Experimental and Computational Verification of a New Remote Monitoring System Design for Spent Fuel Dry Cask Safeguards Using Small-Scale, Generic Diversion Scenarios

Author:

King Jeremy W.1ORCID,South Danielle M.1ORCID,Marianno Craig M.1ORCID,Chirayath Sunil S.1ORCID

Affiliation:

1. Texas A&M University, College Station, Department of Nuclear Engineering, College Station, Texas

Funder

not receive any specific grant from funding agencies in the public, commercial, or not-for-profit sectors

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference30 articles.

1. “Nuclear Power Reactors in the World 2021 Edition,” IAEA-RDS-2/41, pp. 5–6, International Atomic Energy Agency (July 2021).

2. “Conclusion of Safeguards Agreements, Additional Protocols and Small Quantities Protocols: Status as of 15 September 2021,” International Atomic Energy Agency; https://www.iaea.org/sites/default/files/20/01/sg-agreements-comprehensive-status.pdf (current as of Dec. 20, 2021).

3. “Dry Cask Storage,” U.S. Nuclear Regulatory Commission; https://www.nrc.gov/waste/spent-fuel-storage/dry-cask-storage.html (current as of May 3, 2021).

4. “Spent Fuel Storage in Pools and Dry Casks Key Points and Questions & Answers,” U.S. Nuclear Regulatory Commission; https://www.nrc.gov/waste/spent-fuel-storage/faqs.html%23dry-cask (current as of Feb. 7, 2021).

5. “Independent Spent Fuel Storage Installation (ISFSI),” U.S. Nuclear Regulatory Commission; https://www.nrc.gov/reading-rm/basic-ref/glossary/independent-spent-fuel-storage-installation-isfsi.html (current as of Mar. 9, 2021).

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