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Pavlenko, Alexandr Nikolaevich

Statistics Math-Net.Ru
Total publications: 18
Scientific articles: 17

Number of views:
This page:1664
Abstract pages:8644
Full texts:3638
Corresponding member of RAS
Senior Researcher
Doctor of physico-mathematical sciences (2001)
Speciality: 01.04.14 (Heating physics and theoretical heating engineering)
Birth date: 30.11.1959
E-mail:
Website: http://www.itp.nsc.ru/structura/nauchnye_porazdeleniya/13_laboratoriya_nizkotemperaturnoy_teplofiziki.html; https://www.sbras.ru/ru/person/4030; http://www.nchmt.ru/sostav/52
   
Main publications:
  • Teploobmen i krizisnye yavleniya v stekayuschikh plenkakh zhidkosti pri isparenii i kipenii / A. N. Pavlenko, N. I. Pecherkin, O. A. Volodin ; otv. red. V. E. Nakoryakov ; Rossiiskaya akad. nauk, Sibirskoe otd-nie, In-t teplofiziki im. S. S. Kutateladze. - Novosibirsk : Izd-vo Sibirskogo otd-niya Rossiiskoi akad. nauk, 2016. - 190, [5] s. : il., tabl.; 22 sm.; ISBN 978-5-7692-1483-7 : 310 ekz.

https://www.mathnet.ru/eng/person94355
https://ru.wikipedia.org/wiki/Pavlenko,_Aleksandr_Nikolaevich
List of publications on Google Scholar
https://elibrary.ru/author_items.asp?authorid=36973
https://www.researchgate.net/profile/Aleksandr-Pavlenko

Publications in Math-Net.Ru Citations
2024
1. D. A. Shvetsov, A. N. Pavlenko, A. D. Nazarov, A. V. Mihailov, V. I. Zhukov, “Теплообмен при кипении в тонком слое диэлектрической жидкости $\rm HFE$-$7100$ на капиллярно-пористых покрытиях”, TVT, 62:6 (2024),  865–876  mathnet
2023
2. A. Yu. Sakhnov, O. A. Volodin, N. I. Pecherkin, A. N. Pavlenko, “Modes of a liquid film falling down a vertical cylinder at different contact angles”, TVT, 61:4 (2023),  594–603  mathnet; High Temperature, 61:4 (2023), 550–558 2
3. D. A. Shvetsov, A. N. Pavlenko, A. E. Brester, V. I. Zhukov, “Inversion of the boiling curve on microstructured porous coatings”, TVT, 61:3 (2023),  405–409  mathnet; High Temperature, 61:3 (2023), 372–376 6
2021
4. O. A. Volodin, N. I. Pecherkin, A. N. Pavlenko, “Heat transfer enhancement at boiling and evaporation of liquids on modified surfaces”, TVT, 59:2 (2021),  280–312  mathnet  elib; High Temperature, 59:2–6 (2021), 248–276  isi  scopus 50
2018
5. V. I. Zhukov, A. N. Pavlenko, “Regimes of intensified heat transfer during evaporation of thin horizontal liquid layers at reduced pressures”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:12 (2018),  9–15  mathnet  elib; Tech. Phys. Lett., 44:6 (2018), 508–510 8
6. V. S. Serdyukov, A. S. Surtaev, A. N. Pavlenko, A. N. Chernyavskiy, “Study on local heat transfer in the vicinity of the contact line under vapor bubbles at pool boiling”, TVT, 56:4 (2018),  563–570  mathnet  elib; High Temperature, 56:4 (2018), 546–552  isi  elib  scopus 23
7. A. N. Pavlenko, A. N. Tsoi, A. S. Surtaev, D. V. Kuznetsov, V. I. Kalita, D. I. Komlev, A. Yu. Ivannikov, A. A. Radyuk, “Experimental study of rewetting of a superheated plate with structured capillary-porous coating by flowing liquid film”, TVT, 56:3 (2018),  424–430  mathnet  elib; High Temperature, 56:3 (2018), 404–409  isi  elib  scopus 23
2017
8. V. E. Zhukov, A. N. Pavlenko, M. I. Moiseev, D. V. Kuznetsov, “Dynamics of interphase surface of self-sustaining evaporation front in liquid with additives of nanosized particles”, TVT, 55:1 (2017),  85–93  mathnet  elib; High Temperature, 55:1 (2017), 79–86  isi  scopus 20
2016
9. A. S. Surtaev, A. N. Pavlenko, V. I. Kalita, D. V. Kuznetsov, D. I. Komlev, A. A. Radyuk, A. Yu. Ivannikov, “The influence of three-dimensional capillary-porous coatings on heat transfer at liquid boiling”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:8 (2016),  1–9  mathnet  elib; Tech. Phys. Lett., 42:4 (2016), 391–394 20
10. A. N. Pavlenko, A. N. Tsoi, A. S. Surtaev, D. V. Kuznetsov, V. S. Serdyukov, “Effect of a low-thermal-conductive coating on the dynamics of rewetting of overheated plate by falling liquid film”, TVT, 54:3 (2016),  393–400  mathnet  elib; High Temperature, 54:3 (2016), 370–376  isi  elib  scopus 21
2015
11. A. N. Pavlenko, X. Li, H. Li, X. Gao, O. A. Volodin, A. S. Surtaev, V. S. Serdyukov, “The influence of the microtexture, corrugation inclination angle, and perforation of corrugated surfaces on the character of liquid spreading”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:16 (2015),  21–28  mathnet  elib; Tech. Phys. Lett., 41:8 (2015), 774–777 8
12. V. I. Zhukov, A. N. Pavlenko, Yu. V. Nagaitseva, D. Weiss, “Effect of the layer height on heat transfer and the critical heat flux in evaporation of a fluid under low pressure”, TVT, 53:5 (2015),  727–734  mathnet  elib; High Temperature, 53:5 (2015), 690–696  isi  elib  scopus 13
2014
13. A. N. Chernyavskiy, A. N. Pavlenko, “Numerical simulation of unsteady-state heat transfer in falling wavy films of liquid”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 40:23 (2014),  1–8  mathnet  elib; Tech. Phys. Lett., 40:12 (2014), 1039–1041 4
14. A. N. Pavlenko, A. S. Surtaev, A. N. Tsoi, I. P. Starodubtseva, V. S. Serdyukov, “Dynamics of a superheated surface rewetting with a falling liquid film”, TVT, 52:6 (2014),  886–894  mathnet  elib; High Temperature, 52:6 (2014), 861–868  isi  elib  scopus 23
2013
15. 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”, TVT, 51:6 (2013),  864–874  mathnet  elib; High Temperature, 51:6 (2013), 785–794  isi  elib  scopus 16
2007
16. A. N. Pavlenko, A. S. Surtaev, A. m. Matsekh, “Transient processes in falling films of liquid under conditions of unsteady-state heat release”, TVT, 45:6 (2007),  905–916  mathnet  elib; High Temperature, 45:6 (2007), 826–836  isi  elib  scopus 28
2001
17. A. N. Pavlenko, V. V. Lel', A. Ph. Serov, A. D. Nazarov, “Flow dynamics of an intensively evaporating wave film of a liquid”, Prikl. Mekh. Tekh. Fiz., 42:3 (2001),  107–115  mathnet  elib; J. Appl. Mech. Tech. Phys., 42:3 (2001), 475–481 9

2023
18. A. N. Pavlenko, “Boiling in High Temperature publications: From basic mechanisms to development of flow control methods for enhancement of heat transfer”, TVT, 61:6 (2023),  807–824  mathnet; High Temperature, 61:6 (2023), 742–758 5

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