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首页> 外文期刊>AIAA Journal >Modeling Pulsed-Blowing Systems for Flow Control
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Modeling Pulsed-Blowing Systems for Flow Control

机译:用于流量控制的脉冲吹塑系统建模

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摘要

A linear model for analyzing the performance of pulsed-blowing actuator systems commonly used in many flow-control applications is presented and compared with experiments. The pulsed-blowing system consists of a regulated air supply, an oscillatory valve, transmission tubing, and an actuator. The elements of the actuator are a cavity and slot at the location in the flow to be controlled. The typical design objective is to achieve the largest possible velocity-fluctuation levels at the actuator-slot exit for a given fluctuating pressure input. However, the performance of the system is strongly dependent on component geometry, flow rate, and frequency of pulsation. Lumped-element models are useful for estimating the performance of the actuator cavity and slot, but fail to account for the effects of the transmission tubing. A distributed model for the tubing combined with a lumped-element model for the actuator provides estimates of the system resonant frequencies and amplitudes. Comparisons with experiments are made for a wide range of tubing lengths, slot widths, mean flow velocities, and forcing frequencies. The resonances of the pulsed blowing system and the changes in resonant behavior are characterized by considering the reflection coefficient of the system. Unexpected behavior such as reversed flow at the slot exit and reduced fluctuation levels with increasing pressure are demonstrated and explained with the system model.
机译:提出了一种线性模型,用于分析许多流量控制应用中常用的脉冲吹气执行器系统的性能,并将其与实验进行了比较。脉冲吹气系统包括一个可调节的气源,一个振荡阀,传输管和一个执行器。致动器的元件是在要控制的流中的位置处的腔和槽。典型的设计目标是在给定波动压力输入的情况下,在执行机构插槽出口处获得最大可能的速度波动水平。但是,系统的性能在很大程度上取决于组件的几何形状,流速和脉动频率。集总模型可用于估算执行器腔和槽的性能,但不能考虑传动管的影响。管道的分布式模型与执行器的集总元件模型相结合,可以估算系统的共振频率和振幅。与各种管材长度,缝隙宽度,平均流速和强制频率进行了实验比较。通过考虑系统的反射系数来表征脉冲吹塑系统的共振和共振行为的变化。系统模型演示并说明了意外行为,例如槽口出口处的逆流和随压力增加而减小的波动水平。

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