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首页> 外文期刊>Journal of engineering thermophysics >Wake flow-induced acoustic resonance around a long flat plate in a duct
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Wake flow-induced acoustic resonance around a long flat plate in a duct

机译:管道中长平板周围的尾流引起的声共振

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Flows around long thin blunt flat plates generate acoustic resonances when the sound frequency generated by the vortex shedding becomes close to the frequency of the acoustic mode around the plate. After their mutual capturing, the sound intensity strongly increases. To better understand this phenomenon, here we investigate the interaction between flow and flow-induced acoustic resonance around a long flat plate in a duct. Three acoustic resonance modes were observed as the flow velocity was increased. The acoustic resonance behavior is studied as a function of the shapes of the leading and trailing edges (semicircular and square) and the length of the plate (39 a parts per thousand currency sign L/d a parts per thousand currency sign 71). The Reynolds numbers based on the plate thickness and free-stream flow velocity ranged from 3300 to 21,300. The influence of the leading edge separation bubble and the trailing edge wake flow on the acoustic resonance is scrutinized by examining the velocity profiles, power spectra, and pressure sound level. The nonlinear behavior of the flow components in the wake is shown at monochromatic sound in the resonance regime. The difference in flow conditions around the plate for the diverse shapes of leading and trailing edges leads to the different efficiency of the sound-flow interaction, which originates the different sound level. It was found that the configuration with a semicircular leading edge and a semicircular trailing edge is the best one for generating aeroacoustic resonance. Possible physical explanations are proposed.
机译:当涡旋脱落产生的声频频率接近平板周围的声模频率时,细长的钝钝平板周围的气流会产生声共振。它们相互捕获后,声音强度会大大增加。为了更好地理解这种现象,在这里我们研究了管道中长平板周围的流动与流动引起的声共振之间的相互作用。随着流速的增加,观察到三种声共振模式。根据前缘和后缘的形状(半圆形和正方形)和板的长度(每千个货币符号为39 a /每千个货币符号71为d)来研究声共振行为。基于板厚和自由流流速的雷诺数范围为3300至21,300。通过检查速度分布,功率谱和压力声级,仔细检查了前缘分离气泡和后缘尾流对声学共振的影响。尾流中流动分量的非线性行为在共振状态下以单色声音显示。前后缘形状各异的板周围流动条件的差异会导致声流相互作用的效率不同,从而产生不同的声级。已经发现,具有半圆形前缘和半圆形后缘的构造是产生空气声共振的最佳构造。提出了可能的物理解释。

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