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Flow and thermal modelling of the argon volume in the DarkSide-20k TPC

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arxiv 2503.08468 v2 pith:NL6UJZYA submitted 2025-03-11 physics.ins-det hep-ex

Flow and thermal modelling of the argon volume in the DarkSide-20k TPC

DarkSide-20k Collaboration: F. Acerbi , P. Adhikari , P. Agnes , I. Ahmad , S. Albergo , I. F. Albuquerque , T. Alexander , A. K. Alton
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P. Amaudruz M. Angiolilli E. Aprile M. Atzori Corona D. J. Auty M. Ave I. C. Avetisov O. Azzolini H. O. Back Z. Balmforth A. Barrado Olmedo P. Barrillon G. Batignani P. Bhowmick M. Bloem S. Blua V. Bocci W. Bonivento B. Bottino M. G. Boulay A. Buchowicz S. Bussino J. Busto M. Cadeddu M. Cadoni R. Calabrese V. Camillo A. Caminata N. Canci M. Caravati M. C\'ardenas-Montes N. Cargioli M. Carlini A. Castellani P. Castello P. Cavalcante S. Cebrian S. Chashin A. Chepurnov S. Choudhary L. Cifarelli B. Cleveland Y. Coadou V. Cocco D. Colaiuda E. Conde Vilda L. Consiglio J. Corbett B. S. Costa M. Czubak M. D'Aniello S. D'Auria M. D. Da Rocha Rolo A. Dainty G. Darbo S. Davini R. de Asmundis S. De Cecco G. Dellacasa A. V. Derbin A. Devoto F. Di Capua L. Di Noto P. Di Stefano L. K. Dias D. D\'iaz Mairena C. Dionisi G. Dolganov F. Dordei V. Dronik F. Dylon A. Elersich E. Ellingwood T. Erjavec N. Fearon M. Fernandez Diaz A. Ficorella G. Fiorillo P. Franchini D. Franco H. Frandini Gatti E. Frolov F. Gabriele D. Gahan C. Galbiati G. Gali\'nski G. Gallina G. Gallus M. Garbini P. Garcia Abia A. Gawdzik A. Gendotti G. K. Giovanetti V. Goicoechea Casanueva A. Gola L. Grandi G. Grauso G. Grilli di Cortona A. Grobov M. Gromov M. Gulino B. R. Hackett A. L. Hallin A. Hamer M. Haranczyk B. Harrop T. Hessel J. Hollingham S. Horikawa J. Hu F. Hubaut D. Huff T. Hugues E. V. Hungerford A. Ianni V. Ippolito A. Jamil C. Jillings R. Keloth N. Kemmerich A. Kemp M. Kimura A. Klenin K. Kondo G. Korga L. Kotsiopoulou S. Koulosousas A. Kubankin P. Kunz\'e M. Kuss M. Ku\'zniak M. Kuzwa M. La Commara M. Lai E. Le Guirriec E. Leason A. Leoni L. Lidey J. Lipp M. Lissia L. Luzzi O. Lychagina O. Macfadyen I. N. Machulin S. Manecki I. Manthos L. Mapelli A. Marasciulli S. M. Mari C. Mariani J. Maricic M. Martinez C. J. Martoff G. Matteucci K. Mavrokoridis A. B. McDonald S. Merzi A. Messina R. Milincic S. Minutoli A. Mitra J. Monroe E. Moretti M. Morrocchi A. Morsy T. Mroz V. N. Muratova M. Murra C. Muscas P. Musico R. Nania M. Nessi G. Nieradka K. Nikolopoulos E. Nikoloudaki I. Nikulin J. Nowak K. Olchanski A. Oleinik V. Oleynikov P. Organtini A. Ortiz de Sol\'orzano A. Padmanabhan M. Pallavicini L. Pandola E. Pantic E. Paoloni D. Papi B. Park G. Pastuszak G. Paternoster A. Peck P. A. Pegoraro K. Pelczar R. Perez V. Pesudo S. Piacentini N. Pino G. Plante A. Pocar S. Pordes P. Pralavorio E. Preosti D. Price S. Puglia M. Queiroga Bazetto F. Raffaelli F. Ragusa Y. Ramachers A. Ramirez S. Ravinthiran M. Razeti A. L. Renshaw A. Repond M. Rescigno S. Resconi F. Retiere L. P. Rignanese A. Rivetti A. Roberts C. Roberts G. Rogers L. Romero M. Rossi A. Rubbia D. Rudik J. Runge M. A. Sabia P. Salomone O. Samoylov S. Sanfilippo D. Santone R. Santorelli E. M. Santos I. Sargeant C. Savarese E. Scapparone F. G. Schuckman II G. Scioli D. A. Semenov V. Shalamova A. Sheshukov M. Simeone P. Skensved M. D. Skorokhvatov O. Smirnov T. Smirnova B. Smith F. Spadoni M. Spangenberg A. Steri V. Stornelli S. Stracka S. Sulis A. Sung C. Sunny Y. Suvorov A. M. Szelc O. Taborda R. Tartaglia A. Taylor J. Taylor G. Testera K. Thieme A. Thompson S. Torres-Lara A. Tricomi E. V. Unzhakov M. Van Uffelen T. Viant S. Viel A. Vishneva R. B. Vogelaar J. Vossebeld B. Vyas M. Wada M. Walczak H. Wang Y. Wang S. Westerdale L. Williams M. Wojcik M. M. Wojcik Y. Xie C. Yang J. Yin A. Zabihi P. Zakhary A. Zani Y. Zhang T. Zhu A. Zichichi G. Zuzel M. P. Zykova
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classification physics.ins-det hep-ex
keywords timeargondistributiondarkside-20kdual-phaseflowheatliquid
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

The DarkSide-20k dark matter experiment, currently under construction at LNGS, features a dual-phase time projection chamber (TPC) with a ~50 t argon target from an underground well. At this scale, it is crucial to optimise the argon flow pattern for efficient target purification and for fast distribution of internal gaseous calibration sources with lifetimes of the order of hours. To this end, we have performed computational fluid dynamics simulations and heat transfer calculations. The residence time distribution shows that the detector is well-mixed on time-scales of the turnover time (~40 d). Notably, simulations show that despite a two-order-of-magnitude difference between the turnover time and the half-life of $^{83\text{m}}$Kr of 1.83 h, source atoms have the highest probability to reach the centre of the TPC 13 min after their injection, allowing for a homogeneous distribution before undergoing radioactive decay. We further analyse the thermal aspects of dual-phase operation and define the requirements for the formation of a stable gas pocket on top of the liquid. We find a best-estimate value for the heat transfer rate at the liquid-gas interface of 62 W with an upper limit of 144 W and a minimum gas pocket inlet temperature of 89 K to avoid condensation on the acrylic anode. This study also informs the placement of liquid inlets and outlets in the TPC. The presented techniques are widely applicable to other large-scale, noble-liquid detectors.

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