首页> 外文会议>International Conference on Noise and Vibration Engineering;International Conference on Uncertainty in Structural Dynamics >Validation of a time domain impedance formulation for the case of a 2D rectangular lined duct with a non-uniform mean-flow with a finite boundary layer thickness
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Validation of a time domain impedance formulation for the case of a 2D rectangular lined duct with a non-uniform mean-flow with a finite boundary layer thickness

机译:用有限边界层厚度的非均匀平均流动验证2D矩形衬里管道的情况下的时域阻抗配方

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A validation and improvement of a recently developed time domain impedance formulation based on recursive convolution has been carried out. This formulation has been implemented using an in-house time-domain Runge-Kutta Discontinous Galerkin (RKDG) Linearized Euler Equations (LEE) solver. At first, a validation has been carried out on a 2D lined rectangular duct both without flow and with uniform mean flow. The RKDG results have been compared with the analytical reference solutions for the problem under consideration. In a second stage the case of the 2D rectangular lined duct with a non-uniform mean flow is validated to include the effect of a finite boundary layer thickness on the acoustic damping properties.
机译:已经进行了基于递归卷积的最近开发的时域阻抗制剂的验证和改进。 该配方已经使用内部时域跑步-Kutta残空的Galerkin(RKDG)线性化欧拉方程(LEE)求解器实施。 首先,在2D衬里的矩形管道上进行验证,无需流动并且具有均匀的平均流量。 RKDG结果与正在考虑的问题的分析参考解决方案进行比较。 在第二阶段中,验证具有非均匀平均流程的2D矩形衬里管道的情况,以包括有限边界层厚度对声学阻尼性能的影响。

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