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2026 Nuclear Energy Conference & Expo (NECX)
August 24–27, 2026
Dallas, TX|Hilton Anatole
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Diversification and the common ground
Craig Piercycpiercy@ans.org
Who would have thought, just a few years ago, that we would see so many long-standing barriers to new nuclear development falling like dominoes? Public opinion, policy, regulatory reform, finance and investment, design maturity, nuclear fuel enrichment, and fuel fabrication capacity have all advanced with remarkable speed in the United States.
Conventional wisdom holds that the most effective way to scale up the nuclear supply chain is to do so strategically, matching investments to the needs of reactor developers.
Yogesh R. Pawar, Arun Kumar Nayak, Adarsh Kumar Dureja, Parimal Kulkarni
Nuclear Science and Engineering | Volume 200 | Number 10 | October 2026 | Pages 2221-2236
Research Article | doi.org/10.1080/00295639.2025.2575421
Articles are hosted by Taylor and Francis Online.
Safety systems, like the passive containment air-cooling system, are used to remove heat from a containment during accident conditions in advanced nuclear reactors, including small modular reactors having a steel containment. For the effective performance of the passive containment air cooling system with and without a chimney, it is highly important to understand the natural convection air flow around the containment. The experimental investigation of passive containment air cooling of an experimental test setup with and without a chimney, with a geometry very similar to that of an actual reactor, is presented in this paper. Comparisons between the air-side transient natural convection characteristics with and without a chimney were studied in detail based on the temperature measurement. The effect of a chimney was found to have an adverse effect on natural convection behavior due to possible air recirculation zones and restrictions to air flow due to its present shape.