The ITER tokamak neutronics reference model C-Model

Dieter Leichtle, Bethany Colling, Marco Fabbri, Rafael Juarez, Michael Loughlin, Raul Pampin, Eduard Polunovskiy, Arkady Serikov, Andrew Turner, Luciano Bertalot

Research output: Contribution to journalArticlepeer-review

63 Scopus citations

Abstract

The ITER Organization maintains neutronics reference models for nuclear analysis. The “lite” series of tokamak sector models has progressed over many years to the C-lite V1 model released at the end of 2013. Since then several model updates have been continuously implemented in various C-lite V2 models. The latest release, C-Model represents the 40° regular sector of the tokamak up to the bioshield with central upper, equatorial and lower ports, i.e. an even-port configuration. C-Model, as previous C-lite models, is based on a modular concept of model envelopes which fill all space of the torus sector. This envelope block structure has been adopted to facilitate model update management on the basis of single standalone models, which can be easily replaced in the model assembly. C-Model has been significantly improved with respect to C-lite in terms of specific system model design status and level of detail, focused on in-vessel and vessel components. The development of those updated system models was conducted according to the quality standards of ITER reference models. Modelling instructions, documentation and verification formed an essential part of the related activities.

Original languageEnglish
Pages (from-to)742-746
Number of pages5
JournalFusion Engineering and Design
Volume136
DOIs
StatePublished - Nov 2018
Externally publishedYes

Funding

A major part of the work leading to this publication has been funded by Fusion for Energy under several contracts ( OMF-466-02-03 , OMF-466-01-04 , OMF-466-03-05 , OMF-466-03-07 , OMF-466-03-08 , OMF-466-01-09 ) and by ITER Organization under contracts IO/4300000896 and IO/CT/4300001299 . This publication reflects the views only of the author, and Fusion for Energy cannot be held responsible for any use which may be made of the information contained therein. A major part of the work leading to this publication has been funded by Fusion for Energy under several contracts (OMF-466-02-03, OMF-466-01-04, OMF-466-03-05, OMF-466-03-07, OMF-466-03-08, OMF-466-01-09) and by ITER Organization under contracts IO/4300000896 and IO/CT/4300001299. This publication reflects the views only of the author, and Fusion for Energy cannot be held responsible for any use which may be made of the information contained therein.

FundersFunder number
ITERIO/CT/4300001299, IO/4300000896
ITER Organization
Fusion for EnergyOMF-466-01-04, OMF-466-02-03, OMF-466-03-05

    Keywords

    • ITER
    • MCNP
    • Neutronics
    • Shielding analysis

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