Published August 2002 | Version v1
Book

Reactor kinetics calculated in the summation method

  • 1. Aichi Shukutoku University, Department of Media Production and Theories, Nagakute, Aichi (Japan)

Description

The kinetics of a point reactor is solved directly form buildup and decay of fission-product (FP) nuclei for the first time. The purpose of this paper is to identify causes of the peculiar inhour equations calculated from delayed neutron temporal data in ENDF/B-VI, that were obtained from FP fission yields decay data. In this paper, the inhour equation is calculated in the summation method directly from FP data in ENDF/B-VI. For 235U, 238U and 239Pu, the inhour equation in the present method shows similar behavior. To identify FP data responsible for this peculiarity, the asymptotic form of the inhour equation at infinitely long periods is examined. It is found that the most important precursors for long reactor periods are found 137I, 88Br and 87Br. They cover more than 60% of the reactivity. Among them, 137I alone covers 30-50%. Moreover, 136Te is found a candidate precursor for the peculiarity from the time dependence of the delayed neutron emission. It is recommended that the precision of their Pn values should be improved experimentally. For 137I, 88Br, and 87Br, the precision, dPn/Pn, should be decreased down to 2% and for 136Te to 5%. (author)

Availability note (English)

Available from the Internet at URL https://doi.org/10.1080/00223131.2002.10875296
Part of:
Proceedings of the international conference on nuclear data for science and technology

Additional details

Publishing Information

Publisher
Atomic Energy Society of Japan
Imprint Place
Tokyo (Japan)
Imprint Title
Proceedings of the international conference on nuclear data for science and technology
Imprint Pagination
1547 p.
Journal Page Range
p. 1109-1111

Conference

Title
International conference on nuclear data for science and technology
Acronym
ND 2001
Dates
7-12 Oct 2001
Place
Tsukuba, Ibaraki (Japan)

Optional Information

Notes
5 refs., 5 figs.; This record replaces 34024883 Imprint:Published as supplement 2 of Journal of Nuclear Science and Technology in 2 volumes