首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.6 pt.B; 20070514-17; Montreal(CA) >COMPRESSOR/DIFFUSER/COMBUSTOR AERODYNAMIC INTERACTIONS IN LEAN MODULE COMBUSTORS
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COMPRESSOR/DIFFUSER/COMBUSTOR AERODYNAMIC INTERACTIONS IN LEAN MODULE COMBUSTORS

机译:小型模块燃烧器中的压缩机/扩散器/燃烧器气动相互作用

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摘要

The paper reports an experimental investigation into the possibility of increased interactions between combustor external aerodynamics and upstream components e.g. pre-diffuser, compressor OGV and even the compressor rotor, caused by the trend in lean module fuel injectors to larger mass flows entering the combustor cowl. To explore these component interaction effects, measurements were made on a fully annular rig comprising a single stage compressor, an advanced integrated OGV/pre-diffuser, followed by a dump diffuser and a generic combustor flametube with metered cowl and inner/outer annulus flows. The flow split entering the cowl was increased from 30% to 70%. The results demonstrate that, with fixed geometry, as the injector flow increases, the performance of the pre-diffuser and feed annuli suffer. Pre-diffuser losses increase and at high injector flow rates the diffuser moves close to separation. The substantial circumferential variation in cowl flow can feed upstream and cause rotor forcing. Notable differences in performance were observed inline and between injectors at OGV exit, suggesting that geometry changes such as an increased dump gap or non axisymmetric pre-diffuser designs may be beneficial.
机译:该论文报告了一项实验研究,探讨了燃烧室外部空气动力学与上游部件(例如燃烧室)之间相互作用增加的可能性。由于稀模块燃料喷射器趋向于进入燃烧器整流罩的较大质量流的趋势,导致了预扩散器,压缩机OGV甚至压缩机转子。为了探索这些组件之间的相互作用,在一个全环形的钻机上进行了测量,该钻机包括一个单级压缩机,一个先进的集成式OGV /预扩散器,一个卸料扩散器和一个带有计量前罩和内部/外部环流的通用燃烧器火焰管。进入前围的流量分配从30%增加到70%。结果表明,在几何形状固定的情况下,随着进样器流量的增加,预扩散器和进料环的性能会受到影响。扩压器前的损失增加,并且在高进样器流速下扩压器接近分离。前围气流的较大圆周变化会向上游进料并导致转子受力。在管道内和在OGV出口处的喷射器之间观察到明显的性能差异,这表明几何形状的变化(例如增加的排料间隙或非轴对称的预扩散器设计)可能是有益的。

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