Modeling of Local Steam Condensation on Walls in Presence of Non-condensable Gases. Application to a Loca Calculation in Reactor Containment Using the Multidimensional Geyser/tonus Code

Modeling of Local Steam Condensation on Walls in Presence of Non-condensable Gases. Application to a Loca Calculation in Reactor Containment Using the Multidimensional Geyser/tonus Code PDF Author:
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Languages : en
Pages : 13

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Book Description
This paper reports part of a study of possible severe pressurized water reactor (PWR) accidents. The need for containment modeling, and in particular for a hydrogen risk study, was reinforced in France after 1990, with the requirement that severe accidents must be taken into account in the design of future plants. This new need of assessing the transient local hydrogen concentration led to the development, in the Mechanical Engineering and Technology Department of the French Atomic Energy Commission (CEA/DMT), of the multidimensional code GEYSER/TONUS for containment analysis. A detailed example of the use of this code is presented. The mixture consisted of noncondensable gases (air or air plus hydrogen) and water vapor and liquid water. This is described by a compressible homogeneous two-phase flow model and wall condensation is based on the Chilton-Colburn formula and the analogy between heat and mass transfer. Results are given for a transient two-dimensional axially-symmetric computation for the first hour of a simplified accident sequence. In this there was an initial injection of a large amount of water vapor followed by a smaller amount and by hydrogen injection.