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Reactor Physics
The division's objectives are to promote the advancement of knowledge and understanding of the fundamental physical phenomena characterizing nuclear reactors and other nuclear systems. The division encourages research and disseminates information through meetings and publications. Areas of technical interest include nuclear data, particle interactions and transport, reactor and nuclear systems analysis, methods, design, validation and operating experience and standards. The Wigner Award heads the awards program.
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2024 ANS Winter Conference and Expo
November 17–21, 2024
Orlando, FL|Renaissance Orlando at SeaWorld
Standards Program
The Standards Committee is responsible for the development and maintenance of voluntary consensus standards that address the design, analysis, and operation of components, systems, and facilities related to the application of nuclear science and technology. Find out What’s New, check out the Standards Store, or Get Involved today!
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Latest News
National awards to be presented at ANS Winter Conference
One of the few constants at American Nuclear Society national meetings is the recognition of exceptional individuals in the nuclear community. ANS President Lisa Marshall has named this season’s award recipients, who will receive recognition at the upcoming Winter Conference and Expo in Orlando, Fla.
ANS also announces the winners of awards presented by the Society’s professional divisions. These awards will be mailed to the recipients, and the divisions will recognize honorees at various division functions and meetings this fall. The 19 professional divisions of ANS are constituent units and represent a vast array of nuclear science and technology disciplines.
J. Northall, J. P. Knowles
Fusion Science and Technology | Volume 71 | Number 3 | April 2017 | Pages 246-250
Technical Paper | doi.org/10.1080/15361055.2016.1273710
Articles are hosted by Taylor and Francis Online.
The 3He release from partially loaded uranium tritide samples with varying isotope compositions has been monitored over a 6.7 year period. A normalizing treatment for the 3He released that allows the data to converge to a common trend is discussed. The samples exhibited an early release proportion of ca 5% and an onset of accelerated release at ca 0.24 He/U. It is concluded that 3He is only accumulated within the uranium that reacted during loading and the presence of hydrogen and deuterium influences 3He release.