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Special notice

Open Source Software: TMAP8: Simplifying Diffusion-Reactive Transport Analysis for Fusion and Chemical Applications

Department of Energy, Battelle Energy Alliance–doe CNTR. Nuclear Electric Power Generation.

Response deadline

March 15, 2026 at 11:00 AM EDT

Closed 187 days ago. Posted October 31, 2024. Scheduled to archive March 30, 2026.

Description

As published on SAM.gov.

Open Source Software:

TMAP8: Simplifying Diffusion-Reactive Transport Analysis for Fusion and Chemical Applications In computational modeling, the Tritium Migration Analysis Program (TMAP8) is a pioneering MOOSE application designed to streamline and enhance the analysis of 0-1D scalar diffusion-reactive transport.

With its bespoke syntax tailored for geometric and algebraic entities, TMAP8 offers a significant usability improvement over traditional MOOSE syntax, making it an invaluable tool for systems-level analysis in various scientific domains. The development of TMAP8 was driven by the need for a more intuitive and efficient way to conduct diffusion-reactive transport simulations, particularly for MOOSE users engaged in 0D and 1D approximations.

The complexity of full MOOSE syntax often presented a barrier to entry for newcomers to the field. Recognizing this, TMAP8 was created to fill this gap, building on the legacy of previous TMAP releases and leveraging the power of MOOSE's multiphysics capabilities. TMAP8 is an application that excels in solving 0-1D scalar diffusion-reactive transport problems, offering a unique custom syntax that simplifies the setup of diffusive-reactive and heat conduction models.

Its integration with MOOSE allows for seamless conjunction with multidimensional simulations, enabling comprehensive modeling of complex systems, such as chemical plants, where different dimensional approximations are required.

Advantages:

Simplified Syntax: Unique, user-friendly syntax makes setting up simulations more accessible and efficient.

Versatility: Can be used alongside multi-dimensional MOOSE applications for comprehensive multiscale modeling.

MOOSE Integration: Leverages a state-of-the-art multiphysics code with extensive support and development.

Wide Application Range: Suitable for analysts in fusion, chemical transport, and low-temperature plasma sectors.

Community and Name Recognition: Builds on the legacy of previous TMAP versions, promoting user adoption.

Applications: Low-temperature plasma analysis Fusion energy science simulations Chemical transport modeling in industrial applications Systems-level analysis for chemical reactors and connecting piping Explore the frontier of diffusion-reactive transport analysis with TMAP8 and elevate your research and industrial applications to new heights. Download TMAP8 today to harness the power of simplified simulations and join a growing community of innovators shaping the future of scientific discovery.

INL’s Technology Deployment department focuses exclusively on licensing intellectual property and partnering with industry collaborators capable of commercializing our innovations. Our goal is to commercialize the technologies developed by INL researchers. We do not engage in purchasing, manufacturing, procurement decisions, or providing funding. Additionally, this is not a call for external services to assist in the development of this technology.

Publications

Every notice SAM.gov issued under this solicitation number, oldest first. Each is a separate record on SAM.

  1. October 31, 2024

    Special notice

    Due March 15, 2026 at 11:00 AM EDT. SAM.gov, notice b46f0aa7e20a4cb0a541f4a724b27fbd

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