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Application of Steady State Finite Element and Transient Finite Difference Theory to Sound Propagation in a Variable Area Duct: A Comparison with Experiment

机译:稳态有限元和瞬态差分理论在变截面管道声传播中的应用 - 与实验对比

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Sound propagation without flow in a rectangular duct with a converging-diverging area variation was studied experimentally and theoretically. The area variation was of sufficient magnitude to produce large reflections and induce modal scattering. The rms (root-mean-squared) pressure and phase angle on both the flat and curved surface were measured and tabulated. The steady state finite element theory and the transient finite difference theory are in good agreement with the data. It is concluded that numerical finite difference and finite element theories appear ideally suited for handling duct propagation problems which encounter large area variations.

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