2014Energy Sources Part A Recovery Utilization and Environmental EffectsRequires access

Natural Circulation Cooling Scram Transient Analysis in Advanced BWRs: Buoyancy Effects

Gilberto Espinosa-Paredes, M.-A. Juárez-Sánchez, Alejandro Núñez-Carrera, A. Vázquez–Rodríguez

Open publisher page 0 citations

Abstract

In this study, the transient characteristics of a two-phase natural circulation core cooling in advanced boiling water reactors is investigated during a scram scenario. The natural circulation is controlled by the mean density difference between the coolant inside and outside of the core. The Boussinesq approximation was applied in the momentum equations for two-phase flow analysis that considers the buoyancy force, which is related with thermal effects. The results obtained in transient with the buoyancy force in the core were compared with the standard approximation. The found results for scram transient indicate that, for time–scale, a small trend is practically the same between Boussinesq and standard approximation, where the difference between them is small. However, for higher simulation time (8 to 12 s) the consequences of the drive force effects are appreciable.

About this research paper

What this paper is about

In this study, the transient characteristics of a two-phase natural circulation core cooling in advanced boiling water reactors is investigated during a scram scenario. The natural circulation is controlled by the mean density difference between the coolant inside and outside of the core. The Boussinesq approximation was applied in the momentum equations for two-phase flow analysis that considers the buoyancy force, which is related with thermal effects. The results obtained in transient with the buoyancy force in the core were compared with the standard approximation. The found results for scram transient indicate that, for time–scale, a small trend is practically the same between Boussinesq and standard approximation, where the difference between them is small. However, for higher simulation time (8 to 12 s) the consequences of the drive force effects are appreciable.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this study, the transient characteristics of a two-phase natural circulation core cooling in advanced boiling water reactors is investigated during a scram scenario. The natural circulation is controlled by the mean density difference between the coolant inside and outside of the core. The Boussinesq approximation was applied in the momentum equations for two-phase flow analysis that considers the buoyancy force, which is related with thermal effects. The results obtained in transient with the buoyancy force in the core were compared with the standard approximation. The found results for scram transient indicate that, for time–scale, a small trend is practically the same between Boussinesq and standard approximation, where the difference between them is small. However, for higher simulation time (8 to 12 s) the consequences of the drive force effects are appreciable.

Key concepts: Natural circulation, Scram, Buoyancy, Mechanics, Transient (computer programming), Boussinesq approximation (buoyancy), Momentum (technical analysis), Natural convection

Related papers

Back to paper searchBrowse research topicsOriginal source
Natural Circulation Cooling Scram Transient Analysis in Advanced BWRs: Buoyancy Effects — Research Paper | ScholarLens