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Deep Water Gravity Waves [electronic resource] : On the Simpler Aspects of Nonlinear Fluctuating (Weak Interaction Theory) / by Bruce J. West.

By: Contributor(s): Material type: TextTextSeries: Lecture Notes in Physics ; 146Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 1981Description: VI, 345 p. 3 illus. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540387626
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 530.1 23
LOC classification:
  • QC178
  • QC173.5-173.65
Online resources:
Contents:
to water waves -- More comments on mathematical techniques -- The Hamiltonian for an isolated gravity wave field -- Deep water eigenmodes -- Resonant interactions and dynamics equations -- Resonance among gravity waves -- Resonant instabilities and the nonlinear Schröndinger equation -- Unstable finite amplitude waves and envelope functions -- Stability vs. instability -- Kolmogorov's average Hamiltonian technique -- Modification of the Hamiltonian to couple with the wind -- Langrangian formulation -- Linear stochastic differential equation (Langevin model) -- Steady-state gravity-capillary spectrum -- Steady-state linear wave field -- Linear stochastic differential equation (cumulant expansions) -- Gravity wave instability -- Stochastic nonlinear gravity waves -- Steady-state nonlinear wave field -- Phase space equation of evolution -- Entropy and the Fokker-Planck approximation -- State of minimum entropy production -- Entropy generation in the approach to the steady-state -- Closure of the moment transport equations -- Non-homogenous transport equation -- Example calculations -- Areas for further study.
In: Springer eBooks
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to water waves -- More comments on mathematical techniques -- The Hamiltonian for an isolated gravity wave field -- Deep water eigenmodes -- Resonant interactions and dynamics equations -- Resonance among gravity waves -- Resonant instabilities and the nonlinear Schröndinger equation -- Unstable finite amplitude waves and envelope functions -- Stability vs. instability -- Kolmogorov's average Hamiltonian technique -- Modification of the Hamiltonian to couple with the wind -- Langrangian formulation -- Linear stochastic differential equation (Langevin model) -- Steady-state gravity-capillary spectrum -- Steady-state linear wave field -- Linear stochastic differential equation (cumulant expansions) -- Gravity wave instability -- Stochastic nonlinear gravity waves -- Steady-state nonlinear wave field -- Phase space equation of evolution -- Entropy and the Fokker-Planck approximation -- State of minimum entropy production -- Entropy generation in the approach to the steady-state -- Closure of the moment transport equations -- Non-homogenous transport equation -- Example calculations -- Areas for further study.

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