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Recent Nuclear Fusion Breakthrough Supported by AFT Arrow

Feb 25, 2014
1 minute read
Trey Walters, P.E.
Trey Walters, P.E.
Trey Walters is currently Principal, R&D, Engineering Software at Datacor. He previously founded Applied Flow Technology which is now part of Datacor. He has developed simulation software for pipe flow, system optimization, slurries, waterhammer, and pulsation modeling. He has 40 years of experience in thermal/fluid system engineering and has consulted in numerous industries including power, municipal water, oil & gas and chemicals. He holds both a Bachelor and Masters Degree in Mechanical Engineering. He sits on several standards committees of the Hydraulic Institute and is Chairman of their Waterhammer Committee, and he is a Fellow of the ASME.

It is always interesting to see items in the news where our software has played a role. Last week a breakthrough in nuclear research was achieved at Lawrence Livermore National Laboratory's (LLNL) National Ignition Facility (NIF).

According to science journal Nature, "Using the world's most powerful assembly of lasers, a team of researchers say they have, for the first time, extracted more energy from controlled nuclear fusion than was absorbed by the fuel to trigger it — crossing an important symbolic threshold on the long path toward exploiting this virtually boundless source of energy."

AFT Arrow was used over a decade ago by LLNL engineers to help design the synthetic air cooling system for the NIF.

Cool stuff! No pun intended!

Also of recent interest is that AFT Arrow now has a Nuclear Verification and Validation package available. Read more about that .

Artist's rendering shows a NIF target pellet inside a hohlraum capsule with laser beams entering through openings on either end



NIF Building

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