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Division Spotlight
Operations & Power
Members focus on the dissemination of knowledge and information in the area of power reactors with particular application to the production of electric power and process heat. The division sponsors meetings on the coverage of applied nuclear science and engineering as related to power plants, non-power reactors, and other nuclear facilities. It encourages and assists with the dissemination of knowledge pertinent to the safe and efficient operation of nuclear facilities through professional staff development, information exchange, and supporting the generation of viable solutions to current issues.
Meeting Spotlight
ANS Student Conference 2025
April 3–5, 2025
Albuquerque, NM|The University of New Mexico
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
ARG-US Remote Monitoring Systems: Use Cases and Applications in Nuclear Facilities and During Transportation
As highlighted in the Spring 2024 issue of Radwaste Solutions, researchers at the Department of Energy’s Argonne National Laboratory are developing and deploying ARG-US—meaning “Watchful Guardian”—remote monitoring systems technologies to enhance the safety, security, and safeguards (3S) of packages of nuclear and other radioactive material during storage, transportation, and disposal.
J. Cartier, G. Samba
Nuclear Science and Engineering | Volume 154 | Number 1 | September 2006 | Pages 28-47
Technical Paper | doi.org/10.13182/NSE06-A2616
Articles are hosted by Taylor and Francis Online.
We introduce a new method based on mixed and hybrid finite element for solving the second-order discrete ordinates transport equation on unstructured grids in any arbitrary spatial dimensions. We derive a mixed variational form of the transport equation and describe the mixed and hybrid discretization procedure. We also prove discrete asymptotic properties in slab geometry. We present some numerical results to illustrate the efficiency of our method.