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EFFECTS OF FLOW CONTROL ON FORCED RESPONSE AND PERFORMANCE OF A TRANSONIC COMPRESSOR

机译:流量控制对跨音压缩机强制响应的影响

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The main contributor to the high-cycle fatigue of compressor blades is the response to aerodynamic forcing functions generated by an upstream row of stators or inlet guide vanes. Resonant response to engine order excitation at certain rotor speeds is especially damaging. Studies have shown that flow control by trailing edge blowing (TEB) can reduce stator wake strength and the amplitude of the downstream rotor blade vibrations generated by the unsteady stator-rotor interaction. In the present study, the effectiveness of TEB to reduce forced blade vibrations was evaluated in a modem transonic compressor rig. A row of wake generator (WG) vanes with TEB capability was installed upstream of the rotor, which was instrumented with strain gages. Data was collected with and without TEB at various rotor speeds involving resonance crossings. Using 0.8% of the compressor core flow for TEB along the full WG-span, rotor blade strain was reduced by 66% at the first torsional resonance crossing. Substantial reductions were also achieved with only partial span TEB. The results demonstrate the effectiveness of the TEB technique for reducing rotor vibrations in the complex flow environment of a closely-spaced transonic stage row. Moderate increases in stage performance were also measured.
机译:压缩机叶片的高循环疲劳的主要原因是对由上游行或入口导向叶片产生的空气动力学强制功能的响应。在某些转子速度下对发动机顺序激发的共振响应尤其损害。研究表明,通过后缘吹制(TEB)的流量控制可以减小由不稳定的定子转子相互作用产生的定子唤醒强度和下游转子叶片振动的幅度。在本研究中,在调制解调器跨音速压缩机钻机中评估了TEB减少强制叶片振动的有效性。具有TEB能力的一排唤醒发生器(WG)叶片安装在转子的上游,用应变计仪表。在涉及共振交叉的各种转子速度下,使用TEB收集数据。使用0.8%的TEB沿全WG跨度的压缩机芯流量,转子叶片应变在第一个扭转共振交叉处减少66%。只有部分跨度TEB也实现了实质性降低。结果证明了TEB技术的有效性,用于减少紧密间隔的跨音阶级排的复杂流动环境中的转子振动。还测量了阶段性能的适度增加。

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