SMS:ADCIRC Tidal Constituents: Difference between revisions
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This article is about tidal constituent source data. For applying tidal constituents to an ADCIRC simulation, see the [[SMS:ADCIRC_Graphical_Interface#Tidal_Components|''Tidal Constituents'' dialog]]. | This article is about tidal constituent source data. For applying tidal constituents to an ADCIRC simulation, see the [[SMS:ADCIRC_Graphical_Interface#Tidal_Components|''Tidal Constituents'' dialog]]. | ||
SMS uses Harmonica ([https://github.com/Aquaveo/harmonica github.com/Aquaveo/harmonica]) for harmonic tidal data extraction. Harmonica is an open-source | SMS uses Harmonica ([https://github.com/Aquaveo/harmonica github.com/Aquaveo/harmonica]) for harmonic tidal data extraction. Harmonica is an open-source API that supports several tidal models. The ADCIRC 2015 and legacy LeProvost models are freely distributed, and the datasets are automatically downloaded from the Internet the first time an extraction is performed using one of these models. The FES2014, TPXO8 and TPXO9 models are also supported but require a separate license from their distributors. Complete the following steps to use the licensed datasets in SMS. | ||
===Appdata Directory=== | ===Appdata Directory=== | ||
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* [[SMS:ADCIRC_Coverages#Tidal_Attributes|Tidal Attributes]] | * [[SMS:ADCIRC_Coverages#Tidal_Attributes|Tidal Attributes]] | ||
* [[SMS:ADCIRC_Graphical_Interface#Tidal_Components|Tidal Constituents Dialog]] | * [[SMS:ADCIRC_Graphical_Interface#Tidal_Components|Tidal Constituents Dialog]] | ||
* [[Tidal Constituents]] | |||
Latest revision as of 16:33, 7 April 2023
This article is about tidal constituent source data. For applying tidal constituents to an ADCIRC simulation, see the Tidal Constituents dialog.
SMS uses Harmonica (github.com/Aquaveo/harmonica) for harmonic tidal data extraction. Harmonica is an open-source API that supports several tidal models. The ADCIRC 2015 and legacy LeProvost models are freely distributed, and the datasets are automatically downloaded from the Internet the first time an extraction is performed using one of these models. The FES2014, TPXO8 and TPXO9 models are also supported but require a separate license from their distributors. Complete the following steps to use the licensed datasets in SMS.
Appdata Directory
Regardless of which model is used, it needs to be ensured that the files are going to the right place. Here are the steps for getting to the right folder.
- Open a file browser and enter "%appdata%". This should go to a directory for the user's application data.
- In this folder, a "harmonica" folder will be needed, which should contain a folder named "data".
FES2014
Steps for installing the FES2014 model:
- Copy all FES2014 tidal elevation *.nc files to the <Path to Appdata>/harmonica/data/fes2014
- If the “data” or “fes2014” folders do not exist, create them.
- Ensure all of the NetCDF files follow the default FES2014 naming convention: <constituent name>.nc (e.g., “2n2.nc”, “k2.nc”).
TPXO8
Steps for installing the TPXO8 model:
- Copy all TPXO8 tidal elevation *.nc files to the <Path to Appdata>/harmonica/data/tpxo8
- If the “data” or “tpxo8” folders do not exist, create them.
- Harmonica expects the NetCDF files to be named with the default convention used by OSU.
- For 1/30 degree constituents (K1, K2, M2, M4, N2, O1, P1, Q1, S2): Files should be named “hf.<constituent name>_tpxo8_atlas_30c_v1.nc” (e.g., “hf.k1_tpxo8_atlas_30c_v1.nc”, “hf.m2_tpxo8_atlas_30c_v1.nc”).
- For 1/6 degree constituents (MF, MM, MN4, MS4): Files should be named “hf.<constituent name>_tpxo8_atlas_6.nc” (e.g., “hf.mf_tpxo8_atlas_6.nc”, “hf.mm_tpxo8_atlas_6.nc”).
TPXO9
Steps for installing the TPXO9 model:
- Copy the TPXO9 tidal elevation NetCDF file to the <Path to Appdata>/harmonica/data/tpxo9/tpxo9_netcdf
- If the “data”, “tpxo9”, or “tpxo9_netcdf” folders do not exist, create them.
- Harmonica expects the tidal elevation NetCDF file to be named “h_tpxo9.v1.nc”. Rename the file if necessary.
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