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5.6 Energy Dispersion – Group Velocity. Non-dispersive waves (movie) Wave 1: K1, C1 Wave 2: K2, C2 K2=1.4*k1 C2=C1 The phase shift between the two waves.

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Presentation on theme: "5.6 Energy Dispersion – Group Velocity. Non-dispersive waves (movie) Wave 1: K1, C1 Wave 2: K2, C2 K2=1.4*k1 C2=C1 The phase shift between the two waves."— Presentation transcript:

1 5.6 Energy Dispersion – Group Velocity

2 Non-dispersive waves (movie) Wave 1: K1, C1 Wave 2: K2, C2 K2=1.4*k1 C2=C1 The phase shift between the two waves does not change, so the total wave group does NOT change with time. It propagates at the same speed as individual waves.  Nondispersive waves

3 Dispersive waves-1 (movie) Wave 1: K1, C1 Wave 2: K2, C2 K2=1.4*k1 C2=1.4*C1 The phase shift between the two waves changes with time, so the total wave group changes with time.  Dispersive

4 Dispersive waves (snapshots) t=t0 t=t1 x v’ x The waves spread in space and the wave height decreases in time (the wave group broadens in time and energy is dispersed).

5 Internal Gravity waves (movie) The vertical phase velocity and the vertical group velocity have opposite directions. Cg Cp Cg Cp

6 1-D Rossby waves (movie) Assume U=0, C g >0: eastward (following the wave envelop) C p <0: westward (following the red circle)

7 2-D Rossby Waves (t = Day -5) (t = Day 0) (t = Day +5)

8 Stationary Rossby Waves Years: Nino 3.4 1958: 1.607 1966: 1.308 1973: 1.639 1983: 2.548 1987: 1.254 1992: 1.820 1995: 1.013 1998: 2.396 2003: 1.162


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