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AIR SPLITS RESEARCH OF MULTI-SECTOR COMBUSTOR WITH FLOW NETWORK APPROACH AND EXPERIMENTS

机译:流动网络的多段燃烧器空气飞溅研究与实验

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Multi-sector combustor tests are essential to aero-engine annular combustor development. For the test rig design, it is necessary to ensure that the pressure drop and flow split to the various portions of multi-sector combustor are consistent with the combustor component. This paper introduces a new kind of multi-sector combustor rig. The diffuser system of the test rig is different with the combustor component. This test rig is simple in structure and easy to machine. To evaluate the flow split and pressure drop of the test rig, a ID-flow network approach is applied to multi-sector combustor rig design. The calculated results show good agreement with the experiment data. In order to study whether the test rig can simulate flow split and pressure loss of combustor components, flow split and pressure loss under different design features are analyzed. Result shows that by changing the effective area of inner/outer annular inlet baffle and inner/outer bleed air plate, inner/outer liner pressure drop and the ratio of air flow to W_(31c) can be changed in a wide range. Thus, this kind of multi-sector combustor rig is convenient to change the multi-sector combustor test rig design to meet the requirements of the pressure drop and flow split design of combustor component, even when the rig has been manufactured.
机译:多部门燃烧室测试对于航空发动机环形燃烧室的开发至关重要。对于试验台设计,必须确保压降和分流到多扇燃烧室各个部分的流量与燃烧室组件一致。本文介绍了一种新型的多扇区燃烧室装置。试验台的扩散器系统与燃烧器组件不同。该试验台结构简单,易于加工。为了评估测试设备的流量分配和压降,将ID流网络方法应用于多扇区燃烧器设备的设计。计算结果与实验数据吻合良好。为了研究试验台能否模拟燃烧室部件的分流和压力损失,分析了不同设计特征下的分流和压力损失。结果表明,通过改变内/外环形进气折流板和内/外引气板的有效面积,可以在宽范围内改变内/外衬套压降和气流与W_(31c)的比率。因此,即使已经制造出这种多扇区燃烧室设备,也可以方便地改变多扇区燃烧室测试设备的设计,以满足燃烧室部件的压降和分流设计的要求。

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