Numbers

Bibliography of the person, including all types of documents, not only theses.

MSc theses (9)

  1. Gregor Kozmus: Rekonstrukcija dinamike in topologije kavitacijskih struktur na ultrazvočni sondi
  2. Jernej Marinko: Eksperimentalno modeliranje kavitacijskih pogojev z namenom preučevanja kemijskih učinkov
  3. Matej Cerar: Merjenje pomika rotorja elektromotorja in fluktuacij tlaka v volumetrični črpalki
  4. Romana Krek: Meritev tlačnih nihanj v kavitacijskem vrtincu modelne Francisove črpalne turbine
  5. Špela Bratuš: Napoved kavitacije v črpalki s 3D ozobjem
  6. Matevž Fale: Aerodinamska zasnova merilnika vlažnosti za uporabo v hladilnih stolpih
  7. Žiga Rosec: Modeliranje cevne turbine z diagonalnim gonilnikom z računalniško dinamiko tekočin
  8. Aleksandar Kočoski: Dinamika superkavitacije in možnost umestitve hladne plazme v njej
  9. Žak Sovec: Izdelava merilne postaje za merjenje delovanja turbinske srčne črpalke

BSc theses (4)

  1. Aleksandar Kočoski: Vpliv materiala stene na dinamiko kavitacijskega mehurčka in udarnega vala
  2. Ula Herman: Eksperimentalno modeliranje superkavitacije na različnih geometrijah Venturijeve zožitve
  3. Jakob Kočevar: Zasnova naprave za merjenje potiska in izkoristka ladijskih vijakov
  4. Domen Grčar: Združitev hidrodinamske kavitacije in plazme za povečanje učinkovitosti razgradnje mikro-onesnažil

Other documents (26)

