Measurement and analysis of neutron flux spectra in a neutronics mock-up of the HCLL test blanket module

  • A. Klix
  • , P. Batistoni
  • , R. Böttger
  • , D. Lebrun-Grandie
  • , U. Fischer
  • , J. Henniger
  • , D. Leichtle
  • , R. Villari

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Fast neutron and gamma-ray flux spectra and time-of-arrival spectra of slow neutrons have been measured in a neutronics mock-up of the European Helium-Cooled Lithium-Lead Test Blanket Module with the aim to validate nuclear cross-section data. The mock-up was irradiated with fusion peak neutrons from the DT neutron generator of the Technical University of Dresden. A well characterized cylindrical NE-213 scintillator was inserted into two positions in the LiPb/EUROFER assembly. Pulse height spectra from neutrons and gamma-rays were recorded from the NE-213 output. The spectra were then unfolded with experimentally obtained response matrices of the NE-213 detector. Time-of-arrival spectra of slow neutrons were measured with a 3He counter placed in the mock-up, and the neutron generator was operated in pulsed mode. Monte Carlo calculations using the MCNP code and nuclear cross-section data from the JEFF-3.1.1 and FENDL-2.1 libraries were performed and the results are compared with the experimental results. A good agreement of measurement and calculation was found with some deviations in certain energy intervals.

Original languageEnglish
Pages (from-to)1803-1806
Number of pages4
JournalFusion Engineering and Design
Volume85
Issue number10-12
DOIs
StatePublished - Dec 2010
Externally publishedYes

Funding

This work, supported by the European Communities under the contracts of Association with EURATOM, was carried out within the framework of the European Fusion Development Agreement. The views and opinions expressed herein do not necessarily reflect those of the European Commission.

Keywords

  • Fast neutron flux
  • HCLL-TBM
  • Lithium lead
  • Mock-up
  • Time-of-arrival spectrum

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