Instructions and code examples to build and run a regional NEMO (https://www.nemo-ocean.eu/) ocean model and apply some post simulation analysis. The workflow uses Docker containers and are designed to be run on consumer laptops. We cover the following topics: Introduction to Docker Download and setup Docker. Download and setup (or build) NEMO and XIOS server in a Docker container. Running NEMO Download and setup Miniconda (Python) in a Docker container. Plotting and animating surface fields with Python. Analysis of NEMO outputs with PARCELS. This work has been supported by a number of projects: Addressing Challenges of Coastal Communities through Ocean Research for Developing Economies ACCORD. NERC NE/R000123/1 - providing ...
The ocean engine of NEMO is a primitive equation model adapted to regional and global ocean circulat...
OCEANS 2023 is an event for global maritime professionals to learn, innovate, and lead in the protec...
A regional ocean model based on the NEMO framework was developed for the Caribbean. The model inclu...
Instructions and code examples to build and run a regional NEMO (https://www.nemo-ocean.eu/) ocean m...
NEMO regional configuration of the Caribbean This model configuration has been developed through th...
Ultimately, the MERSEA project has to demonstrate the European capacity to connect different regiona...
A toolbox aiding users setting up lateral boundary conditions for a regional NEMO (http://www.nemo-o...
Coastal Ocean Assessment Toolkit (COAsT) is a Python package for managing and analysing high resolut...
A Coastal Ocean Assessment Tool built as an extendable python framework for nemo model
Regional ocean circulation simulation of South East Asia at 1/12 deg using the NEMO framewor
NEMO source code, compilation keys and namelists of PGM4, GULF18-3.6 and GULF18-4.0 models used in G...
This document is a demonstration guide of the PISCES marine biogeochemistry model using a 1D configu...
Container terminals world wide are trying to expand capacity and increase performance at a minimum o...
In this document is described the OceanVAR software (a three- dimensional variational data assimilat...
NEMO regional ocean configuration worked example: WED025 This is a step by step tutorial on how to ...
The ocean engine of NEMO is a primitive equation model adapted to regional and global ocean circulat...
OCEANS 2023 is an event for global maritime professionals to learn, innovate, and lead in the protec...
A regional ocean model based on the NEMO framework was developed for the Caribbean. The model inclu...
Instructions and code examples to build and run a regional NEMO (https://www.nemo-ocean.eu/) ocean m...
NEMO regional configuration of the Caribbean This model configuration has been developed through th...
Ultimately, the MERSEA project has to demonstrate the European capacity to connect different regiona...
A toolbox aiding users setting up lateral boundary conditions for a regional NEMO (http://www.nemo-o...
Coastal Ocean Assessment Toolkit (COAsT) is a Python package for managing and analysing high resolut...
A Coastal Ocean Assessment Tool built as an extendable python framework for nemo model
Regional ocean circulation simulation of South East Asia at 1/12 deg using the NEMO framewor
NEMO source code, compilation keys and namelists of PGM4, GULF18-3.6 and GULF18-4.0 models used in G...
This document is a demonstration guide of the PISCES marine biogeochemistry model using a 1D configu...
Container terminals world wide are trying to expand capacity and increase performance at a minimum o...
In this document is described the OceanVAR software (a three- dimensional variational data assimilat...
NEMO regional ocean configuration worked example: WED025 This is a step by step tutorial on how to ...
The ocean engine of NEMO is a primitive equation model adapted to regional and global ocean circulat...
OCEANS 2023 is an event for global maritime professionals to learn, innovate, and lead in the protec...
A regional ocean model based on the NEMO framework was developed for the Caribbean. The model inclu...