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Boussinesq Approximation (Water Waves)
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EO1FBSG5A01
Geliefert zwischen Mi., 26.11.2025 und Do., 27.11.2025
Details
In fluid dynamics, the Boussinesq approximation for water waves is an approximation valid for weakly non-linear and fairly long waves. The approximation is named after Joseph Boussinesq, who first derived them in response to the observation by John Scott Russell of the wave of translation (also known as solitary wave or soliton). The 1872 paper of Boussinesq introduces the equations now known as the Boussinesq equations. The Boussinesq approximation for water waves takes into account the vertical structure of the horizontal and vertical flow velocity. This results in non-linear partial differential equations, called Boussinesq-type equations, which incorporate frequency dispersion (as opposite to the shallow water equations, which are not frequency-dispersive). In coastal engineering, Boussinesq-type equations are frequently used in computer models for the simulation of water waves in shallow seas and harbours.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786130759810
- Editor Frederic P. Miller, Agnes F. Vandome, John McBrewster
- Genre Physik & Astronomie
- EAN 9786130759810
- Format Fachbuch
- Titel Boussinesq Approximation (Water Waves)
- Herausgeber Alphascript Publishing
- Anzahl Seiten 128
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