Effect of the Oscillator Length on the Characteristics of a Feedback Type Fluidic Oscillator

Mehmet N. Tomac
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引用次数: 3

Abstract

This work characterizes the various length fluidic oscillators with constant depth and having the same main geometric dimensions. A change in fluidic oscillator's length affects the frequency and sweeping characteristics of the fluidic oscillators. These characteristics were extracted by means of constant temperature anemometry hot-wire measurements and water flow visualizations. A total number of ten fluidic oscillators were compared to the baseline fluidic oscillator design. It was observed that shortening the fluidic oscillator ceases the oscillations after a threshold oscillator length whereas elongating the fluidic oscillator decreases the frequency and sweep angle gradually. Furthermore, the frequency maps obtained from hot-wire measurements for each considered fluidic oscillator design provided overall detail about the frequency of the oscillations for a wide range of flow rate. For a constant supply flow rate where the frequency and the sweep angle of an oscillator is constant, changing the length of a fluidic oscillator will allow varying these characteristics of the oscillator. Thus the oscillator can be tailored for a specific need of an application.
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振荡器长度对反馈型流体振荡器特性的影响
本文研究了具有恒定深度和相同主几何尺寸的不同长度的流体振荡器。射流振子长度的变化会影响射流振子的频率和扫频特性。这些特征是通过恒温风速测量、热线测量和水流可视化来提取的。总共有10个流体振荡器与基线流体振荡器设计进行了比较。研究发现,在达到阈值振荡长度后,缩短流体振荡器会使振荡停止,而延长流体振荡器则会使频率和扫角逐渐降低。此外,从热线测量得到的频率图为每个考虑的流体振荡器设计提供了在大流量范围内振荡频率的总体细节。对于恒定的供应流量,其中振荡器的频率和扫角是恒定的,改变流体振荡器的长度将允许改变振荡器的这些特性。因此,振荡器可以根据应用的特定需要进行定制。
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