About: Sverdrup wave

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A Sverdrup wave (also known as Poincaré wave, or rotational gravity wave ) is a wave in the ocean, or large lakes, which is affected by gravity and Earth's rotation (see Coriolis effect). For a non-rotating fluid, shallow water waves are affected only by gravity (see Gravity wave), where the phase velocity of shallow water gravity wave (c) can be noted as and the group velocity (cg) of shallow water gravity wave can be noted as i.e. where g is gravity, λ is the wavelength and H is the total depth.

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  • Die Poincaré-Welle, benannt nach Henri Poincaré (1854–1912), ist wie die Kelvinwelle eine Flachwasserwelle in einem rotierenden Bezugssystem. (de)
  • A Sverdrup wave (also known as Poincaré wave, or rotational gravity wave ) is a wave in the ocean, or large lakes, which is affected by gravity and Earth's rotation (see Coriolis effect). For a non-rotating fluid, shallow water waves are affected only by gravity (see Gravity wave), where the phase velocity of shallow water gravity wave (c) can be noted as and the group velocity (cg) of shallow water gravity wave can be noted as i.e. where g is gravity, λ is the wavelength and H is the total depth. (en)
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  • Die Poincaré-Welle, benannt nach Henri Poincaré (1854–1912), ist wie die Kelvinwelle eine Flachwasserwelle in einem rotierenden Bezugssystem. (de)
  • A Sverdrup wave (also known as Poincaré wave, or rotational gravity wave ) is a wave in the ocean, or large lakes, which is affected by gravity and Earth's rotation (see Coriolis effect). For a non-rotating fluid, shallow water waves are affected only by gravity (see Gravity wave), where the phase velocity of shallow water gravity wave (c) can be noted as and the group velocity (cg) of shallow water gravity wave can be noted as i.e. where g is gravity, λ is the wavelength and H is the total depth. (en)
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  • Poincaré-Welle (de)
  • Sverdrup wave (en)
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