Published January 1976 | Version v1
Journal article

Methods for the prediction and achievement of a low circuit activity in an HTR

  • 1. UKAEA Research Group, Harwell. Atomic Energy Research Establishment

Description

Whereas there are about 60000fuel pins in the core of an LWR power station, in a comparable HTR there would be over 1010 coated particles. This five orders of magnitude disparity in the number of basic fission retaining units has led to important differences in the approach to the prediction and achievement of a low circuit activity. With the HTR, the very large number of units requires statistical treatment of the failure mechanism involved in the escape of key fission products from the particles and in the assessment of the distribution in the core of burn-up, dose and temperature. The methods created to deal with these factors have proved to be very powerful, leading to a situation in which the distribution of fission products within the core and the probability of experiencing a given release are better known for the HTR than for the metal-clad fuel of other thermal systems. This advantage has been exploited and reinforced in the UK studies, first by the development of the technology of particle design (a combination of irradiation testing and theoretical analysis) and second by refining the study of fission product movement. This is a continuing process, but already it has usefully illuminated several aspects of design and operation, ranging from the specification and quality control of the fuel itself to the philosophy of outer containments. The current state of progress is summarised, normal operation being mainly considered. (author)

Additional details

Publishing Information

Journal Title
J. Br. Nucl. Energy Soc.
Journal Volume
15
Journal Issue
1
Series
J. Br. Nucl. Energy Soc.
Journal Page Range
67-78

Conference

Title
CSNI specialist meeting on high temperature gas cooled reactor safety.
Dates
May 1975.
Place
Petten, Netherlands.