首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >AERODYNAMIC INVESTIGATION OF MULTI-SWIRLER ARRAY UTILIZING LOW AND HIGH SWIRL SWIRLER COMBINATIONS FOR A LEAN DIRECT INJECTION COMBUSTOR
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AERODYNAMIC INVESTIGATION OF MULTI-SWIRLER ARRAY UTILIZING LOW AND HIGH SWIRL SWIRLER COMBINATIONS FOR A LEAN DIRECT INJECTION COMBUSTOR

机译:小型直接喷射燃烧器利用低涡流和高涡流组合的多涡流阵列的气动研究

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An experimental study has been carried out to investigate the isothermal aerodynamic behavior and to discern the effects on the flow-field resulting from interactions between low and high-swirl counter-rotating radial-radial air swirlers in three Lean Direct Injection configurations utilizing a 3 x 3 array of radial-radial swirlers. Configurations consisted of varying combinations of two swirlers featuring high and low swirl intensity. Two-dimensional velocity data is presented from the measurement of 37 planes spanning the width of the LDI array. Particle Image Velocimetry (PIV) was used to take velocity field measurements and to study the inter-swirler interactions. Three test cases were studied which utilized a combination of a low and high Swirl Number swirlers: the baseline case utilized 9 low swirl (SN about 0.6) swirlers, the second case used one high swirl (SN about 1.0) swirler in the center of the array, and the third case used 3 high swirl swirlers in a row within the array. The flow field developed by the three experimental cases differed significantly and inter-swirler interaction proved significant and highly complex. The velocity fields developed from swirlers in an array varied from that of the individual swirler, and as such, it should not be expected that the array have the same characteristics of the individual swirler. Placing a high-swirl swirler in a low-swirl array increased swirler interaction and led to substantial favorable changes in velocity fields and the recirculation zones developed downstream of each swirler in comparison to the baseline configuration including the development of a large CTRZ with weakened intensity for increased flame anchoring potential.
机译:已经进行了一项实验研究,以研究等温空气动力学行为,并辨别在低倾斜和高涡流反向旋转径向-径向空气旋流器之间的相互作用,这是在3种精益直喷配置中利用3 x进行的。 3个径向放射旋流器阵列。配置由具有高和低旋流强度的两个旋流器的不同组合组成。通过测量横跨LDI阵列宽度的37个平面来提供二维速度数据。粒子图像测速(PIV)用于进行速度场测量并研究旋流器之间的相互作用。研究了三个使用低涡流旋流器和高涡流旋流器的测试案例:基线情况使用了9个低旋流(SN约0.6)旋流器,第二种情况使用了一个高旋流(SN约1.0)旋流器。阵列,第三种情况是在阵列内连续使用3个高旋流旋流器。这三个实验案例形成的流场存在显着差异,旋流器之间的相互作用被证明是显着且高度复杂的。由阵列中的旋流器产生的速度场不同于各个旋流器的速度场,因此,不应期望该阵列具有各个旋流器的相同特性。与基线配置相比,将高旋流旋流器放置在低旋流阵列中会增加旋流器的相互作用,并导致速度场发生明显的有利变化,并且每个旋流器下游形成的回流区,包括开发出强度减弱的大型CTRZ。增加了火焰锚固的潜力。

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