科技报告详细信息
On0Line Fuel Failure Monitor for Fuel Testing and Monitoring of Gas Cooled Very High Temperature Reactor
Ayman I. Hawari ; Mohamed A. Bourham
关键词: CONTAINMENT;    FAST NEUTRONS;    GRAPHITE;    IDAHO;    KERNELS;    LAUNCHING;    MICROSPHERES;    MONITORING;    MONITORS;    NORTH CAROLINA;    RADIOACTIVITY;    SILICON CARBIDES;    TEST REACTORS;    TES;   
DOI  :  10.2172/978463
RP-ID  :  DOE/ID/14662
PID  :  OSTI ID: 978463
Others  :  TRN: US1003129
美国|英语
来源: SciTech Connect
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【 摘 要 】
IVery High Temperature Reactors (VHTR) utilize the TRISO microsphere as the fundamental fuel unit in the core. The TRISO microsphere (~ 1- mm diameter) is composed of a UO2 kernel surrounded by a porous pyrolytic graphite buffer, an inner pyrolytic graphite layer, a silicon carbide (SiC) coating, and an outer pyrolytic graphite layer. The U-235 enrichment of the fuel is expected to range from 4% ??? 10% (higher enrichments are also being considered). The layer/coating system that surrounds the UO2 kernel acts as the containment and main barrier against the environmental release of radioactivity. To understand better the behavior of this fuel under in-core conditions (e.g., high temperature, intense fast neutron flux, etc.), the US Department of Energy (DOE) is launching a fuel testing program that will take place at the Advanced Test Reactor (ATR) located at Idaho National Laboratory (INL). During this project North Carolina State University (NCSU) researchers will collaborate with INL staff for establishing an optimized system for fuel monitoring for the ATR tests. In addition, it is expected that the developed system and methods will be of general use for fuel failure monitoring in gas cooled VHTRs.
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