The European DEMO Helium Cooled Pebble Bed Breeding Blanket: Design Status at the Conclusion of the Pre-Concept Design Phase

Author:

Zhou Guangming1ORCID,Hernández Francisco A.1ORCID,Pereslavtsev Pavel1ORCID,Kiss Béla2,Retheesh Anoop1ORCID,Maqueda Luis3,Park Jin Hun1

Affiliation:

1. Institute for Neutron Physics and Reactor Technology (INR), Karlsruhe Institute of Technology (KIT), 76344 Eggenstein-Leopoldshafen, Germany

2. Institute of Nuclear Techniques, Budapest University of Technology and Economics (BME), 1111 Budapest, Hungary

3. ESTEYCO, Avenida de Burgos, 12B-Bajo, 28036 Madrid, Spain

Abstract

Significant design efforts were undertaken during the Pre-Concept Design (PCD) phase of the European DEMO program to optimize the helium cooled pebble bed (HCPB) breeding blanket. A gate review was conducted for the entire European DEMO program at the conclusion of the PCD phase. This article presents a summary of the design evolution and the rationale behind the HCPB breeding blanket concept for the European DEMO. The main performance metrics, including nuclear, thermal hydraulics, thermal mechanical, and tritium permeation behaviors, are reported. These figures demonstrate that the HCPB breeding blanket is a highly effective tritium-breeding and robust driver blanket concept for the European DEMO. In addition, three alternative concepts of interest were explored. Furthermore, this article outlines the upcoming design and R&D activities for the HCPB breeding blanket during the Concept Design phase (2021–2027).

Funder

European Union via the Euratom Research and Training Programme

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference59 articles.

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5. Consolidated Design of the HCPB Breeding Blanket for the Pre-Conceptual Design Phase of the EU DEMO and Harmonization with the ITER HCPB TBM Program;Pereslavtsev;Fusion Eng. Des.,2020

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