Integration of Modeling Capabilities in CATHENA for Supercritical Water Reactors

Author:

Beuthe T.1,Vasić A.1,Zahlan H.1,Nava Domínguez A.1

Affiliation:

1. Canadian Nuclear Laboratories, 286 Plant Road, Chalk River, ON K0J1J0, Canada

Abstract

Abstract CATHENA has been successfully employed to simulate accident and startup transients in the development of the Canadian supercritical water reactor concept. This success is attributed to the implementation of a novel method to integrate supercritical modeling elements into the code. A supercritical water properties scheme was used that does not rely on the use of pseudo-phases and treats the supercritical regime as a single uninterrupted phase. The development of a robust numerical strategy manages the transitions that can occur in accident scenarios. Finally, the utilization of an expanded transcritical heat transfer look-up-table that smoothly transitions across the near-critical and supercritical regions over a wide temperature range ensures consistent, stable simulation results.

Publisher

ASME International

Subject

Nuclear Energy and Engineering,Radiation

Reference18 articles.

1. CATHENA: A Thermalhydraulic Code for CANDU Analysis;Nucl. Eng. Des.,1998

2. RELAP5-3D Code for Supercritical-Pressure, Light-Water-Cooled Reactors,2003

3. Preliminary Calculations of a Supercritical Light Water Reactor Concept Using the CATHARE Code,2003

4. The Extension of the CATHARE2 Computer Code Above the Critical Point, Applications to a Supercritical Light Water Reactor,2003

5. Modification and Application of the System Analysis Code ATHLET to Trans-Critical Simulations;Ann. Nucl. Energy,2012

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