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Characteristic boundary conditions and its application to resonance tube

机译:特征边界条件及其应用于谐振管

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To investigate the pressure pulsation in a resonance tube, a computer program based on the unsteady compressible Euler equations has been developed. The convective terms are constructed using a Roe's approximate Riemann solver and MUSCL for high accuracy is employed. To limit oscillations near shocks, Koren's differentiable limiter is adopted and an explicit two-step Runge-Kutta method is used for time integration. Several characteristic boundary conditions suggested by Thompson, Watson-Myers and Hwang were tested and discussed to understand their physical meanings. Through the above tests, appropriate boundary conditions are selected and applied to simulate the pressure pulsation in the resonance tube. The calculation results are compared with the experiment by Merkli and Thomann. The computed amplitude and the period of pressure pulsation showed good agreement with experiment except peaks. It is believed that the practical engineering problems concering acoustics can be directly simulated using Euler equations.
机译:为了研究共振管中的压力脉动,已经开发了一种基于不稳定可压缩欧拉方程的计算机程序。使用ROE的近似RIEMANN求解器和MUSCL以获得高精度的构建对流术语。为了限制震荡附近的振荡,采用koren的可分辨率限制器,并且使用明确的两步跳动-Kutta方法用于时间集成。测试并讨论了Thompson,Watson-Myers和Hwang的几种特征边界条件,并讨论了他们的身体意义。通过上述测试,选择适当的边界条件并施加以模拟谐振管中的压力脉动。将计算结果与Merkli和Thomann的实验进行了比较。除了峰之外,计算幅度和压力脉动周期与实验表明良好。据信,可以使用欧拉方程直接模拟展示声学的实际工程问题。

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