Optimization of the ramp-up time of a superconducting synchrocyclotron
Daloze-Tilman, Adrien
Promotor(s) :
Geuzaine, Christophe
;
Vanderheyden, Benoît
Date of defense : 29-Jun-2026/30-Jun-2026 • Permalink : http://hdl.handle.net/2268.2/26074
Details
| Title : | Optimization of the ramp-up time of a superconducting synchrocyclotron |
| Translated title : | [fr] Optimisation du temps de mise en régime d’un synchrocyclotron supraconducteur |
| Author : | Daloze-Tilman, Adrien
|
| Date of defense : | 29-Jun-2026/30-Jun-2026 |
| Advisor(s) : | Geuzaine, Christophe
Vanderheyden, Benoît
|
| Committee's member(s) : | Nuttens, Vincent
Vanderbemden, Philippe
|
| Language : | English |
| Number of pages : | 65 |
| Keywords : | [en] Magnetothermal study [en] Superconducting magnet [en] Finite element method [en] Numerical optimization |
| Discipline(s) : | Engineering, computing & technology > Multidisciplinary, general & others Engineering, computing & technology > Electrical & electronics engineering Engineering, computing & technology > Computer science |
| Institution(s) : | Université de Liège, Liège, Belgique |
| Degree: | Master en ingénieur civil physicien, à finalité approfondie |
| Faculty: | Master thesis of the Faculté des Sciences appliquées |
Abstract
[en] This work addresses the optimization of the ramp-up time of the S2C2, a synchrocyclotron developed by Ion Beam Applications (IBA) for proton therapy. The study relies on a numerical magnetothermal model of the S2C2, extended here so that it can be used in a simulation-based optimization procedure. A first contribution is the coupling of the finite-element model to the external electrical circuit of the magnet, so that the simulations can be driven by the set-point current commanded to the generator. A strong coupling approach is shown to provide better predictions of the coil current and is retained for the rest of the study. The ramp-up is then formulated as a constrained black-box optimization problem and solved using the covariance matrix adaptation evolution strategy. The ramp-up computed with the optimization procedure is tested experimentally. A significant reduction of the operational ramp-up time from 4 hours to 2 hours is achieved. Finally, the numerical predictions are compared with experimental measurements for several ramp-ups. The correspondence is very satisfactory for slow and fast ramp-ups, but discrepancies appear for intermediate ones. Parametric studies and a data-driven analysis suggest that these discrepancies are likely due to an additional phenomenon not represented in the present model, with the cryocoolers appearing as the most plausible source of variability.
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s212259Daloze-Tilman2026.pdf
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Erratum_s212259Daloze-Tilman2026.pdf
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