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- W2056209854 abstract "A time-domain computational approach is applied to investigate the behavior of perforated tube silencers at high sound levels. The one-dimensional computational technique employs a lumped parameter model for the perforate flows. The lumped parameter perforate model is based on time-invariant approximations for the equivalent length l(eq) and resistance R, consistent with the use of a nonlinear perforate impedance. Empirical expressions for l(eq) and R are developed experimentally using nondimensional scaling parameters. The model is applied to geometries representative of automotive resonators and multiple-duct mufflers. Conditions are simplified from those in an actual automotive system by considering single-frequency excitation and zero mean flow. Simulations with linear perforate behavior are compared to experimental data obtained with an extended impedance tube system. Simulations with nonlinear perforate behavior for one concentric tube resonator are compared to published experimental data." @default.
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- W2056209854 date "2000-09-01" @default.
- W2056209854 modified "2023-10-03" @default.
- W2056209854 title "The effect of high-amplitude sound on the attenuation of perforated tube silencers" @default.
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- W2056209854 doi "https://doi.org/10.1121/1.1287707" @default.
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