Nomenclature: Difference between revisions
From Atomix
| Line 109: | Line 109: | ||
! Symbol | ! Symbol | ||
! Description | ! Description | ||
! Eqn | |||
! Units | ! Units | ||
|- | |- | ||
| <math>S_a</math> | | <math>S_a</math> | ||
| Salinity | | Salinity | ||
| <math> \sim 35 </math> | |||
| | | | ||
|- | |- | ||
| T | | T | ||
| Temperature | | Temperature | ||
| <math>\sim -2 \rightarrow 40 </math> | |||
| <math> \mathrm{^{\circ}C } </math> | | <math> \mathrm{^{\circ}C } </math> | ||
|- | |- | ||
| P | | P | ||
| Pressure | | Pressure | ||
| <math>0\ \rightarrow\ \sim 1\times10^4</math> | |||
| <math>\mathrm{dbar} </math> | | <math>\mathrm{dbar} </math> | ||
|- | |- | ||
| <math>\rho</math> | | <math>\rho</math> | ||
| Density of water | | Density of water | ||
| <math> \rho = \rho\left(T,S_a,P \right)</math> | |||
| <math>\mathrm{kg\, m^{-3}} </math> | | <math>\mathrm{kg\, m^{-3}} </math> | ||
|- | |- | ||
| <math>\alpha</math> | | <math>\alpha</math> | ||
| Temperature coefficient of expansion | | Temperature coefficient of expansion | ||
| <math> \alpha = \frac{1}{\rho} \frac{\partial\rho}{\partial T}</math> | |||
| <math> \mathrm{K^{-1}}</math> | | <math> \mathrm{K^{-1}}</math> | ||
|- | |- | ||
| <math>\beta</math> | | <math>\beta</math> | ||
| Saline coefficient of contraction | | Saline coefficient of contraction | ||
| <math> \beta = \frac{1}{\rho} \frac{\partial\rho}{\partial S_a}</math> | |||
| | | | ||
|- | |- | ||
| S | | S | ||
| Background velocity shear | | Background velocity shear | ||
| <math> S = \left( \left( \frac{\partial U}{\partial z}\right)^2 + \left( \frac{\partial V}{\partial z}\right)^2 \right)^{1/2} </math> | |||
| <math> \mathrm{s^{-1}} </math> | | <math> \mathrm{s^{-1}} </math> | ||
|- | |- | ||
| <math> \nu_{35} </math> | | <math> \nu_{35} </math> | ||
| Temperature dependent kinematic viscosity of seawater at a salinity of 35 | | Temperature dependent kinematic viscosity of seawater at a salinity of 35 | ||
| <math> \sim 1\times 10^{-6} </math> | |||
| <math> \mathrm{m^2\, s^{-1} } </math> | | <math> \mathrm{m^2\, s^{-1} } </math> | ||
|- | |- | ||
| <math>\nu_{00}</math> | | <math>\nu_{00}</math> | ||
| Temperature dependent kinematic viscosity of freshwater | | Temperature dependent kinematic viscosity of freshwater | ||
| <math>\sim 1\times 10^{-6} </math> | |||
| <math>\mathrm{m^2\, s^{-1} } </math> | | <math>\mathrm{m^2\, s^{-1} } </math> | ||
|- | |- | ||
| <math>\Gamma </math> | | <math>\Gamma </math> | ||
| Adiabatic temperature gradient -- salinity, temperature and pressure dependent | | Adiabatic temperature gradient -- salinity, temperature and pressure dependent | ||
| <math>\sim 1\times 10^{-4}</math> | |||
| <math>\mathrm{K\, dbar^{-1} } </math> | | <math>\mathrm{K\, dbar^{-1} } </math> | ||
|- | |- | ||
| <math>N </math> | | <math>N </math> | ||
| Background stratification, i.e buoyancy frequency | | Background stratification, i.e buoyancy frequency | ||
| <math>N^2 = g\left[ \alpha\left(\Gamma + \frac{\partial T}{\partial z} \right) - \beta \frac{\partial S_a}{\partial z} \right] </math> | |||
| <math>\mathrm{rad\, s^{-1} } </math> | | <math>\mathrm{rad\, s^{-1} } </math> | ||
|} | |} | ||
Revision as of 22:58, 13 October 2021
Frame of reference
- Define frame of reference, and notation. Use u,v,w and x,y, and z?
