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ansys.com article

Designing Nuclear Fusion Reactors with Simulation | Ansys

https://www.ansys.com/blog/designing-nuclear-fusion-reactors-simulation

# Designing Nuclear Fusion Reactors with Simulation. * designing-nuclear-fusion-reactors-simulation-nuclear-fusion.jpg. *Nuclear fusion reactors replicate the power of the sun and the stars.*. In theory, this makes fusion reactors an excellent choice to meet the world’s base power energy needs. Teams throughout the world are building and designing reactors that can bring nuclear fusion power into our energy mix. * designing-nuclear-fusion-reactors-simulation-demo-fusion-reactor.jpg. *Schematics of DEMO fusion reactor magnetic system.*. Nicknamed “star in a jar,” engineers hope that ITER will be the first nuclear fusion power plant to produce net energy and the first to maintain fusion over extended periods. These nuclear fusion reactors will lay the foundation for creating the next generation of fusion power plants. ITER and DEMO each rely on a toroidal doughnut-shaped chambers, formed by powerful superconducting magnets, to contain plasma hot enough to sustain fusion. * designing-nuclear-fusion-reactors-simulation-magnetic-stress.png. * designing-nuclear-fusion-reactors-simulation-first-design.jpg. The highly innovative ITER and DEMO teams are doing all they can to make nuclear fusion reactors a reality.

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ornl.gov official

All-in-one simulation tool enables faster, smarter fusion reactor design

https://www.ornl.gov/news/all-one-simulation-tool-enables-faster-smarter-fusi…

The tool will utilize the best modeling and simulation tools, advanced machine learning methods and high-performance computing to optimize and accelerate the fusion power plant design process. Collins, who leads the team, said FREDA will be the first fusion modeling tool to connect plasma and engineering models in a self-consistent, modular fashion to perform multiphysics, multi-fidelity analyses of reactor designs using scaled high-performance computational resources. “The models of the systems outside of the plasma, like structural mechanics, computational fluid dynamics, and neutronics analysis, can be quite similar between fusion and fission,” Borowiec said. Ultimately, the goal of FREDA is to create a tool for research organizations and private companies who want to design and build fusion devices for power generation or other scientific purposes. “Integrated modeling for the fusion community has a long, long history, but just now our capabilities are evolving very rapidly, and we have made enough progress to actually apply them to reactor design,” Park said.

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studsvik.com article

Nuclear Simulation Software - Studsvik

https://www.studsvik.com/key-offerings/nuclear-simulation-software/

+ #### Studsvik is a unique, independent partner that develops safety and efficiency for the global nuclear industry. + Studsvik and new nuclear power. + Studsvik and new nuclear power. ## Leading independent supplier of nuclear fuel management software. Studsvik Scandpower is the global leader in the development and support of nuclear fuel vendor-independent reactor analysis software. We offer a full suite of licensing-grade software and engineering services to support operating utilities, fuel vendors, safety authorities, next-generation reactor developers, and research organizations. Our products are used throughout the world for nuclear reactor fuel and core design, analysis, and operational support. Studsvik Scandpower’s software technologies and expertise improve every aspect of the nuclear fuel cycle. Studsvik Scandpower specializes in software for:. With hundreds of man-years of experience in reactor analysis, Studsvik’s engineers can help organizations with a wide range of core analysis engineering services. Studsvik Scandpower engineering services include:. Studsvik Scandpower’s world-class customer support stands out against the competition.

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psatellite.com article

Fusion Energy Toolbox – Princeton Satellite Systems

https://psatellite.com/products/fusion-energy-toolbox/

# Fusion Energy Toolbox. The Fusion Energy Toolbox for MATLAB provides functions and scripts for analyzing fusion reactor designs. PSS has been developing nuclear fusion engine software since 2007 for projects with the Princeton Plasma Physics Laboratory and our own research and development. The functions are suitable for both fusion propulsion and terrestial power generation. The module includes all major fusion reactions and models for fusion power generation and losses. You can study key plasma physics such as collision cross-sections, bremsstrahlung and synchrotron radiation, confinement times, fusion power and many other values. The following figure shows fusion cross-sections. 3D visualization of a fusion reactor design, showcasing magnetic field lines and reactor geometry in a coordinate system. You can use both toolboxes together to design nuclear fusion propelled spacecraft and plan their missions. | Reactor | Zero-dimensional fusion power models, divertors |. 2. McNally, “Physics of Fusion Fuel Cycles,” Nuclear Technology/Fusion, Vol. 2, Jan 1982. M., “Advanced Fusion Reactors,” Fusion, Teller, E.

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