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Experimental investigation of a fluidic actuator generating hybrid-synthetic jets

机译:产生混合混合射流的流体作动器的实验研究

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摘要

Hybrid-synthetic jets are similar to the usual zero-time-mean-flow synthetic jets, differing from them by superposition of a steady outflow from the nozzle. This makes the hybrid-synthetic jets suitable for applications like impingement cooling, where the usual synthetic jets fail because of the re-ingestion of the heated fluid. The discussed actuator generating these jets operates without any moving parts. In contrast to the better known rectifier type actuators developed recently e.g. by Travnicek, Fedorchenko, and others, it is based on the idea of a fluidic alternator. Experiments with an alternatior-type actuator model, operating with air, concentrated on the oscillation frequency and its dependence on parameters like feedback loop length. In spite of similarity to the analogous actuator described in Tesar et al. in 2006 the present results are very different. (c) 2007 Elsevier B.V. All rights reserved.
机译:混合合成射流类似于通常的零时平均流量合成射流,区别在于它们叠加了从喷嘴流出的稳定流出物。这使得混合合成射流适用于冲击冷却等应用,在这种情况下,通常的合成射流由于重新吸入加热的流体而失效。所讨论的产生这些射流的致动器在没有任何运动部件的情况下运行。与最近开发的例如众所周知的整流器型致动器相反。由Travnicek,Fedorchenko等人撰写,它基于流体交流发电机的思想。在空气操作的交流发电机执行器模型上进行的实验集中于振荡频率及其对诸如反馈回路长度等参数的依赖性。尽管与Tesar等人描述的类似执行器相似,目前的结果在2006年有很大的不同。 (c)2007 Elsevier B.V.保留所有权利。

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