- Dumping a sketch would be useful
---- MOVE THIS TO CONCEPT ---
Reynold's Decomposition
- Variable names for Decomposition of total, mean, turbulent and waves.
- Needs to be decided across the ADV/ADCP working groups
---- MOVE THIS TO FUNDAMENTALS ---
Background (total) velocity
---- MAKE SURE TO BE CONSISTENT WITH NETCDF TABLE --- ---- NETCDF TABLE will have own page (periodic copy&paste of excel sheet)---
| Symbol | Description | Units |
|---|---|---|
| u | zonal velocity | |
| v | meridional velocity | |
| error velocity | ||
| V | velocity perpendicular to mean flow | |
| Profiler fall speed | ||
| Flow speed past sensor | ||
| b | Along-beam velocity from acoustic Doppler sensor | |
| Along-beam velocity from acoustic Doppler sensor with background flow deducted | ||
| Vertical size of measurement bin for acoustic Doppler sensor | ||
| r | Along-beam distance from acoustic Doppler sensor | |
| Along-beam bin size for acoustic Doppler sensor | ||
| Beam transmit and receive angle relative to instrument axis for acoustic Doppler sensor |
Turbulence properties
CynthiaBluteau (talk) 21:03, 13 October 2021 (CEST) Many of these could be their own concepts/definitions.
| Symbol | Description | Units | Eqn |
|---|---|---|---|
| Turbulent kinetic energy dissipation rate | |||
| Ri | Richardson number | ||
| Flux gradient Richardson number | or Ivey & Imberger? Karan et cie | ||
| Turbulent diffusivity | |||
| Second-order longitudinal structure function |
Fluid properties and background gradients for turbulence calculations
| Symbol | Description | Eqn | Units |
|---|---|---|---|
| Salinity | |||
| T | Temperature | ||
| P | Pressure | ||
| Density of water | |||
| Temperature coefficient of expansion | |||
| Saline coefficient of contraction | |||
| S | Background velocity shear | ||
| Temperature dependent kinematic viscosity of seawater at a salinity of 35 | |||
| Temperature dependent kinematic viscosity of freshwater | |||
| Adiabatic temperature gradient -- salinity, temperature and pressure dependent | |||
| Background stratification, i.e buoyancy frequency |
Theoretical Length and Time Scales
| Parameter | Symbol | Description | Standard long name | Eqn | Units |
|---|---|---|---|---|---|
| T_N | Buoyancy timescale | buoyancy_time_scale | |||
| T_P | Buoyancy period | buoyancy_period | |||
| L_E | Ellison length scale (limit of vertical displacement without irreversible mixing) | Eliison_lenght_scale | |||
| L_RHO | Density length scale | density_length_scale | |||
| L_S | Corssin length scale | Corssin_shear_length_scale | |||
| L_K | Kolmogorov length scale (smallest overturns) | Kolmogorov_length_scale | |||
| L_K | Kolmogorov length scale (smallest overturns) | Kolmogorov_length_scale | |||
| L_O | Ozmidov length scale, measure of largest overturns in a stratified fluid | Ozmidov_stratification_length_scale | |||
| L_T | Thorp length scale | Thorpe_stratification_length_scale |
Turbulence Spectrum
---- MERGE WITH THE SPECTRUM IN FUNDEMENTALS ---
Taylor's Frozen Turbulence for converting temporal to spatial measurements. Convert time derivatives to spatial gradients along the direction of profiling using
.
Convert frequency spectra into wavenumber spectra using
and .
- Missing the y-axi variable. CynthiaBluteau (talk) 00:53, 14 October 2021 (CEST) proposes:
- for model/theoretical spectrum of variable e.g., du/dx or u
- for observed spectrum of variable e.g., du/dx or u
- Lowest frequency and wavenumber resolvable
| Symbol | Description | Eqn | Units |
|---|---|---|---|
| Sampling interval | |||
| Sampling rate | |||
| Sample spacing | |||
| Linear dimension of sampling volume (instrument dependent) | |||
| Cyclic frequency | |||
| Angular frequency | |||
| Nyquist frequency | |||
| Cyclic wavenumber | |||
| Angular wavenumber | |||
| Nyquist wavenumber, based on sampling volume size | |||
| Nyquist wavenumber, via Taylor's hypothesis |
