Published July 1988 | Version v1
Journal article

Effect of cracks in coating on gas release from a fuel microparticle

Description

Effect of cracks in protective coating on gas release from a fuel microparticle is investigated in a general form. A fuel microparticle comprizing a kern, a buffer layer and an external protective coating is considered. The pressure of radioactive inert gases in the microparticle buffer layer is evaluated within the 1000-1800 K temperature range on the base of diffusion-defect-trap transport theory. It is shown that the process of radionuclide adsorption interaction with the coating material leads to a more abrupt than by exponent, weakening of mass transfer coefficient. In this case for long-living isotopes the effect of adsorption processes manifests weaker than for short-living ones. Mass transfer coefficient for the crack system depends sufficiently on the total pressure of gas mixture under the coating while for a single cracks such dependence is not observed. A conclusion is drawn that the obtained ratios can be applied for evaluating the character of fuel microparticle protective coating destruction (single non-intersecting cracks or a crack system) using the data on various nuclide release. These ratios can be also applied for the choice of the coating thichness under which gaseous fission product release from the fuel microparticle in case of its protective coating failure does not exceed the acceptable limits

Additional details

Additional titles

Original title (Russian)
Влияние трещин в покрытии на газовыделение из микротвэла

Publishing Information

Journal Title
Atomnaya Ehnergiya
Journal Volume
65
Journal Issue
1
Series
At. Ehnerg.
Journal Page Range
51-54
ISSN
0004-7163
CODEN
AENGA

INIS

Country of Publication
Russian Federation
Country of Input or Organization
USSR
INIS RN
20034736
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Resource subtype / Literary indicator
Numerical Data
Descriptors DEI
ADSORPTION; COATED FUEL PARTICLES; CRACKS; FISSION PRODUCT RELEASE; HIGH VACUUM; KRYPTON ISOTOPES; MASS TRANSFER; MEDIUM VACUUM; PROTECTIVE COATINGS; RADIOACTIVITY; THEORETICAL DATA; THICKNESS; ULTRAHIGH VACUUM; XENON ISOTOPES
Descriptors DEC
COATINGS; DATA; DIMENSIONS; FUEL PARTICLES; INFORMATION; NUMERICAL DATA