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Variability of rotor wake interactions and airfoil unsteady aerodynamics

机译:转子唤醒相互作用和翼型不稳定空气动力学的可变性

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Multistage interaction effects on rotor blade-to-blade wake variability and the resulting downstream vane row unsteady aerodynamic response are experimentally investigated in a high speed fan stage. Multistaging effects on the rotor wake arequantified by acquiring data over two complete rotor revolutions at each of several IGV clocking positions relative to downstream stationary probes. The resulting downstream vane response data are acquired over a range of steady loading conditions, withboth design and off-design operation of the rotor considered. Multistage interactions are shown to significantly affect the rotor wake characteristics and lead to the generation of rogue wakes. The fundamental periodicity of these interactions is onecomplete rotor revolution due to the unequal number of blades and vanes in the machine. The rotor wake and resultant vane row unsteady aerodynamic response variability are also quantified. Off-design rotor operation results in wakes with the largestvariability, on the order of the average velocity deficit. The vane response variability is even more pronounced, being as large as 160% of the maximum average unsteady lift over one blade pass period.
机译:在高速风扇阶段实验研究了对转子叶片到叶片唤醒变异性的多级相互作用效应和所得到的下游叶列不稳定的空气动力学反应。通过在相对于下游固定探针中获取多个IGV时钟位置的两个完整的转子转旋转数据,通过在两个完整的转子转旋转中获得多销效果。得到的下游叶片响应数据是在一系列稳定的负载条件下获得的,其中稳定的转子的设计和偏离设计操作。显示多级相互作用显着影响转子唤醒特性并导致流氓醒来的产生。由于机器中的叶片和叶片数量不等,这些相互作用的基本周期是持续的转子革命。转子唤醒和所得到的叶片行不稳定的空气动力学响应变异性也是量化的。非设计转子操作导致唤醒最大的速度,大约是平均速度缺陷的顺序。叶片响应变异性甚至更明显,在一个刀片通过一个刀片通过的最大平均不稳定升力的160%。

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