首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2009 >UNSTEADY MODELLING OF TIP CLEARANCE FLOW IN AN INLET VANED, LOW-SPEED AXIAL FAN: DETERMINISTIC INTERACTIONS OF STATOR WAKES AND TIP VORTEX STRUCTURES
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UNSTEADY MODELLING OF TIP CLEARANCE FLOW IN AN INLET VANED, LOW-SPEED AXIAL FAN: DETERMINISTIC INTERACTIONS OF STATOR WAKES AND TIP VORTEX STRUCTURES

机译:进气叶片式低速轴流风扇尖端间隙流动的非定常模型:定子尾流和尖端涡旋结构的确定性相互作用

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In last years, numerical modelling has reached a significant level of maturity in the analysis of axial turbomachinery flows. Full-unsteady, three-dimensional computations have been demonstrated as a powerful tool to characterize viscous phenomena on blade row interactions and blade passage structures. In particular, major effects have been focused on the study of deterministic fluctuations in order to quantify the impact of periodic unsteadiness on the time-averaged flow. An additional complexity concerns to the influence of the tip vortex structures on the deterministic patterns. Hence, some researchers have advanced experimental evidences on the contribution of tip leakage flow to the time-resolved distributions. Tip vortex, shedding energy at a wide range of scales, has been shown to be significant in the description of the spanwise momentum transfer and the appearance of mixing losses. Recently, the authors have investigated the impact of the tip vortex on the passage flow structures of a jet fan with symmetric blades. This work revealed valuable information about tip vortex transport in low-speed axial turbomachinery and demonstrated the ability of commercial codes to simulate three-dimensional, vortical structures with high accuracy. The present paper takes advantage of the same numerical methodology to highlight the influence of the deterministic correlations that describe the stator-rotor interaction on the tip vortex in a single-stage axial fan. Up to now, few works addressing deterministic contributions over the tip leakage flow are available in the literature, so more investigation is needed to understand the complexity of these physical mechanisms. Our contribution to the topic is based on a 3D, unsteady numerical simulation of the flow within a reduced periodic domain of thefull-annulus axial stage, composed by only 3-vane and 2-blade passages. This simplification allows an enhancement of the grid density when massive parallel computations are employed. Also, comparison with experimental data measured using hotwire anemometry is provided to validate the numerical model. The results show how the non-uniformities of the stator wake-core structure in the relative frame of reference are conditioning the tip leakage flow, addressing the influence of the operating conditions or the interrow spacing. The final objective is to provide levels of instabilities in the tip vortex derived from deterministic non-uniformities associated to vane-to-vane flow patterns, applicable in further modelling of deterministic stresses.
机译:近年来,数值模型在分析轴向涡轮机械流量方面已经达到了相当成熟的水平。完全不稳定的三维计算已被证明是表征叶片行相互作用和叶片通道结构上粘性现象的有力工具。特别是,主要影响集中在确定性波动的研究上,以便量化周期性不稳定对时间平均流量的影响。另外的复杂性涉及尖端涡旋结构对确定性模式的影响。因此,一些研究人员已经获得了有关尖端泄漏流对时间分辨分布的贡献的先进实验证据。尖端涡流在各种尺度上均会释放出能量,在描述翼展方向动量传递和出现混合损失时已显示出重要意义。最近,作者研究了尖端涡流对具有对称叶片的喷气风扇的通道流动结构的影响。这项工作揭示了有关低速轴流涡轮机中的尖端涡流传输的有价值的信息,并展示了商业代码以高精度模拟三维涡旋结构的能力。本文利用相同的数值方法来强调确定性相关性的影响,该确定性相关性描述了单级轴流风扇中的定子-转子相互作用对叶尖涡流的影响。到目前为止,文献中很少有涉及尖端泄漏流的确定性贡献的工作,因此需要更多的研究来理解这些物理机制的复杂性。我们对该主题的贡献是基于3D的非定常数值模拟,该模拟是流体在减小的周期域内的流动。 全环空轴向平台,仅由3个叶片和2个叶片通道组成。当采用大规模并行计算时,这种简化可以提高网格密度。此外,与使用热线风速仪测得的实验数据进行了比较,以验证数值模型。结果表明,定子尾铁心结构在相对参考系中的不均匀性如何调节尖端泄漏流,从而解决了工作条件或行距的影响。最终目标是提供由与叶片到叶片流动模式相关的确定性不均匀性得出的尖端涡旋的不稳定性水平,适用于确定性应力的进一步建模。

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