首页> 外文会议>ASME Turbo Expo vol.6 pt.A; 20050606-09; Reno-Tahoe,NV(US) >THE USE OF A CIRCUMFERENTIALLY NONUNIFORM STATOR TO ATTENUATE HARMFUL AERODYNAMIC AND MECHANICAL INTERACTIONS IN AN ADVANCED MIXED FLOW SPLITTERED ROTOR/ TANDEM VARIABLE STATOR LP COMPRESSOR
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THE USE OF A CIRCUMFERENTIALLY NONUNIFORM STATOR TO ATTENUATE HARMFUL AERODYNAMIC AND MECHANICAL INTERACTIONS IN AN ADVANCED MIXED FLOW SPLITTERED ROTOR/ TANDEM VARIABLE STATOR LP COMPRESSOR

机译:使用周向非均匀定子来减弱高级混合流分裂转子/串联可变定子LP压缩机中的有害气动和机械相互作用

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A potential flow computer model that can handle blade row interaction problems has been used to analyze the circumferential static pressure distribution at the trailing edge plane of an advanced mixed flow splittered rotor low pressure compressor produced by a downstream tandem stator/ strut system. The computer model is based on the Douglas-Neumann formulation and features a powerful automated optimization feature which can define a restagger pattern that will either minimize stator blade-to-blade loading differences or minimize the circumferential static pressure nonuniformity on a preselected axial plane. The latter approach was used presently to design a circumferentially nonuniform stagger angle distribution for the second row of the tandem stator that reduced the circumferential static pressure variation, and consequently its harmonic excitation, on the upstream rotor. Comparison between the predicted static pressure distribution for the baseline case (with uniform stagger angles) and the optimized design showed a dramatic reduction in the circumferential pressure variation. Fourier analyses of the pressure distributions confirmed a substantial decrease in the magnitude of the harmonic index thought to be responsible for the observed severe rotor vibration. The analytical results were confirmed by back-to-back engine tests of the baseline and restaggered tandem stators, where light probe measurements of splitter blade synchronous response showed a proportional decrease in rotor response for the optimized stator configuration. The restagger was implemented quickly and easily using simple modifications to the stator unison ring. With the high splitter blade deflections reduced to an acceptable level, the engine was able to safely accelerate through the former prohibited speed range and continue with the planned test sequence. The restaggered stator design and test effort, from initial problem statement through a successful demonstration test in the gas generator, was accomplished in less than 6 weeks.
机译:已使用可以处理叶片行相互作用问题的潜在流量计算机模型来分析由下游串联定子/支撑系统生产的先进的混流分流转子低压压缩机的后缘平面处的周向静压力分布。该计算机模型基于Douglas-Neumann公式,并具有强大的自动化优化功能,该功能可以定义一种重排模式,该模式可以最大程度地减少定子叶片之间的载荷差异,或最小化预选轴向平面上的周向静压不均匀性。当前使用后一种方法来为串联定子的第二行设计周向不均匀的交错角分布,该分布减小了上游转子上的周向静压变化并因此减小了其谐波激励。比较基线情况(具有均匀的交错角度)的预测静态压力分布和优化的设计,可以显着减小周向压力变化。压力分布的傅立叶分析证实,认为引起严重的转子振动的谐波指数的幅度大大降低。通过基线和交错式串联定子的背靠背发动机测试证实了分析结果,其中分流叶片同步响应的光探头测量显示,对于优化的定子配置,转子响应呈比例下降。通过对定子统一环进行简单的修改,即可轻松快速地实现restagger。随着高分流器叶片挠度减小到可接受的水平,发动机能够安全地加速通过之前的禁止速度范围,并继续计划的测试程序。从最初的问题陈述到气体发生器的成功演示测试,重新设计的定子设计和测试工作不到6周即可完成。

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