51. Superbiphilic laser-microengineered surfaces with a self-assembled monolayer coating for exceptional boiling performanceArmin Hadžić, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, original scientific article Keywords: nucleate boiling, heat transfer enhancement, biphilic surfaces, dielectric fluids, laser microstructuring, hydrophobization, laser texturing, pool boiling, surface engineering Full text (file, 4,72 MB) This document has more files! More... |
52. Elucidating the effects of surface wettability on boiling heat transfer using hydrophilic and hydrophobic surfaces with laser-etched microchannelsDomen Žalec, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, original scientific article Keywords: boiling, heat transfer coefficient, critical heat flux, laser texturing, wettability Full text (file, 6,84 MB) This document has more files! More... |
53. Aluminum micropillar surfaces with hierarchical micro- and nanoscale features for enhancement of boiling heat transfer coefficient and critical heat fluxArmin Hadžić, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, original scientific article Keywords: nucleate boiling, heat transfer enhancement, critical heat flux, heat transfer coefficient, micro-nanoscale structures, micropillar porous surfaces, nanosecond laser texturing Full text (file, 6,70 MB) This document has more files! More... |
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55. Waste-to-energy processes as a municipality-level waste management strategyVladimir Prebilič, Matic Može, Iztok Golobič, 2024, original scientific article Keywords: waste-to-energy, biogas, incineration, pyrolysis, gasification, municipal solid waste, waste management, energy conversion, waste utilization, exergy, steam turbine, gas turbine, ICE Full text (file, 5,74 MB) This document has more files! More... |
56. Remaining useful life prognostics during boiling-induced surface degradationJure Berce, Klara Arhar, Matic Može, Matevž Zupančič, Iztok Golobič, 2024, published scientific conference contribution Keywords: pool boiling, degradation, prognostics, remaining useful life, surface engineering Full text (file, 1,38 MB) This document has more files! More... |