PREDICTION OF FREE SURFACE FLOW ON CONTAINMENT FLOOR USING A SHALLOW WATER EQUATION SOLVER
A calculation model is developed to predict the transient free surface flow on the containment floor following a loss-ofcoolant accident (LOCA) of pressurized water reactors (PWR) for the use of debris transport evaluation. The model solves the two-dimensional Shallow Water Equation (SWE) using a fi...
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Veröffentlicht in: | Nuclear engineering and technology 2009, 41(8), , pp.1045-1052 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A calculation model is developed to predict the transient free surface flow on the containment floor following a loss-ofcoolant
accident (LOCA) of pressurized water reactors (PWR) for the use of debris transport evaluation. The model solves the
two-dimensional Shallow Water Equation (SWE) using a finite volume method (FVM) with unstructured triangular meshes.
The numerical scheme is based on a fully explicit predictor-corrector method to achieve a fast-running capability and numerical
accuracy. The Harten-Lax-van Leer (HLL) scheme is used to reserve a shock-capturing capability in determining the convective
flux term at the cell interface where the dry-to-wet changing proceeds. An experiment simulating a sudden break of a water
reservoir with L-shape open channel is calculated for validation of the present model. It is shown that the present model agrees
well with the experiment data, thus it can be justified for the free surface flow with accuracy. From the calculation of flow
field over the simplified containment floor of APR1400, the important phenomena of free surface flow including propagations
and interactions of waves generated by local water level distribution and reflection with a solid wall are found and the
transient flow rates entering the Holdup Volume Tank (HVT) are obtained within a practical computational resource. KCI Citation Count: 1 |
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ISSN: | 1738-5733 2234-358X |
DOI: | 10.5516/NET.2009.41.8.1045 |