2021
DOI: 10.17146/tdm.2021.23.3.6355
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CRITICALITY SAFETY ANALYSIS OF THE DRY CASK DESIGN WITH AIR GAPS FOR RDNK SPENT PEBBLE FUELS STORAGECriticality Safety Analysis of the Dry Cask Design with Air Gaps for RDNK Spent Pebble Fuels Storage

Abstract: Reaktor Daya Non-Komersial (RDNK) with a 10 MW thermal power has been proposed as one of the technology options for the first nuclear power plant program in Indonesia. The reactor is a High Temperature Gas-Cooled Reactor-type with spherical fuel elements called pebbles. To support this program, it is necessary to prepare dry cask to safely store the spent pebble fuels that will be generated by the RDNK. The dry cask design has been proposed based on the Castor THTR/AVR but modified with air gaps to facilitate … Show more

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“…This storage systems required dry casks, which consist of canisters in which the spent nuclear fuels are placed, and outer shielding. The dry cask must comply with stringent safety criteria including nuclear criticality and radiation exposure limit [4,5]. Stainless steel, carbon steel, iron, concrete, and the combination of those materials have been used as materials for the dry cask to provide integrity and gamma radiation shielding.…”
Section: Introductionmentioning
confidence: 99%
“…This storage systems required dry casks, which consist of canisters in which the spent nuclear fuels are placed, and outer shielding. The dry cask must comply with stringent safety criteria including nuclear criticality and radiation exposure limit [4,5]. Stainless steel, carbon steel, iron, concrete, and the combination of those materials have been used as materials for the dry cask to provide integrity and gamma radiation shielding.…”
Section: Introductionmentioning
confidence: 99%