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Influence of pressure driven secondary flows on the behavior of turbofan forced mixers

机译:压力驱动的二次流对涡轮风扇强制混合器性能的影响

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摘要

A finite difference procedure was developed to analyze the three dimensional subsonic turbulent flows in turbofan forced mixer nozzles. The method is based on a decomposition of the velocity field into primary and secondary flow components which are determined by solution of the equations governing primary momentum, secondary vorticity, thermal energy, and continuity. Experimentally, a strong secondary flow pattern was identified which is associated with the radial inflow and outflow characteristics of the core and fan streams and forms a very strong vortex system aligned with the radial interface between the core and fan regions. A procedure was developed to generate a similar generic secondary flow pattern in terms of two constants representing the average radial outflow or inflow in the core and fan streams as a percentage of the local streamwise velocity. This description of the initial secondary flow gave excellent agreement with experimental data. By identifying the nature of large scale secondary flow structure and associating it with characteristic mixer nozzle behavior, it is felt that the cause and effect relationship between lobe design and nozzle performance can be understood.
机译:开发了有限差分程序来分析涡轮风扇强制混合器喷嘴中的三维亚音速湍流。该方法基于速度场分解为一次和二次流动分量,这些分量通过控制一次动量,二次涡度,热能和连续性的方程式的解确定。实验上,确定了强的二次流型态,它与堆芯和风机流的径向流入和流出特性有关,并形成了一个非常强的涡流系统,与堆芯和风机区域之间的径向界面对齐。开发了一种程序,以生成两个相似的通用二次流模式,这两个常数代表堆芯和风机流中的平均径向流出量或流入量(以局部流向速度的百分比表示)。最初的二次流的描述与实验数据非常吻合。通过识别大型二次流结构的性质并将其与混合器喷嘴的特性相关联,可以理解,可以理解凸耳设计与喷嘴性能之间的因果关系。

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