Compile EFDC+ Source Code Using Intel oneAPI
Traditionally, scientific modeling software development has been siloed to the model developers.
Traditionally, scientific modeling software development has been siloed to the model developers.
In 2020, DSI implemented MPI in EFDC+ to improve model run time.
A follow-up study on the ULTIMATE-QUICKEST advective transport scheme in EFDC+, evaluating its computational efficiency against the original upwind differencing across several real-world model applications.
Automated testing systems are crucial in software development and quality assurance processes.
With so many new computer languages available today, a question often asked is, Why is EFDC+ coded in Fortran language
Improving EFDC+ model simulation efficiency can reduce the model runtimes, which is critical for many modeling applications.
In a previous blog post, we outlined some of the ways to improve EFDC+ model simulation efficiency to reduce the model runtimes.
The new shellfish sub-model in EEMS10.2 was used to replicate the Kobayashi et al., (1997) test case
The selection of a single layer vs. multiple layers for simulating hydrodynamic and water quality depends upon a range of factors.
EFDC+ now employs parallel processing capabilities using MPI combined with OpenMP, significantly accelerating model simulations.
Did you know that EFDC+ Explorer has a Velocity Rose feature?
Did you know that EFDC+ Explorer has a Downstream Velocity Projection feature?