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Cantilevered stator hub leakage flow control and loss reduction using non-uniform clearances

机译:悬臂式定子轮毂泄漏流量控制和使用非均匀间隙减少损耗

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Hub leakage flow between the cantilevered stator and the hub wall is responsible for the deficit of stator aerodynamic performance, and the interaction between the leakage and main flows leads to leakage vortex and flow blockages in the hub region, thus deteriorating the stator or even the compressor performance. The paper conducts a numerical investigation on the influence of non-uniform clearances on the stator aerodynamic performance in a 1.5-stage axial-flow compressor. The main purpose is to find an aerodynamically preferable clearance shape to control the leakage flow and the associated aerodynamic losses. The clearance shapes considered include uniform, expanding and shrinking clearances from blade leading edge to trailing edge. The computed results show that, compared with the uniform clearance, the expanding clearance has powerful effect on weakening the leakage flow near the leading edge and also has better inhibition of the leakage vortex, thus achieving aerodynamic benefits gain in the hub region. But the shrinking clearance has the opposite effect on the leakage flow and leads to more losses than the uniform clearance. In addition, the overall aerodynamic loss of the stator with the expanding clearance is reduced with the increment of the clearance expansion ratio. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:悬臂式定子与轮毂壁之间的轮毂泄漏流是造成定子空气动力性能下降的原因,而泄漏流与主流之间的相互作用会导致轮毂区域中的泄漏涡流和流动阻塞,从而使定子甚至压缩机恶化性能。本文对1.5级轴流压缩机中间隙不均匀对定子空气动力性能的影响进行了数值研究。主要目的是找到一种空气动力学上理想的间隙形状,以控制泄漏流和相关的空气动力学损失。所考虑的间隙形状包括从叶片前缘到后缘的均匀,扩展和收缩的间隙。计算结果表明,与均匀间隙相比,膨胀间隙对减弱前缘附近的泄漏流具有强大的作用,并且对泄漏涡流的抑制效果更好,从而在轮毂区域获得了空气动力学上的收益。但是,收缩间隙对泄漏流的作用相反,导致损失比均匀间隙大。另外,随着间隙膨胀率的增加,具有增大的间隙的定子的整体空气动力学损失减小。 (C)2016 Elsevier Masson SAS。版权所有。

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