科技报告详细信息
Preliminary Investigation of Rapid Depressurization Phenomena Following a Sudden DLOFC in a VHTR.
Martineau, R. C. ; Berry, R. A.
Technical Information Center Oak Ridge Tennessee
关键词: VHTR Reactor;    Depressurization;    Reactor cores;    Reactor vessels;    Reactor cooling systems;   
RP-ID  :  DE2009957535
学科分类:工程和技术(综合)
美国|英语
来源: National Technical Reports Library
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【 摘 要 】

Air ingress has been identified as a potential threat for Very High Temperature gas-cooled Reactors (VHTR). Reactor components constructed of graphite will, at high temperatures, produce exothermic reactions in the presence of oxygen. The danger lies in the possibility of fuel element damage and core structural failure. Previous investigations of air ingress mechanisms have focused on thermal and molecular diffusion, density-driven stratified flow due to hydrodynamic instability, and natural convection. Here, we investigate the possibility of a rapid flow reversal of helium coolant due to a Taylor (rarefaction) wave expansion after a hypothetical sudden depressurized loss of forced cooling (DLOFC) scenario in a VHTR. Concievably, flow reversal of the helium coolant could entrain significant quantities of air into the reactor vessel. Our analysis starts with a one-dimensional shock tube simulation to simply illustrate the development of a Taylor wave with resulting reentrant flow. Then, a simulation is performed of an idealized two-dimensional axisymmetric representation of the lower plenum of General Atomics GT-MHR subjected to a hypothetical catastrophic break of the hot duct.

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