CERN Accelerating science

CERN Document Server Znaleziono 3 rekordów  Szukanie trwało 0.75 sekund. 
1.
Flow boiling of R134a and HFE-7000 in a single silicon microchannel with microstructured sidewalls / Bortolin, Stefano (Padua U.) ; Francescon, Andrea (Padua U. ; CERN) ; Ribatski, Gherhardt (Sao Paulo U., Sao Carlos) ; Del Col, Davide (Padua U.)
Flow boiling heat transfer is investigated in a single silicon microchannel with microstructured sidewalls using R134a (at 0.19 reduced pressure) and HFE-7000 (at 0.035 reduced pressure) as working fluids. The channel is 51 mm long with a 400μm x 400μm square cross section [...]
2021 - 15 p. - Published in : Int. J. Heat Mass Transf. 179 (2021) 121653
2.
Development of interconnected silicon micro-evaporators for the on-detector electronics cooling of the future ITS detector in the ALICE experiment at LHC / Francescon, Andrea (CERN ; U. Padua (main) ; INFN, Padua) ; Romagnoli, Giulia (CERN) ; Mapelli, Alessandro (CERN) ; Petagna, Paolo (CERN) ; Gargiulo, Corrado (CERN) ; Musa, Luciano (CERN) ; Thome, John R (Ecole Polytechnique, Lausanne) ; Del Col, Davide (U. Padua (main))
The thermal management of the on-detector electronics and the development of low mass integrated cooling systems have become a crucial task in the design of silicon tracking detectors for high energy physics applications. The use of microfabricated ultra-thin silicon cold plates has gained considerable interest in this sense. [...]
2016 - 10 p. - Published in : Appl. Thermal Eng. 93 (2016) 1367-1376
3.
Condensation in a Square Minichannel: Application of the VOF Method / Bortolin, V (U. Padua (main)) ; Da Riva, Enrico (CERN) ; Del Col, Davide (U. Padua (main))
A number of steady-state numerical simulations of condensation of R134a at mass fluxes of 400 kg m−2 s−1 and 800 kg m−2 s−1 inside a 1-mm square cross section minichannel are proposed here and compared against simulations in a circular cross section channel with the same hydraulic diameter. The volume of fluid (VOF) method is used to track the vapor–liquid interface, and the effects of interfacial shear stress, surface tension, and gravity are taken into account. [...]
2014 - Published in : Heat Transfer Eng. 35 (2014) 193-203
In : 3rd Micro and Nano Flows Conference, Thessaloniki, Greece, 22 - 24 Aug 2011, pp.193-203

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