Computational Fluid Dynamics Thermal Analysis of ITER Pressure Suppression Tanks

Author:

Basili Lorenzo1,Frano Rosa Lo1,Olcese Marco2,Sekachev Igor3,Aquaro Donato1

Affiliation:

1. DICI, University of Pisa, Pisa 56122, Italy

2. ITER Organization, St. Paul Lez Durance 13067, France

3. Stewart Blusson Quantum Matter Institute, University of British Columbia, Vancouver, BC V6T 1Z4, Canada

Abstract

Abstract The aim of the paper is to present the results of the investigation of the thermal conditions (temperature distribution, heat losses) in the support system of the vapor suppression tank (VST) of the vacuum vessel pressure suppression system (VVPSS), a safety important system of ITER fusion reactor, protecting the vacuum vessel (VV) against overpressures. The VVPSS includes four VSTs of identical volume and installed as two stacked assemblies. The study focuses on the optimization of the design of the thermal insulation at the bottom of the VSTs, interfacing with the basement and also on the identification of the thermal loads at the interface between the tank support and the tank pressure boundary. A computational fluid dynamics (CFD) analysis of the VST has been performed for four different insulation configurations and considering both steady-state and transient loads following accidental conditions. The results of the analysis are used to provide recommendation on the optimum configuration of the thermal insulation. Measures for minimization of the thermal gradient in the critical area of the joint between the tank hemispherical head and support skirt to limit the thermal fatigue on the welds are also suggested.

Publisher

ASME International

Subject

Nuclear Energy and Engineering,Radiation

Reference15 articles.

1. Modeling and Analysis of Alternative Concept of ITER Vacuum Vessel Primary Heat Transfer System;Fusion Eng. Des.,2010

2. Experimental Study of Steam Pressure Suppression by Condensation in a Water Tank at Sub-Atmospheric Pressure,2016

3. Fluid Dynamics Analysis of Loss of Vacuum Accident of ITER Cryostat;Fusion Eng. Des,2016

4. Experimental Investigation of Functional Performance of a Vacuum Vessel Pressure Suppression System of ITER;Fusion Eng. Des,2017

5. Experimental Investigation of Steam Condensation in Water Tank at Sub-Atmospheric Pressure;Nucl. Eng. Des,2018

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