  1. Mojca Zupanc, Jure Zevnik, Arijana Filipić, Ion Gutiérrez-Aguirre, Meta Ješelnik, Tamara Košir, Jernej Ortar, Matevž Dular, Martin Petkovšek: Inactivation of the enveloped virus phi6 with hydrodynamic cavitation
  2. Sabina Kolbl Repinc, Benjamin Bizjan, Vaibhav Budhiraja, Matevž Dular, Jurij Gostiša, Barbara Brajer Humar, Anela Kaurin, Andrej Kržan, Marjetka Levstek, Juan Francisco Morales Arteaga, Martin Petkovšek, Gašper Rak, Blaž Stres, Brane Širok, Ema Žagar, Mojca Zupanc: Integral analysis of hydrodynamic cavitation effects on waste activated sludge characteristics, potentially toxic metals, microorganisms and identification of microplastics
  3. Borut Černe, Martin Petkovšek, Jože Duhovnik, Jože Tavčar: Thermo-mechanical modeling of polymer spur gears with experimental validation using high-speed infrared thermography
  4. Martin Petkovšek, Matevž Dular: Observing the thermodynamic effects in cavitating flow by IR thermography
  5. Darjan Podbevšek, Martin Petkovšek, Claus-Dieter Ohl, Matevž Dular: Kelvin-Helmholtz instability governs the cavitation cloud shedding in Venturi microchannel
  6. Martin Petkovšek, Matevž Dular: Cavitation dynamics in water at elevated temperatures and in liquid nitrogen at an ultrasonic horn tip
  7. Janez Kosel, Matej Šuštaršič, Martin Petkovšek, Mojca Zupanc, Mija Sežun, Matevž Dular: Application of (super)cavitation for the recycling of process waters in paper producing industry
  8. Matevž Dular, Martin Petkovšek: Cavitation erosion in liquid nitrogen
  9. Martin Petkovšek, Matej Hočevar, Peter Gregorčič: Surface functionalization by nanosecond-laser texturing for controlling hydrodynamic cavitation dynamics
  10. Martin Petkovšek, Marko Hočevar, Matevž Dular: Visualization and measurements of shock waves in cavitating flow
  11. Mija Sežun, Janez Kosel, Mojca Zupanc, Marko Hočevar, Janez Vrtovšek, Martin Petkovšek, Matevž Dular: Cavitation as a potential technology for wastewater management
  12. Mojca Zupanc, Žiga Pandur, Tadej Stepišnik Perdih, David Stopar, Martin Petkovšek, Matevž Dular: Effects of cavitation on different microorganisms
  13. Mojca Zupanc, Martin Petkovšek, Jure Zevnik, Gregor Kozmus, Alenka Šmid, Matevž Dular: Anomalies detected during hydrodynamic cavitation when using salicylic acid dosimetry to measure radical production
  14. Guangjian Zhang, Desheng Zhang, Mingming Ge, Martin Petkovšek, Olivier Coutier-Delgosha: Experimental investigation of three distinct mechanisms for the transition from sheet to cloud cavitation
  15. Gregor Kozmus, Jure Zevnik, Marko Hočevar, Matevž Dular, Martin Petkovšek: Characterization of cavitation under ultrasonic horn tip
  16. Jakob D. Redlinger-Pohn, Martin Petkovšek, Korneliya Gordeyeva, Mojca Zupanc, Alisa Gordeeva, Qilun Zhang, Matevž Dular, L. Daniel Söderberg: Cavitation fibrillation of cellulose fiber
  17. Borut Černe, Martin Petkovšek: High-speed camera based optical measurement methods for in-mesh tooth deflection analysis of thermoplastic spur gears
  18. Martin Petkovšek, Andrej Kržan, Alenka Šmid, Ema Žagar, Mojca Zupanc: Degradation of water soluble poly(vinyl alcohol) with acoustic and hydrodynamic cavitation
  19. Mojca Zupanc, Barbara Brajer Humar, Matevž Dular, Jurij Gostiša, Marko Hočevar, Sabina Kolbl Repinc, Mario Krzyk, Lovrenc Novak, Jernej Ortar, Žiga Pandur, Blaž Stres, Martin Petkovšek: The use of hydrodynamic cavitation for waste-to-energy approach to enhance methane production from waste activated sludge
  20. Žan Boček, Martin Petkovšek, Samuel J. Clark, Kamel Fezzaa, Matevž Dular: Dynamics of oil–water interface at the beginning of the ultrasonic emulsification process
  21. Arijana Filipić, David Dobnik, Ion Gutiérrez-Aguirre, Maja Ravnikar, Tamara Košir, Špela Baebler, Alja Štern, Bojana Žegura, Martin Petkovšek, Matevž Dular, Miran Mozetič, Rok Zaplotnik, Gregor Primc: Cold plasma within a stable supercavitation bubble – a breakthrough technology for efficient inactivation of viruses in water
  22. Matevž Dular, Guillermo Enrique Barragan Montalvo, Marko Hočevar, Lovrenc Novak, Claus-Dieter Ohl, Martin Petkovšek: Questioning the ASTM G32-16 (stationary specimen) standard cavitation erosion test
  23. Martin Petkovšek: Thermodynamic effects in cavitating flow
  24. Žan Boček, Martin Petkovšek, Samuel J. Clark, Kamel Fezzaa, Matevž Dular: Kelvin-Helmholtz instability as one of the key features for fast and efficient emulsification by hydrodynamic cavitation
  25. Andraž Zupanc, Martin Petkovšek, Blaž Zdovc, Ema Žagar, Mojca Zupanc: Degradation of hydroxypropyl methylcellulose (HPMC) by acoustic and hydrodynamic cavitation
  26. Mojca Zupanc, Gregor Primc, Matevž Dular, Martin Petkovšek, Robert Roškar, Rok Zaplotnik, Jurij Trontelj: Proof-of-concept for removing micropollutants through a combination of sub-atmospheric-pressure non-thermal plasma and hydrodynamic (super)cavitation