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Time domain phenomenological formulation for the sound generation in corrugated pipes

机译:波纹管中声发射的时域现象学制剂

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The study deals with a possibility to formulate the complex fluid-structure interaction problem of noise generation due to the unsteady flow in corrugated pipes by phenomenological formulation. Although the details of fluid dynamics are not accessible this way, the computational framework is much less demanding and the key features are still present. The van der Pol-like equations serve as a model of self-sustained sources coupled to the acoustic resonances of the tube. The effects of the sound field convection are discussed. A closer case-study investigation using linear stability analysis and a semi-analytical solution is presented. Numerical analysis investigating the flow velocity sweeps and fitting the model to the experimental data follows. The proposed system exhibits the key features known from experiments such as mode-locking and hysteresis and is capable of capturing the experimental data correctly.
机译:该研究涉及通过现象学制剂在波纹管中的不稳定流动引起的噪声产生的复杂流体结构相互作用问题。 虽然流体动力学的细节不可通过这种方式可访问,但计算框架要求苛刻得多,并且仍然存在关键特征。 范德波帕样方程用作耦合到管的声学谐振的自持续源的模型。 讨论了声场对流的影响。 介绍了使用线性稳定性分析和半分析解决方案的近案例研究。 研究流速扫描并将模型拟合到实验数据的数值分析。 所提出的系统表现出从诸如模式锁定和滞后之类的实验中已知的关键特征,并且能够正确地捕获实验数据。

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