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槽道和圆形合成射流在边界层分离控制中的模拟。

Simulation of slot and round synthetic jets in the context of boundary-layer separation control.

机构信息

Department of Aeronautics, Imperial College London, London, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2011 Apr 13;369(1940):1495-512. doi: 10.1098/rsta.2010.0363.

Abstract

Synthetic jets--also referred to as mass-less jets--offer the potential of effective, on-demand, fluid-based control of separating boundary layers on highly loaded aerodynamic surfaces, without the need for a mass source. However, the control authority that may optimally be derived from such jets, and any generality of the underlying flow physics are obscured by the wide range of geometric and flow parameters that contribute to their performance characteristics. The present article reviews the state-of-the art in the area of computational modelling and simulation of synthetic jets, with emphasis placed on key fluid-mechanics phenomena. The review is divided into two principal parts, one focusing on slot jets and the other on round jets. Within the latter part, ongoing research by the authors on the simulation of synthetic jets discharged into a separated boundary layer is highlighted as an example of the current status in this area.

摘要

合成射流——也被称为无质量射流——提供了一种有效的、按需的、基于流体的控制手段,可用于控制高负荷空气动力表面上的分离边界层,而无需质量源。然而,由于这些射流的性能特征受到广泛的几何和流动参数的影响,因此可能从这些射流中获得的最佳控制效果以及潜在的一般流动物理现象都被掩盖了。本文综述了合成射流计算建模和模拟方面的最新进展,重点介绍了关键的流体力学现象。综述分为两个主要部分,一部分侧重于狭缝射流,另一部分侧重于圆形射流。在后一部分中,作者对合成射流在分离边界层中排放的模拟的研究工作被作为该领域当前状况的一个例子进行了强调。

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