Difference between revisions of "Standard Notation"
From WikiWaves
Jump to navigationJump to searchLine 21: | Line 21: | ||
* <math>\rho</math> is the fluid density | * <math>\rho</math> is the fluid density | ||
* <math> \lambda = \frac{2\pi}{k} </math> Wave Length | * <math> \lambda = \frac{2\pi}{k} </math> Wave Length | ||
− | * Velocity potential <math>\phi\,</math> (in | + | * Velocity potential <math>\phi\,</math> (in frequency domain) or <math>\Phi\,</math> in time domain |
* wave/angular frequency <math>\omega</math> | * wave/angular frequency <math>\omega</math> | ||
* <math>e^{i\omega t}</math> time dependence in frequency domain | * <math>e^{i\omega t}</math> time dependence in frequency domain |
Revision as of 20:59, 24 February 2009
A list of standard notation with definitions. If you find notation which does not appear here or non-standard notation please feel free to highlight this, or better still try and fix it. The material on these webpages was taken from a variety of sources and we know the notation is currently not always consistent between pages
Latin Letters
- [math]\displaystyle{ A }[/math] is the wave amplitude
- [math]\displaystyle{ c= \frac{\omega}{k} }[/math] Wave Phase Velocity
- [math]\displaystyle{ g }[/math] is the acceleration due to gravity
- Water depth [math]\displaystyle{ h }[/math] with the bottom at [math]\displaystyle{ z=-h }[/math]
- wave number [math]\displaystyle{ k }[/math]
- [math]\displaystyle{ P }[/math] pressure
- Time [math]\displaystyle{ t }[/math]
- [math]\displaystyle{ T = \frac{2\pi}{\omega} }[/math] Wave Period
- [math]\displaystyle{ \mathbf{v} }[/math] Flow Velocity Vector at [math]\displaystyle{ \mathbf{x} }[/math]
- [math]\displaystyle{ \mathbf{x} }[/math] Fixed Eulerian Vector
- [math]\displaystyle{ x }[/math] and [math]\displaystyle{ y }[/math] in the horizontal plane with [math]\displaystyle{ z }[/math] pointing vertically upward and the free surface at [math]\displaystyle{ z=0 }[/math]
Greek letters
- [math]\displaystyle{ \rho }[/math] is the fluid density
- [math]\displaystyle{ \lambda = \frac{2\pi}{k} }[/math] Wave Length
- Velocity potential [math]\displaystyle{ \phi\, }[/math] (in frequency domain) or [math]\displaystyle{ \Phi\, }[/math] in time domain
- wave/angular frequency [math]\displaystyle{ \omega }[/math]
- [math]\displaystyle{ e^{i\omega t} }[/math] time dependence in frequency domain
- [math]\displaystyle{ \Omega\, }[/math] fluid region
- [math]\displaystyle{ \partial \Omega }[/math] Boundary of fluid region
- [math]\displaystyle{ \zeta }[/math] displacement of the surface
- [math]\displaystyle{ \varepsilon }[/math] energy