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Featured researches published by Gandolfo Alessandro Spagnuolo.


IEEE Transactions on Plasma Science | 2018

Overview of the HCPB Research Activities in EUROfusion

Francisco Andrés León Hernández; Frederik Arbeiter; Lorenzo V. Boccaccini; Evaldas Bubelis; V. Chakin; Ion Cristescu; Bradut E. Ghidersa; María Asenjo González; Wolfgang Hering; T. Hernandez; Xue Z. Jin; Marc Kamlah; B. Kiss; Regina Knitter; M.H.H. Kolb; P. Kurinskiy; Oliver Leys; Ivan Alessio Maione; Marigrazia Moscardini; Gabor Nadasi; Heiko Neuberger; P. Pereslavtsev; Simone Pupeschi; R. Rolli; Sebastian Ruck; Gandolfo Alessandro Spagnuolo; P. Vladimirov; Christian Zeile; Guangming Zhou

In the framework of the EUROfusion’s Power Plant Physics and Technology, the working package breeding blanket (BB) aims at investigating four different BB concepts for an EU demonstration fusion reactor (DEMO). One of these concepts is the helium-cooled pebble bed (HCPB) BB, which is based on the use of pebble beds of lithiated ternary compounds and Be or beryllides as tritium breeder and multiplier materials, respectively, EUROFER97 as structural steel and He as coolant. This paper aims at giving an overview of the EU HCPB BB Research and Development (R&D) being developed at KIT, in collaboration with Wigner-RCP, BUTE-INT, and CIEMAT. The paper gives an outline of the HCPB BB design evolution, state-of-the-art basic functionalities, requirements and performances, and the associated R&D activities in the areas of design, functional materials, manufacturing, and testing. In addition, attention is given also to the activities dedicated to the development of heat transfer augmentation techniques for the first wall and the corresponding testing. Due to their nature as design drivers, a brief overview in the R&D of key HCPB interfacing areas is given as well, namely, the tritium extraction and recovery system, the primary heat transfer and power conversion systems, and safety topics, as well as some specific activities regarding the integration of in-vessel systems through the BB. As concluding remarks, an outline of the standing challenges and future R&D plans is summarized.


Fusion Engineering and Design | 2017

Identification of blanket design points using an integrated multi-physics approach

Gandolfo Alessandro Spagnuolo; F. Franza; Ulrich Fischer; L.V. Boccaccini


Fusion Engineering and Design | 2018

Development of helium coolant DEMO first wall model for SYCOMORE system code based on HCLL concept

Gandolfo Alessandro Spagnuolo; G. Aiello; J. Aubert


symposium on fusion technology | 2018

Systems Engineering approach in support to the breeding blanket design

Gandolfo Alessandro Spagnuolo; Gaetano Bongiovi; F. Franza; Ivan Alessio Malone


THE 9TH INTERNATIONAL CONFERENCE ON COMPUTATIONAL METHODS (ICCM2018) | 2018

INVITED: A multi-physics integrated approach to breeding blanket modelling and design

Gandolfo Alessandro Spagnuolo; P. Chiovaro; Pietro Alessandro Di Maio; Riccardo Favetti


9h International Conference on Computational Methods (ICCM 2018), Roma, I, August 6-10, 2018 | 2018

A multi-physics integrated approach to breeding blanket modellig and design

Gandolfo Alessandro Spagnuolo; P. Chiovaro; Pietro Alessandro Di Maio; Riccardo Favetti


9h International Conference on Computational Methods (ICCM 2018), Roma, I, August 6-10, 2018 | 2018

Validation of multi-physics integrated procedure for the HCPB breeding blanket

Riccardo Favetti; P. Chiovaro; P.A. Di Maio; Gandolfo Alessandro Spagnuolo


Fusion Engineering and Design | 2017

Automated parametric neutronics analysis of the Helium Cooled Pebble Bed breeder blanket with Be12Ti

J. Shimwell; Lei Lu; Yuefeng Qiu; P. Pereslavtsev; A. Häußler; Francisco Andrés León Hernández; Christian Zeile; T. Eade; Gandolfo Alessandro Spagnuolo; S. McIntosh; L.W. Packer; T. Barrett


13th International Symposium on Fusion Nuclear Technology (ISFNT-13), Kyoto, J, September 25-29, 2017 | 2017

Development of HCLL DEMO first wall desing for SYCOMORE system code

Gandolfo Alessandro Spagnuolo; G. Aiello; J. Aubert


symposium on fusion technology | 2016

Automated parametric neutronics analysis of the helium cooled pebble bed breeder blanket with Be₁₂Ti

J. Shimwell; L. Lu; Yuefeng Qiu; P. Pereslavtsev; A. Häußler; Francisco Andrés León Hernández; Christian Zeile; T. Eade; Gandolfo Alessandro Spagnuolo; L. Packer; T. Barrett

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Christian Zeile

Karlsruhe Institute of Technology

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P. Pereslavtsev

Karlsruhe Institute of Technology

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A. Häußler

Karlsruhe Institute of Technology

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F. Franza

Karlsruhe Institute of Technology

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Yuefeng Qiu

Karlsruhe Institute of Technology

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G. Aiello

Université Paris-Saclay

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J. Aubert

Université Paris-Saclay

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