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Book Title: NASA Technical Reports Server (NTRS) : The
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Book Category: Miller
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Language: english
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Post Date: 2025-04-03 18:15:20
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PDF Size: 9.33 MB
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Book Pages: 40
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NASA Technical Reports Server (NTRS) : The
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Description of the Book:
An acoustic analogy is developed based on the Euler equations for broadband shock- associated noise (BBSAN) that directly incorporates the vector Green’s function of the linearized Euler equations and a steady Reynolds-Averaged Navier-Stokes solution (SRANS) as the mean flow. The vector Green’s function allows the BBSAN propagation through the jet shear layer to be determined. The large-scale coherent turbulence is modeled by two-point second order velocity cross-correlations. Turbulent length and time scales are related to the turbulent kinetic energy and dissipation. An adjoint vector Green’s function solver is implemented to determine the vector Green’s function based on a locally parallel mean flow at streamwise locations of the SRANS solution. However, the developed acoustic analogy could easily be based on any adjoint vector Green’s function solver, such as one that makes no assumptions about the mean flow. The newly developed acoustic analogy can be simplified to one that uses the Green’s function associated with the Helmholtz equation, which is consistent with the formulation of Morris and Miller (AIAAJ 2010).
A large number of predictions are generated using three different nozzles over a wide range of fully expanded Mach numbers and jet stagnation temperatures. These predictions are compared with experimental data from multiple jet noise labs. In addition, two models for the so-called ‘fine-scale’ mixing noise are included in the comparisons. Improved BBSAN predictions are obtained relative to other models that do not include the propagation effects, especially in the upstream direction of the jet
- Creator/s: NASA Technical Reports Server (NTRS
- Date: 6/6/2011
- Year: 2011
- Book Topics/Themes: NASA Technical Reports Server (NTRS), AERODYNAMIC NOISE, BROADBAND, SHOCK WAVES, ACOUSTICS, MATHEMATICAL MODELS, ACOUSTIC PROPAGATION, KINETIC ENERGY, DIFFERENTIAL EQUATIONS, GREEN’S FUNCTIONS, REYNOLDS AVERAGING, STAGNATION TEMPERATURE, COMPUTER PROGRAMS, JET AIRCRAFT NOISE, FLOW DISTRIBUTION, Miller, Steven, Morris, Philip J
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