Initial Coupling of the RELAP-7 and PRONGHORN Applications | |
Ortensi, J. ; Andrs, D. ; Bingham, A.A. ; Martineau, R.C. ; Peterson, J.W. | |
Idaho National Laboratory | |
关键词: Pronghorn; Coupled; 11 Nuclear Fuel Cycle And Fuel Materials Coupled; Relap-7; Multi-Physics; | |
DOI : 10.2172/1060984 RP-ID : INL/EXT-12-27350 RP-ID : DE-AC07-05ID14517 RP-ID : 1060984 |
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美国|英语 | |
来源: UNT Digital Library | |
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【 摘 要 】
Modern nuclear reactor safety codes require the ability to solve detailed coupled neutronic- thermal fluids problems. For larger cores, this implies fully coupled higher dimensionality spatial dynamics with appropriate feedback models that can provide enough resolution to accurately compute core heat generation and removal during steady and unsteady conditions. The reactor analysis code PRONGHORN is being coupled to RELAP-7 as a first step to extend RELAP’s current capabilities. This report details the mathematical models, the type of coupling, and the testing results from the integrated system. RELAP-7 is a MOOSE-based application that solves the continuity, momentum, and energy equations in 1-D for a compressible fluid. The pipe and joint capabilities enable it to model parts of the power conversion unit. The PRONGHORN application, also developed on the MOOSE infrastructure, solves the coupled equations that define the neutron diffusion, fluid flow, and heat transfer in a full core model. The two systems are loosely coupled to simplify the transition towards a more complex infrastructure. The integration is tested on a simplified version of the OECD/NEA MHTGR-350 Coupled Neutronics-Thermal Fluids benchmark model.
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