Abstract
HEINBE is a program on personal computer for calculating helium production in beryllium under neutron irradiation. The program can also calculate the tritium production in beryllium. Considering many nuclear reactions and their multi-step reactions, helium and tritium productions in beryllium materials irradiated at fusion reactor or fission reactor may be calculated with high accuracy. The calculation method, user`s manual, calculated examples and comparison with experimental data were described. This report also describes a neutronics simulation method to generate additional data on swelling of beryllium, 3,000-15,000 appm helium range, for end-of-life of the proposed design for fusion blanket of the ITER. The calculation results indicate that helium production for beryllium sample doped lithium by 50 days irradiation in the fission reactor, such as the JMTR, could be achieved to 2,000-8,000 appm. (author).
Shimakawa, Satoshi;
Ishitsuka, Etsuo;
Sato, Minoru
[1]
- Japan Atomic Energy Research Inst., Oarai, Ibaraki (Japan). Oarai Research Establishment
Citation Formats
Shimakawa, Satoshi, Ishitsuka, Etsuo, and Sato, Minoru.
HEINBE; the calculation program for helium production in beryllium under neutron irradiation.
Japan: N. p.,
1992.
Web.
Shimakawa, Satoshi, Ishitsuka, Etsuo, & Sato, Minoru.
HEINBE; the calculation program for helium production in beryllium under neutron irradiation.
Japan.
Shimakawa, Satoshi, Ishitsuka, Etsuo, and Sato, Minoru.
1992.
"HEINBE; the calculation program for helium production in beryllium under neutron irradiation."
Japan.
@misc{etde_10150648,
title = {HEINBE; the calculation program for helium production in beryllium under neutron irradiation}
author = {Shimakawa, Satoshi, Ishitsuka, Etsuo, and Sato, Minoru}
abstractNote = {HEINBE is a program on personal computer for calculating helium production in beryllium under neutron irradiation. The program can also calculate the tritium production in beryllium. Considering many nuclear reactions and their multi-step reactions, helium and tritium productions in beryllium materials irradiated at fusion reactor or fission reactor may be calculated with high accuracy. The calculation method, user`s manual, calculated examples and comparison with experimental data were described. This report also describes a neutronics simulation method to generate additional data on swelling of beryllium, 3,000-15,000 appm helium range, for end-of-life of the proposed design for fusion blanket of the ITER. The calculation results indicate that helium production for beryllium sample doped lithium by 50 days irradiation in the fission reactor, such as the JMTR, could be achieved to 2,000-8,000 appm. (author).}
place = {Japan}
year = {1992}
month = {Nov}
}
title = {HEINBE; the calculation program for helium production in beryllium under neutron irradiation}
author = {Shimakawa, Satoshi, Ishitsuka, Etsuo, and Sato, Minoru}
abstractNote = {HEINBE is a program on personal computer for calculating helium production in beryllium under neutron irradiation. The program can also calculate the tritium production in beryllium. Considering many nuclear reactions and their multi-step reactions, helium and tritium productions in beryllium materials irradiated at fusion reactor or fission reactor may be calculated with high accuracy. The calculation method, user`s manual, calculated examples and comparison with experimental data were described. This report also describes a neutronics simulation method to generate additional data on swelling of beryllium, 3,000-15,000 appm helium range, for end-of-life of the proposed design for fusion blanket of the ITER. The calculation results indicate that helium production for beryllium sample doped lithium by 50 days irradiation in the fission reactor, such as the JMTR, could be achieved to 2,000-8,000 appm. (author).}
place = {Japan}
year = {1992}
month = {Nov}
}