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Influence of Variable Geometry Compressor on Transient Performance of Counter-Rotating Open Rotor Engines

机译:可变几何压缩机对反向旋转开式转子发动机瞬态性能的影响

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摘要

This work describes a methodology used for counter-rotating (CR) propellers performance estimation. The method is implemented in an in-house program for gas turbine performance prediction, making possible the simulation of the counter-rotating open rotor (CROR) architecture. The methodology is used together with a variable geometry compressor control strategy to avoid surge conditions. Two cases are simulated under transient operation for both fixed and variable geometry compressor. The influence of the variable geometry control on the transient performance of CROR engines is evaluated and a comprehensive understanding on the transient behavior of this type of engine could be obtained. It is shown that the use of the variable geometry compressor control does not significantly affect the overall engine performance, while avoiding the surge conditions, thus ensuring the engine operation safely.
机译:这项工作描述了用于反向旋转(CR)螺旋桨性能估算的方法。该方法在用于燃气轮机性能预测的内部程序中实现,从而使反向旋转开放转子(CROR)体系结构的仿真成为可能。该方法与可变几何压缩机控制策略一起使用,以避免喘振情况。对于固定和可变几何形状的压缩机,在瞬态运行下模拟了两种情况。评估了可变几何控制对CROR发动机瞬态性能的影响,并且可以全面了解此类发动机的瞬态特性。结果表明,使用可变几何形状的压缩机控制不会显着影响整体发动机性能,同时避免了喘振状况,从而确保了发动机安全运行。

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