Mixing — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The reflection that changes the wavelength
An internal wave's frequency fixes the angle its energy makes with gravity, so a sloping wall cannot send it back the way a mirror would. The reflected beam leaves at the same angle to the vertical rather than the same angle to the wall, its wavelength changes by a factor that diverges when the slope matches the ray, and in a closed basin the changes accumulate until every ray in the fluid lies on one line.
The drift a sound leaves behind
A sound wave moves fluid back and forth and puts it back where it started. Over many cycles it does not: a steady circulation appears, four cells to a wavelength, driven entirely from inside a boundary layer seventy micrometres thick. Its speed contains the sound speed and the amplitude, and it contains no viscosity at all — so making the fluid thinner does not make the drift weaker.
Named alongside it
The objects these essays reach for when they reach for this one.
Acoustic streamingAnisotropyBoundary conditionBoundary layerBuoyancy frequencyDiffusionDispersion relationDissipationFocusingGroup velocityInternal wavesNonlinearity