Diffusion Modeling Of Fission Product Release During Depressurized Core Conduction Cooldown Conditions

Download Diffusion Modeling Of Fission Product Release During Depressurized Core Conduction Cooldown Conditions full books in PDF, epub, and Kindle. Read online free Diffusion Modeling Of Fission Product Release During Depressurized Core Conduction Cooldown Conditions ebook anywhere anytime directly on your device. Fast Download speed and no annoying ads. We cannot guarantee that every ebooks is available!

Diffusion Modeling of Fission Product Release During Depressurized Core Conduction Cooldown Conditions

Diffusion Modeling of Fission Product Release During Depressurized Core Conduction Cooldown Conditions
Author :
Publisher :
Total Pages : 17
Release :
ISBN-10 : OCLC:727280738
ISBN-13 :
Rating : 4/5 ( Downloads)

Book Synopsis Diffusion Modeling of Fission Product Release During Depressurized Core Conduction Cooldown Conditions by :

Download or read book Diffusion Modeling of Fission Product Release During Depressurized Core Conduction Cooldown Conditions written by and published by . This book was released on 1990 with total page 17 pages. Available in PDF, EPUB and Kindle. Book excerpt: A simple model for diffusion through the silicon carbide layer of TRISO particles is applied to the data for accident condition testing of fuel spheres for the High-Temperature Reactor program of the Federal Republic of Germany (FRG). Categorization of sphere release of 137Cs based on fast neutron fluence permits predictions of release with an accuracy comparable to that of the US/FRG accident condition fuel performance model. Calculations are also performed for 85Kr, 9°Sr, and {sup 110m}Ag. Diffusion of cesium through SiC suggests that models of fuel failure should consider fuel performance during repeated accident condition thermal cycling. Microstructural considerations in models in fission product release are discussed. The neutron-induced segregation of silicon within the SiC structure is postulated as a mechanism for enhanced fission product release during accident conditions. An oxygen-enhanced SiC decomposition mechanism is also discussed. 12 refs., 11 figs., 2 tabs.


Diffusion Modeling of Fission Product Release During Depressurized Core Conduction Cooldown Conditions Related Books