Search Results - "Marinozzi, Vittorio"
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Quench protection analysis integrated in the design of dipoles for the Future Circular Collider
Published in Physical review. Accelerators and beams (27-03-2017)“…The EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used as the main bending magnet in a 100 km long 100 TeV hadron-hadron collider. For…”
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Magnetization Heat in Superconductors and in Eddy Current Problems: A Classical Thermodynamic Approach
Published in IEEE transactions on applied superconductivity (01-09-2016)“…In thermodynamics studies, the problem of the work done by magnetized materials is often approached with a general theoretical approach. Sometimes, ambiguities…”
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Bi-Filar Coil Winding for Fast Quench Protection
Published in IEEE transactions on applied superconductivity (01-08-2024)“…As superconducting magnet technology is pushed towards higher performance, energy density and total stored energy follow exponentially. Protecting magnets…”
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Design of B1pF-A Large Aperture Dipole Magnet for EIC
Published in IEEE transactions on applied superconductivity (01-08-2024)“…The design of interaction region (IR) magnets for the Electron Ion Collider (EIC), demands tight boundary conditions on the magnet design given by the high…”
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Intelliquench: An Adaptive Machine Learning System for Detection of Superconducting Magnet Quenches
Published in IEEE transactions on applied superconductivity (01-08-2021)“…In superconducting magnets, the irreversible transition of a portion of the conductor to resistive state is called a "quench." Having large stored energy,…”
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The Design of B1APF Dipole for the EIC
Published in IEEE transactions on applied superconductivity (01-08-2024)“…Brookhaven National Laboratory has been chosen to host the Electron-Ion Collider (EIC). Part of this is to install an additional electron ring to the existing…”
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The EuroCirCol 16T Cosine-Theta Dipole Option for the FCC
Published in IEEE transactions on applied superconductivity (01-06-2017)“…EuroCirCol is a conceptual design study for a post-LHC research infrastructure based on an energy-frontier of the 100-TeV circular hadron collider "Future…”
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Study of a Sextupole Round Coil Superferric Magnet
Published in IEEE transactions on applied superconductivity (01-04-2018)“…The LASA Laboratory (INFN, Milan) is developing a new type of superferric magnets suitable to arbitrary multipole order, which we refer to as round coil…”
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Conceptual Design of a 16 T cos θ Bending Dipole for the Future Circular Collider
Published in IEEE transactions on applied superconductivity (01-04-2018)“…After LHC is turned off, a new accelerator machine will be needed in order to explore unknown regions of high-energy particle physics. For this reason, the…”
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Update on Mechanical Design of a Cosθ 16-T Bending Dipole for the Future Circular Collider
Published in IEEE transactions on applied superconductivity (01-06-2018)“…After the large hadron collider (LHC), a higher energy range must be explored to address the open questions in particle physics. A new generation of colliders…”
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The HL-LHC Low-β Quadrupole Magnet MQXF: From Short Models to Long Prototypes
Published in IEEE transactions on applied superconductivity (01-08-2019)“…Among the components to be upgraded in LHC interaction regions for the HiLumi-LHC projects are the inner triplet (or low-β) quadrupole magnets, denoted as Q1,…”
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Magnetic and Mechanical Analysis of a Large Aperture 15 T Cable Test Facility Dipole Magnet
Published in IEEE transactions on applied superconductivity (01-08-2021)“…The US Department of Energy (DOE) Office of Science (SC), is funding a large bore "Cable Test Facility Magnet" for testing advanced cables and inserts in high…”
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The 16 T Dipole Development Program for FCC
Published in IEEE transactions on applied superconductivity (01-06-2017)“…A key challenge for a future circular collider (FCC) with centre-of-mass energy of 100 TeV and a circumference in the range of 100 km is the development of…”
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Design and Construction of a High Field Cable Test Facility at Fermilab
Published in IEEE transactions on applied superconductivity (01-08-2021)“…Fermi National Accelerator Laboratory, together with Lawrence Berkeley National Laboratory, is building a new High Field Vertical Magnet Test Facility (HFVMTF)…”
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Mechanical stress analysis during a quench in CLIQ protected 16 T dipole magnets designed for the future circular collider
Published in Physica. C, Superconductivity (15-07-2018)“…•Mechanical stress analysis during a quench of the 16 T cos-θ and block type dipole magnets were carried out.•Non-uniform temperature and current distribution…”
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Suitability of Different Quench Protection Methods for a 16 T Block-Type Nb3Sn Accelerator Dipole Magnet
Published in IEEE transactions on applied superconductivity (01-06-2017)“…Within the future circular collider study, a 100-km long circular hadron collider is being designed for 100 TeV center-of-mass collision energies. The design…”
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Lessons Learned From the Prototypes of the MQXFA Low-Beta Quadrupoles for HL-LHC and Status of Production in the US
Published in IEEE transactions on applied superconductivity (01-08-2021)“…With the successful test of the first two pre-series magnets the US HL-LHC Accelerator Upgrade Project has started production of the MQXFA magnets to be used…”
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Test Results of the First Pre-Series Quadrupole Magnets for the LHC Hi-Lumi Upgrade
Published in IEEE transactions on applied superconductivity (01-08-2021)“…The future high luminosity (Hi-Lumi) upgrade of the Large Hadron Collider (LHC) at CERN will include eight (plus two spares) 10.2 m-long Cryo-assemblies which…”
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Study of the Heater-Coil Electrical Insulation for the HL-LHC Low Beta Quadrupoles
Published in IEEE transactions on applied superconductivity (01-08-2021)“…In the framework of the HL-LHC project, the present LHC low-β superconducting quadrupoles will be substituted with higher performance Nb 3 Sn magnets (MQXF)…”
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Quench Protection Studies for the High Luminosity LHC Nb$_3$Sn Quadrupole Magnets
Published in IEEE transactions on applied superconductivity (01-08-2021)“…Achieving the targets of the High Luminosity LHC project requires the installation of new inner triplet magnet circuits for the final focusing of the particle…”
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