbers needed for flame stabilisation, several complex unsteady fluid mechanical phenomena such as vortex breakdown and recirculation zone precession are possible. If these unsteady aerodynamic features are strongly periodic, unwanted combustion induced oscillation may result. The present paper reports on an isothermal experimental study of a radial swirler fed fuel injector, and examines the dynamical behaviour of the unsteady aerodynamic flow structures observed. Particle Image Velocimetry (PIV) is used to capture the instantaneous appearance of vortex structures both internal to the fuel injector, and externally in the main flame-stabilising recirculation zone. Multiple vortex structures are observed. Vector field analysis is used to identify specific flow structures and perform both standard and conditional time averaging to reveal the modal characteristics of the structures. This allows analysis of the origin of high turbulence regions in the flow and links between internal fuel injector vortex breakdown and external unsteady flow behaviour. The data provide a challenging test case for Large Eddy Simulation methods being developed for combustion system simulation.
机译:为瘦预混燃烧系统提出的许多燃料喷射器几何形状涉及使用径向旋流器。在火焰稳定所需的高漩涡数处,可能的几种复杂的非定常流体机械现象,例如涡流击穿和再循环区预介质。如果这些不稳定的空气动力学特征是强烈的周期性,则可能导致不需要的燃烧感应振荡。本文报道了一种径向旋流喂油喷射器的等温实验研究,并研究了观察到不稳定的空气动力学流动结构的动力学行为。粒子图像速度(PIV)用于捕获燃料喷射器内部的涡旋结构的瞬时外观,并且在主火焰稳定的再循环区外部。观察到多种涡旋结构。矢量场分析用于识别特定的流量结构,并执行标准和条件时间平均,以显示结构的模态特性。这允许分析内部燃料喷射器涡流击穿和外部非定常流动行为之间的流动和链接中的高湍流区域的起源。数据为用于燃烧系统仿真开发的大型涡流仿真方法提供了一个具有挑战性的测试用例。

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