Predicting outdoor sound / Keith Attenborough, Kai Ming Li and Kirill Horoshenkov
Tipo de material: TextoDetalles de publicación: London : Taylor and Francis, 2007 Descripción: XIII, 441 p. : gráf. ; 24 cmISBN: 978-0-419-23510-1Tema(s): Acústica | Ruido -- ControlResumen: This is a highly practical yet academically rigorous reference for acoustic engineers, especially those working on major projects where noise control is a key issue such as the design and construction of Heathrow Terminal 5. This is the only available text devoted to bringing all current theory and data together in one volume.Resumen: Índice: Introduction. Ground impedance models and data. Ground effects in a homogeneous atmosphere. Sound propagation from a moving point source above ground. Sound propagation in a moving stratified medium above ground. Numerical methods for outdoor sound prediction. Effects of tall vegetation and turbulence. The effectiveness of noise barriers outdoors. Approximate formulae and engineering prediction schemes.Tipo de ítem | Biblioteca de origen | Signatura | URL | Estado | Fecha de vencimiento | Código de barras | Reserva de ítems |
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Fuera de préstamo | 02. BIBLIOTECA CAMPUS PUERTO REAL | Máster de Acústica - 534/ATT/pre (Navegar estantería(Abre debajo)) | Texto completo | No para préstamo (Uso restringido) | 3743155541 |
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This is a highly practical yet academically rigorous reference for acoustic engineers, especially those working on major projects where noise control is a key issue such as the design and construction of Heathrow Terminal 5. This is the only available text devoted to bringing all current theory and data together in one volume.
Índice: Introduction. Ground impedance models and data. Ground effects in a homogeneous atmosphere. Sound propagation from a moving point source above ground. Sound propagation in a moving stratified medium above ground. Numerical methods for outdoor sound prediction. Effects of tall vegetation and turbulence. The effectiveness of noise barriers outdoors. Approximate formulae and engineering prediction schemes.
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