Publication result detail

Comparison of Neutron Flux Density in Carbon Prism filled with NaCl and Air

ŠTEVANKA, K.; KRÁL, D.; ŠŤASTNÝ, O.; HOLOMB, R.; KATOVSKÝ, K.; SOUSA MARTINS, H.

Original Title

Comparison of Neutron Flux Density in Carbon Prism filled with NaCl and Air

English Title

Comparison of Neutron Flux Density in Carbon Prism filled with NaCl and Air

Type

Paper in proceedings (conference paper)

Original Abstract

This paper compares the results of the two experiments with graphite block which has 39 holes drilled into it. In one experiment most of the holes were filled with NaCl and neutron flux density was measured using Au and In activation detectors. During the second experiment, neutron flux density was measured in the graphite prism without any salt. The reaction rates were compared and analysed.

English abstract

This paper compares the results of the two experiments with graphite block which has 39 holes drilled into it. In one experiment most of the holes were filled with NaCl and neutron flux density was measured using Au and In activation detectors. During the second experiment, neutron flux density was measured in the graphite prism without any salt. The reaction rates were compared and analysed.

Keywords

NaCl, chloride salts, HPGe, neutron flux

Key words in English

NaCl, chloride salts, HPGe, neutron flux

Authors

ŠTEVANKA, K.; KRÁL, D.; ŠŤASTNÝ, O.; HOLOMB, R.; KATOVSKÝ, K.; SOUSA MARTINS, H.

RIV year

2021

Released

19.10.2020

Publisher

IEEE

Location

New York

ISBN

978-1-7281-9479-0

Book

Proccedings of the 2020 21th International Scientific Conference on Electric Power Engineering (EPE)

Pages from

372

Pages to

376

Pages count

5

URL

BibTex

@inproceedings{BUT164776,
  author="Kamil {Števanka} and Dušan {Král} and Ondřej {Šťastný} and Robert {Holomb} and Karel {Katovský} and Humberto {Sousa Martins}",
  title="Comparison of Neutron Flux Density in Carbon Prism filled with NaCl and Air",
  booktitle="Proccedings of the 2020 21th International Scientific Conference on Electric Power Engineering (EPE)",
  year="2020",
  pages="372--376",
  publisher="IEEE",
  address="New York",
  doi="10.1109/EPE51172.2020.9269170",
  isbn="978-1-7281-9479-0",
  url="https://ieeexplore.ieee.org/document/9269170"
}