Nomenclature: Difference between revisions

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{| class="wikitable"
|+ caption
! heading !! heading
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== Frame of reference ==
== Frame of reference ==
* Define frame of reference, and notation. Use u,v,w and x,y, and z?
* Define frame of reference, and notation. Use u,v,w and x,y, and z?
Line 53: Line 61:
| m  
| m  
|-
|-
| <math>L_\rho/math>
| <math>L_\rho/ <math>
| density length scale
| density length scale
| <math> L_\rho </math>
| <math> L_\rho </math>
| m  
| m  
|-
|-
| <math>L_s/math>
| <math>L_s/ <math>
| Corssin shear length scale (turbulence draws energy from uniform background shear)
| Corssin shear length scale (turbulence draws energy from uniform background shear)
| <math> L_C = \sqrt{\epsilon/S^3} </math>
| <math> L_C = \sqrt{\epsilon/S^3} </math>
| m  
|| m  
|-
|-
| <math>\tau_N</math>
| <math>\tau_N</math>

Revision as of 13:38, 31 March 2021

caption
heading heading
cell cell
cell cell

Frame of reference

  • Define frame of reference, and notation. Use u,v,w and x,y, and z?
  • Dumping a sketch would be useful


Reynold's Decomposition

  • Variable names for Decomposition of total, mean, turbulent and waves.


Turbulence properties

Symbol Description Eqn Units
ϵ Turbulent kinetic energy dissipation W/kg
ν Viscosity of water for seawater at 35psu and 20 oC 1×106 m2/s
N Buoyancy frequency N=gρ¯ρ¯z rad/s

Theoretical Length and Time Scales

Symbol Description Eqn Units
τN Buoyancy timescale τN=2πN s
LE Ellison length scale (limit of vertical displacement without irreversible mixing) Failed to parse (unknown function "\overbar"): {\displaystyle L_E=\frac {\langle \rho'^2\rangle^{1/2}}{\partial \overbar{\rho}/\partial z}} m
Lρ/<math>|densitylengthscale|<math>Lρ m
Ls/<math>|Corssinshearlengthscale(turbulencedrawsenergyfromuniformbackgroundshear)|<math>LC=ϵ/S3 m
τN Buoyancy timescale τN=2πN s
η Kolmogorov length scale (smallest overturns) η=(ν3ϵ)1/4=12πk^K m
Lo Ozmidov length scale, measure of largest overturns in a stratified fluid Lo=(ϵN3)1/2 m

Turbulence Spectrum

Taylor's Frozen Turbulence for converting temporal to spatial measurements (u¯1x=t)


  • Missing the y-axi variable. CEB proposes:
    • Ψvariable for model/theoretical spectrum of variable e.g., du/dx or u
    • Φvariable for observed spectrum of variable e.g., du/dx or u
  • Lowest frequency and wavenumber resolvable
Symbol Description Eqn Units
Δt Sampling interval 1fs s
Δs Sampling volume dimension m
f Frequency ω2π Hz
fn Nyquist frequency fn=0.5fs Hz
fs Sampling frequency fs=1Δt Hz
k Wavenumbers (angular) k=fu¯=2πk^ rad/m
k^ Wavenumbers k^=k2π cpm
k^Δ Nyquist wavenumber, based on sampling volume's size Δl k^Δ=0.5Δl cpm
k^n Nyquist wavenumber, via Taylor's hypothesis (temporal measurements) k^n=fnu cpm
ω Angular frequency 2πf rad/s

Test