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Observations of Traveling Crossflow Resonant Triad Interactions on a Swept Wing

机译:在掠过的机翼上旅行横流共振三重轴相互作用的观察。

摘要

Experimental evidence indicates the presence of a triad resonance interaction between traveling crossflow modes in a swept wing flow. Results indicate that this interaction occurs when the stationary and traveling crossflow modes have similar and relatively low amplitudes (approx.1% to 6% of the total freestream velocity). The resonant interaction occurs at instability amplitudes well below those typically known to cause transition, yet transition is observed to occur just downstream of the resonance. In each case, two primary linearly unstable traveling crossflow modes are nonlinearly coupled to a higher frequency linearly stable mode at the sum of their frequencies. The higher-frequency mode is linearly stable and presumed to exist as a consequence of the interaction of the two primary modes. Autoand cross-bicoherence are used to determine the extent of phase-matching between the modes, and wavenumber matching confirms the triad resonant nature of the interaction. The bicoherence results indicate a spectral broadening mechanism and the potential path to early transition. The implications for laminar flow control in swept wing flows are significant. Even if stationary crossflow modes remain subcritical, traveling crossflow interactions can lead to early transition.
机译:实验证据表明,在掠过的翼流中,行进的横流模式之间存在三重共振共振相互作用。结果表明,当固定和行进横流模式具有相似且相对较低的幅度(约占总自由流速度的1%至6%)时,就会发生这种相互作用。共振相互作用发生在不稳定幅度下,该幅度远低于通常引起过渡的已知幅度,但观察到过渡恰好发生在共振的下游。在每种情况下,两个主要的线性不稳定行进横流模式以它们的频率之和非线性耦合到更高频率的线性稳定模式。高频模式是线性稳定的,并且推测是由于两个主要模式的相互作用而存在的。自动和交叉双相干性用于确定模式之间的相位匹配程度,波数匹配确定了相互作用的三重共振特性。双相干结果表明光谱加宽机制和早期过渡的潜在途径。后掠翼流中层流控制的意义重大。即使固定的错流模式仍保持亚临界状态,行进的错流相互作用也可能导致早期过渡。

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