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A Comparison of a One-Dimensional Finite Element Method and the Transfer Matrix Method for the Computation of Wind Music Instrument Impedance

机译:一维有限元方法与传输矩阵法计算风乐器阻抗计算

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摘要

This work presents a computation tool for the calculation of wind instrument input impedance in the context of linear planar wave propagation with visco-thermal losses. The originality of the approach lies in the usage of a specific and simple 1D finite element method (FEM). The popular Transfer Matrix Method (TMM) is also recalled and a seamless formulation is proposed which unifies the cases cylinders vs. cones. Visco-thermal losses, which are natural dissipation in the system, are not exactly taken into account by this method when arbitrary shapes are considered. The introduction of an equivalent radius leads to an approximation that we quantify using the FEM method. The equation actually solved by the TMM in this case is exhibited. The accuracy of the two methods (FEM and TMM) and the associated computation times are assessed and compared. Although the TMM is more efficient in lossless cases and for lossy cylinders, the FEM is shown to be more efficient when targeting a specific precision in the realistic case of a lossy trumpet. Some additional features also exhibit the robustness and flexibility of the FEM over the TMM. All the results of this article are computed using the open-source python toolbox OpenWind.
机译:该工作介绍了在用Visco-TollaL损耗的线性平面波传播的上下文中计算风仪器输入阻抗的计算工具。该方法的原创性在于使用特定和简单的1D有限元方法(FEM)。还召回了流行的传输矩阵方法(TMM),提出了一种无缝制剂,统一液体与锥体。当考虑任意形状时,这种方法在系统中自然耗散的粘热损耗并不完全考虑。等效半径的引入导致我们使用FEM方法量化的近似值。在这种情况下,展示了TMM实际解决的等式。评估和比较两种方法(FEM和TMM)和相关的计算时间的准确性。虽然TMM在无损案例和有损汽缸中更有效,但是由于在损失喇叭的现实情况下瞄准特定精度时,有限元有效。一些附加功能还表现出FEM在TMM上的鲁棒性和灵活性。本文的所有结果都是使用开源Python Toolbox OpenWind计算的。

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