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首页> 外文期刊>The Journal of the Acoustical Society of America >Aeroacoustical coupling and synchronization of organ pipes
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Aeroacoustical coupling and synchronization of organ pipes

机译:器官管的气动理耦合与同步

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A synchronization experiment on two mutual interacting organ pipes is compared with a theoretical model which takes into account the coupling mechanisms by the underlying first principles of fluid mechanics and aeroacoustics. The focus is on the Arnold-tongue, a mathematical object in the parameter space of detuning and coupling strength which quantitatively captures the interaction of the synchronized sound sources. From the experiment, a nonlinearly shaped Arnold-tongue is obtained, describing the coupling of the synchronized pipe-pipe system. This is in contrast to the linear shaped Arnold-tongue found in a preliminary experiment of the coupled system pipeloudspeaker. To understand the experimental result, a coarse-grained model of two nonlinear coupled self-sustained oscillators is developed. The model, integrated numerically, is in very good agreement with the synchronization experiment for separation distances of the pipes in the far field and in the intermediate field. The methods introduced open the door for a deeper understanding of the fundamental processes of sound generation and the coupling mechanisms on mutual interacting acoustic oscillators.
机译:将两个相互交互器官管上的同步实验与理论模型进行了比较,理论模型考虑了流体力学和空气声学的底层第一原理的耦合机制。焦点在圆形舌头上,在谐振和耦合强度的参数空间中的数学对象,其定量地捕获同步声源的相互作用。从实验中,获得非线性形状的圆柱舌,描述了同步管道系统的耦合。这与在耦合系统PipeloudSpeaker的初步实验中发现的线性形状的圆圈舌形成鲜明对比。为了理解实验结果,开发了两个非线性耦合自持续振荡器的粗粒模型。数控集成的模型非常良好地与远场中管道分离距离的同步实验非常好。该方法介绍了更深入地了解声音产生的基本过程和相互交互声学振荡器上的耦合机制的深入了解。

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