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A study on vortex flow control on inlet distortion in the re-engined 727-100 center inlet duct using computational fluid dynamics

机译:利用计算流体力学对重新设计的727-100中心进气道中进气道变形进行涡流控制的研究

摘要

Computational fluid dynamics was used to investigate the management of inlet distortion by the introduction of discrete vorticity sources at selected locations in the inlet for the purpose of controlling secondary flow. These sources of vorticity were introduced by means of vortex generators. A series of design observations were made concerning the importance of various vortex generator design parameters in minimizing engine face circumferential distortion. The study showed that vortex strength, generator scale, and secondary flow field structure have a complicated and interrelated influence on the engine face distortion, over and above the initial geometry and arrangement of the generators. The installed vortex generator performance was found to be a function of three categories of variables: the inflow conditions, the aerodynamic characteristics associated with the inlet duct, and the design parameters related to the geometry, arrangement, and placement of the vortex generators within the outlet duct itself.
机译:计算流体动力学用于研究进气道变形的管理,方法是在进气道的选定位置引入离散涡流源,以控制次级流量。这些涡源是通过涡发生器产生的。进行了一系列的设计观察,涉及各种涡流发生器设计参数在最小化发动机端面圆周变形方面的重要性。研究表明,除了发电机的初始几何形状和布置之外,涡流强度,发电机规模和二次流场结构对发动机面畸变具有复杂且相互关联的影响。已发现安装的涡流发生器性能是三类变量的函数:流入条件,与进气道相关的空气动力学特性以及与涡流发生器在出口内的几何形状,布置和位置有关的设计参数管道本身。

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