RUS  ENG
Full version
JOURNALS // Teplofizika vysokikh temperatur

TVT, 2012, Volume 50, Issue 1, Pages 104–111 (Mi tvt235)

Evolution of the temperature field at the three-dimensional wave front in a heated liquid film
E. A. Chinnov, E. N. Shatskii, O. A. Kabov

This publication is cited in the following articles:
  1. Lijiao Ma, Yudong Ding, Xun Zhu, Hong Wang, Qiang Liao, “Numerical investigation on falling film flow and heat transfer characteristics over corrugated plates”, International Journal of Thermal Sciences, 198 (2024), 108882  crossref
  2. R. Collignon, O. Caballina, F. Lemoine, C.N. Markides, G. Castanet, “Heat transfer enhancement in wavy falling films studied by laser-induced fluorescence”, International Journal of Heat and Mass Transfer, 202 (2023), 123690  crossref
  3. R. Collignon, O. Caballina, F. Lemoine, Christos N. Markides, G. Castanet, “Heat Transfer Enhancement in Wavy Films Falling on a Heated Inclined Plate”, SSRN Journal, 2022  crossref
  4. R. Collignon, O. Caballina, F. Lemoine, G. Castanet, “Simultaneous temperature and thickness measurements of falling liquid films by laser-induced fluorescence”, Exp Fluids, 63:4 (2022)  crossref
  5. Collignon R., Caballina O., Lemoine F., Castanet G., “Temperature Distribution in the Cross Section of Wavy and Falling Thin Liquid Films”, Exp. Fluids, 62:5 (2021), 115  crossref  isi  scopus
  6. Bock B.D., Bucci M., Markides Ch.N., Thome J.R., Meyer J.P., “Falling Film Boiling of Refrigerants Over Nanostructured and Roughened Tubes: Heat Transfer, Dryout and Critical Heat Flux”, Int. J. Heat Mass Transf., 163 (2020), 120452  crossref  isi  scopus
  7. Yang L., Song J., Zhang L., Li H., Yang Ya., “Simulating Disturbance Frequency Effect on Heat Transfer Enhancement in Wavy Condensate Films”, Nucl. Eng. Des., 352 (2019), UNSP 110194  crossref  isi  scopus
  8. Charogiannis A., Markides Ch.N., “Spatiotemporally Resolved Heat Transfer Measurements in Falling Liquid-Films By Simultaneous Application of Planar Laser-Induced Fluorescence (Plif), Particle Tracking Velocimetry (Ptv) and Infrared (Ir) Thermography”, Exp. Therm. Fluid Sci., 107 (2019), 169–191  crossref  isi  scopus
  9. Yang L., Song J., Zhang L., Li H., Yang Ya., Shen Sh., “Microscopic Mechanisms of Wave Effect on Heat Transfer Enhancement in Condensate Films”, Chem. Eng. Sci., 204 (2019), 220–227  crossref  isi  scopus
  10. Xue T., Zhang Sh., Wu B., “Study of Spatiotemporally Resolved Temperature Field and Heat Transfer in Liquid Film Using Plif”, Heat Mass Transf., 55:3 (2019), 845–854  crossref  isi  scopus
  11. Akesjo A., Gourdon M., Vamling L., Innings F., Sasic S., “Modified Surfaces to Enhance Vertical Falling Film Heat Transfer - An Experimental and Numerical Study”, Int. J. Heat Mass Transf., 131 (2019), 237–251  crossref  isi  scopus
  12. Rhee D.S., Kim Y.D., Kang B., Kim D., “Applications of Unmanned Aerial Vehicles in Fluvial Remote Sensing: An Overview of Recent Achievements”, KSCE J. Civ. Eng., 22:2 (2018), 588–602  crossref  isi  scopus
  13. A. Charogiannis, I. Zadrazil, Ch. N. Markides, “Thermographic particle velocimetry (TPV) for simultaneous interfacial temperature and velocity measurements”, Int. J. Heat Mass Transf., 97 (2016), 589–595  crossref  isi
  14. Ch. N. Markides, R. Mathie, A. Charogiannis, “An experimental study of spatiotemporally resolved heat transfer in thin liquid-film flows falling over an inclined heated foil”, Int. J. Heat Mass Transf., 93 (2016), 872–888  crossref  isi  elib
  15. E. N. Shatskiy, E. A. Chinnov, “Synchronous measurement of thickness and surface temperature fields in falling heated liquid film”, High Temperature, 54:6 (2016), 907–910  mathnet  crossref  crossref  isi  elib
  16. Tsuchiya H., Miyauchi K., Homma T., “Fabrication Process of Thick Fluorescent Layer For Flat Panel Displays Using a New Paste Supply System”, Opt. Rev., 22:4 (2015), 647–653  crossref  mathscinet  isi  elib
  17. E. A. Chinnov, E. N. Shatskii, “Controlling the Contact-Line Behavior by Introduction of Artificial Perturbations in a Nonisothermal Liquid Film”, High Temperature, 52:3 (2014), 463–466  mathnet  crossref  crossref  isi  elib  elib
  18. Surtaev A., Pavlenko A., “Observation of Boiling Heat Transfer and Crisis Phenomena in Falling Water Film at Transient Heating”, Int. J. Heat Mass Transf., 74 (2014), 342–352  crossref  isi  elib
  19. Chinnov E.A., “Wave - Thermocapillary Effects in Heated Liquid Films at High Reynolds Numbers”, Int. J. Heat Mass Transf., 71 (2014), 106–116  crossref  isi  elib
  20. E. A. Chinnov, “Thermocapillary effects in nonisothermal liquid film at high Reynolds numbers”, High Temperature, 51:2 (2013), 262–267  mathnet  crossref  isi  elib  elib
  21. O. A. Volodin, A. N. Pavlenko, N. I. Pecherkin, “Heat transfer and wave characteristics of a binary freon film flowing over a three-dimensional textured surface”, High Temperature, 51:6 (2013), 785–794  mathnet  crossref  crossref  isi  elib  elib
  22. Chinnov E.A., Abdurakipov S.S., “Thermal Entry Length in Falling Liquid Films at High Reynolds Numbers”, Int. J. Heat Mass Transf., 56:1-2 (2013), 775–786  crossref  isi  elib
  23. E. A. Chinnov, S. S. Abdurakipov, “Thermal entry length in a falling liquid film at high reynolds numbers”, High Temperature, 50:3 (2012), 400–406  mathnet  crossref  isi  elib  elib


© Steklov Math. Inst. of RAS, 2025