Assessment of the relevancy of ENEA Water Loop facility with respect to ITER WCLL TBS Water Cooling System by considering their thermal-hydraulic performances

被引:1
作者
Gonfiotti, B. [1 ]
Ciurluini, C. [2 ]
Giannetti, F. [2 ]
Arena, P. [1 ]
Del Nevo, A. [1 ]
机构
[1] ENEA, Dept Fus & Nucl Safety Technol, I-40032 Camugnano, BO, Italy
[2] Sapienza Univ Rome, DIAEE Dept, I-00186 Rome, Italy
关键词
Water Loop; WCLL-WCS; RELAP5; Normal operational state; LOFA;
D O I
10.1016/j.fusengdes.2024.114375
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The Water -Cooled Lead -Lithium (WCLL) is one of the two candidate concepts for the Breeding Blanket (BB) of DEMO. A Test Blanket Module (TBM) together with its Water Cooling System (WCS) is going to be installed and tested in the ITER reactor. The WCS acts as primary cooling circuit of the TBM module, and it is designed to reproduce the water thermodynamic conditions expected at the DEMO BB inlet. During last years, ENEA and the DIAEE of Sapienza University of Rome have carried out the conceptualization of the Water Loop (WL) facility, belonging to the W -HYDRA experimental platform planned at C.R. Brasimone. The W -HYDRA platform is composed by three individual facilities called: Water Loop, Steam, and LIFUS5/Mod4. Water Loop replicates the salient thermal -hydraulic features of the ITER WCLL WCS, and it is equipped with a test section placed inside a Vacuum Vessel (VV) to investigate mock-ups of the whole TBM or its individual parts. This paper assesses the relevancy of the WL facility with respect to ITER WCLL TBM System comparing their thermal -hydraulic performances during selected operational and accidental conditions. Two RELAP5/Mod3.3 models were developed, and the outcomes of the simulations showed a good agreement, thus demonstrating the effectiveness of WL facility to support the ITER TBM program.
引用
收藏
页数:7
相关论文
共 11 条
[1]  
Arena P., 2023, INT S FUS NUCL TECHN
[2]   Status of maturation of critical technologies and systems design: Breeding blanket [J].
Boccaccini, L. V. ;
Arbeiter, F. ;
Arena, P. ;
Aubert, J. ;
Buehler, L. ;
Cristescu, I. ;
Del Nevo, A. ;
Eboli, M. ;
Forest, L. ;
Harrington, C. ;
Hernandez, F. ;
Knitter, R. ;
Neuberger, H. ;
Rapisarda, D. ;
Sardain, P. ;
Spagnuolo, G. A. ;
Utili, M. ;
Vala, L. ;
Venturini, A. ;
Vladimirov, P. ;
Zhou, Guangming .
FUSION ENGINEERING AND DESIGN, 2022, 179
[3]   Conceptual design overview of the ITER WCLL Water Cooling System and supporting thermal-hydraulic analysis [J].
Ciurluini, C. ;
Narcisi, V ;
Tincani, A. ;
Ferrer, C. Ortiz ;
Giannetti, F. .
FUSION ENGINEERING AND DESIGN, 2021, 171
[4]   Study of the EU-DEMO WCLL Breeding Blanket Primary Cooling Circuits Thermal-Hydraulic Performances during Transients Belonging to LOFA Category [J].
Ciurluini, Cristiano ;
Giannetti, Fabio ;
Del Nevo, Alessandro ;
Caruso, Gianfranco .
ENERGIES, 2021, 14 (06)
[5]   Analysis of the thermal-hydraulic behavior of the EU-DEMO WCLL breeding blanket cooling systems during a loss of flow accident [J].
Ciurluini, Cristiano ;
Giannetti, Fabio ;
Martelli, Emanuela ;
Del Nevo, Alessandro ;
Barucca, Luciana ;
Caruso, Gianfranco .
FUSION ENGINEERING AND DESIGN, 2021, 164
[6]   Thermal-hydraulic modeling and analysis of the Water Cooling System for the ITER Test Blanket Module [J].
Ciurluini, Cristiano ;
Giannetti, Fabio ;
Tincani, Amelia ;
Del Nevo, Alessandro ;
Caruso, Gianfranco ;
Ricapito, Italo ;
Cismondi, Fabio .
FUSION ENGINEERING AND DESIGN, 2020, 158
[7]   Recent progress in developing a feasible and integrated conceptual design of the WCLL BB in EUROfusion project [J].
Del Nevo, A. ;
Arena, P. ;
Caruso, G. ;
Chiovaro, P. ;
Di Maio, P. A. ;
Eboli, M. ;
Edemetti, F. ;
Forgione, N. ;
Forte, R. ;
Froio, A. ;
Giannetti, F. ;
Di Gironimo, G. ;
Jiang, K. ;
Liu, S. ;
Moro, F. ;
Mozzillo, R. ;
Savoldi, L. ;
Tarallo, A. ;
Tarantino, M. ;
Tassone, A. ;
Utili, M. ;
Villari, R. ;
Zanino, R. ;
Martelli, E. .
FUSION ENGINEERING AND DESIGN, 2019, 146 :1805-1809
[8]   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 [J].
Hernandez, Francisco A. ;
Pereslavtsev, Pavel ;
Zhou, Guangming ;
Kang, Qinlan ;
D'Amico, Salvatore ;
Neuberger, Heiko ;
Boccaccini, Lorenzo, V ;
Kiss, Bela ;
Nadasi, Gabor ;
Maqueda, Luis ;
Cristescu, Ion ;
Moscato, Ivo ;
Ricapito, Italo ;
Cismondi, Fabio .
FUSION ENGINEERING AND DESIGN, 2020, 157 (157)
[9]   European TBM programme: First elements of RoX and technical performance assessment for DEMO breeding blankets [J].
Ricapito, I ;
Cismondi, F. ;
Federici, G. ;
Poitevin, Y. ;
Zmitko, M. .
FUSION ENGINEERING AND DESIGN, 2020, 156
[10]   Conceptual design of the main Ancillary Systems of the ITER Water Cooled Lithium Lead Test Blanket System [J].
Tincani, Amelia ;
Arena, Pietro ;
Bruzzone, Maurizio ;
Catanzaro, Ilenia ;
Ciurluini, Cristiano ;
Del Nevo, Alessandro ;
Di Maio, Pietro Alessandro ;
Forte, Ruggero ;
Giannetti, Fabio ;
Lorenzi, Stefano ;
Martelli, Emanuela ;
Moreno, Carlos ;
Mozzillo, Rocco ;
Ortiz, Carlos ;
Paoletti, Ferruccio ;
Pierantoni, Veronica ;
Ricapito, Italo ;
Spagnuolo, Gandolfo Alessandro ;
Tarallo, Andrea ;
Tripodo, Claudio ;
Cammi, Antonio ;
Utili, Marco ;
Voukelatou, Konstantina ;
Walcz, Erik ;
Lesko, Balazs ;
Korzeniowska, Jessica ;
Chiovaro, Pierluigi ;
Narcisi, Vincenzo .
FUSION ENGINEERING AND DESIGN, 2021, 167 (167)