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Role of the foot chamber in the sounding mechanism of a flue organ pipe

机译:足部室在烟道器官管的探测机构中的作用

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Two-demensional (2D) models of a flue organ pipe are studied with compressible fluid simulation, specifically compressible Large Eddy Simulation, focusing on the influence of the geometry of the flue and the foot on the jet motion and acoustic oscillation in the pipe. When the foot geometry is fixed, the models having a flue with chamfers show good performances in stabilizing the acoustic oscillation in the steady state. Furthermore, we find that the foot chamber works as a Helmholtz resonator. If the frequency of the acoustic oscillation in the pipe is higher than the resonance frequency of the Helmholtz resonator by almost the full-width at half-maximum, anti-phase synchronization between the acoustic oscillation in the pipe and that in the foot chamber occurs. In this case, the acoustic oscillation in the pipe grows rapidly in the attack transient and is stabilized in the steady state.
机译:使用可压缩的流体仿真研究了两端的烟道器官管的模型,专门可压缩的大涡模拟,专注于烟道和脚的几何形状对管道中喷射运动和声学振荡的影响。当脚几何形状是固定的时,具有倒簧的烟道的模型在稳定状态下稳定声学振荡的良好性能表现出良好的性能。此外,我们发现脚间用作亥姆霍兹谐振器。如果管道中的声学振荡的频率高于Helmholtz谐振器的谐振频率,几乎通过在管道中的声学振荡之间的半最大值处的半最大抗相同步,并且发生在脚室中的抗相位的谐振频率。在这种情况下,管道中的声学振荡在攻击瞬态中迅速增长并且在稳定状态下稳定。

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