Scientific information
Transkrypt
Scientific information
JANUSZ T. CIEŚLIŃSKI Full Professor, DSc, PhD, MSc Personal data 15.04.1954, Słupsk Study experience Professional career Areas of expertise Scientific achievements field: technical sciences; discipline: building and maintenance of machines; power engineering; area: applied thermodynamics, heat transfer and heat exchangers, renewable sources of energy, non-conventional systems and devices of energy conversion; over 300 published and unpublished paper (author and co-author of 6 monographs, 18 articles in JCR journals, over 120 citations according to Web of Science); supervisor of 8 completed PhD thesis, and supervisor of 5 PhD thesis in progress; principal investigator of 5 grants; reviewer of 22 PhD thesis, 6 DSc thesis and 1 prof. application; Educational activity member of the Committee of Thermodynamics and Combustion Polish Academy of Sciences (PAS) (since 2011); secretary (1994-2002) and chairman (2002-2011) of the Section of Multiphase Flow of the Committee of Mechanics of PAS; member of the Section of Thermodynamics of Thermodynamics and Combustion PAS (since 1996); in years (1999–2002) – secretary of the Section; member of the Section of Fluid Mechanics PAS (since 1996) Subjetcs: applied thermodynamics, heat and mass transfer, renewable sources of energy, non-conventional systems and devices of energy conversion, technical applications of nanofluids, energy policy Cooperation with the frame of Erasmus Programme with Universität ErlangenNürnberg, Fachhochschule Stralsund, Hochschule Bremen; supervisor of over 30 theses carried out at German universities; Vice-Rector for Organisation since 1.09.2016; Vice-Dean for Research (2002-2008); Head of the Chair of Machines of Food Industry (2002-2006); Head of the Chair of Ecoengineering and Process Apparatus (2006-2010); Head of the Division of Ecoengineering and Combustion Engines (since 2010); Funtions Gdańsk University of Technology: assistant (1978-1986), assistant prof. (19861999); associated prof. (1999-2009); full profesor (od 2009); PWSZ w Elblągu (1998-2016) – associated prof.; Kernforschungsanlage Jülich GmbH (10-12.1987) – scientific co-worker Selected participation to scientific bodies MSc – Gdańsk University of Technology, Faculty of Building Machines, area: systems, machines and power engineering devices (1973-1978); PhD – Gdańsk University of Technology, Faculty of Building Machines (1986); DSc – Gdańsk University of Technology, Faculty of Mechanical Engineering (1997); Professor – President of Republic of Poland RP (2006); Management activity Awards and distinctions Chairman of the Editorial Board of Wydawnictwo PG (since 2012); Member of the Editorial Board of The Archive of Mechanical Engineering (since 2014); Scientific Editor of the Editorial Board of Wydawnictwo PG (2002–2008); Editor of Zeszyty Naukowe (Mechanika) (2002–2008); Scientific consultant of the journal Technika Chłodnicza i Klimatyzacyjna. Niekonwencjonalne Źródła Energii (od 1993); Chairman, secretary or member of over 30 organizing committess of conferences, symposia and workshops; członek Korpusu Ekspertów Narodowego Centrum Nauki (od 2011); 37 Awards of the Rector; Golden Cross of the Merit (2000); Medal of the National Educational Committee (2002) Selected publications: Chapters in books 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. Wrzenie na powierzchniach porowatych. Dodatek I 2. W: Teoria wymiany ciepła. [aut.] J. Madejski. Szczecin: P. Szczec.**1999 s. 635-642 Cieśliński J.T.: Nucleate pool boiling modelling and experimental investigation. Chapter 7. W: Developments in mechanical engineering. Editors: A. Barylski, J.T. Cieśliński. Gdańsk: P. Gdań. 2005 s. 122-129 Cieśliński J.T.: Non-intrusive measurement techniques in bubble dynamics investigation. Chapter 6. W: Developments in mechanical engineering. Editor: J.T. Cieśliński. Gdańsk: P. Gdań. 2008, s. 51-64. Cieśliński J.T., Krasowski K., Siemieńczuk B.: Układ awaryjnego zasilania oparty na ogniwach paliwowych PEFC zasilany wodorem i metanolem. Termodynamika w nauce i gospodarce. Tom 1 / pod red. Z. Gnutka, W. Gajewskiego. - Wrocław: Ofic. Wydaw. Politech. Wroc., 2008, s. 171-177 Cieśliński J.T.: Modelling of temperature field of cylindrical pool boiling heating section. Chapter 1. W: Developments in mechanical engineering. Vol. 3. Editors: J.T. Cieśliński, A. Barylski. Gdańsk: P. Gdań. 2009, s. 9-21. Cieśliński J.T., Krasowski K.: Heat transfer during pool boiling on smooth tube bundle // W : Developments in mechanical engineering, Vol. 4 / eds. J. T. Cieśliński, S. Smoleń. - Gdańsk : Wydaw. PG, 2010. - S. 41-49: Cieśliński J.T., Kaczmarczyk T.: Steady-state characteristics and dynamic response of the PEM fuel cell to unit step change of load // W : Developments in mechanical engineering, Vol. 4 / eds. J. T. Cieśliński, S. Smoleń. - Gdańsk : Wydaw. PG, 2010. - S. 123-134 Cieśliński J.T., Kaczmarczyk T., Dawidowicz B., Szymański T.: Charakterystyki ogniwa paliwowego typu PEM przy obciążeniach statycznych i dynamicznych // W : Systemy, technologie i urządzenia energetyczne: praca zbiorowa pod redakcją Jana Talera. T. I. - Kraków : Wydaw. Politechniki Krakowskiej, 2010. - S. 367-376 Cieśliński J.T., Kaczmarczyk T.: Pool boiling heat transfer of water-Al2O3 and water-Cu nanofluids on horizontal stainless steel smooth and rough tubes // W : Developments in mechanical engineering / eds. Cieśliński J.T., Szymczyk J.A. : GUT, 2012. - s. 35-48 Cieśliński J.T., Kropiwnicki J., Kneba Z.: Zastosowanie silników Stirlinga w mikroukładach kogeneracyjnych. Ciepłownictwo, ogrzewnictwo, odnawialne źródła energii. Praca zbiorowa pod red. W. Zimy i D. Talera, Wydawnictwo Politechniki Krakowskiej, Kraków, 2013, str. 47 – 60 Cieśliński J., Krygier K., Smoleń S.: Wpływ koncentracji nanocząstek na własności termofizyczne nanocieczy wodaAl2O3 i woda-TiO2. W: Termodynamika i wymiana ciepła w badaniach procesów cieplno-przepływowych/ ed. Robert Smusz Rzeszów: Oficyna Wydawnicza Politechniki Rzeszowskiej, 2014, s.87-108 Monographs 1. 2. 3. 4. 5. 6. Cieśliński J.T.: Studium wrzenia pęcherzykowego na metalicznych powierzchniach porowatych. Zesz. Nauk. P. Gdań. 1996 Nr 547, Mechanika LXXIV s. 3-168. Bilicki Z., Cieśliński J.T., Doerffer S., Kwidziński R., Mikielewicz D.: Metody komputerowe w technice cieplnej pod red. Z. Bilickiego. Gdańsk: IMP PAN, P. Gdań., 1996 Cieśliński J.T., Mikielewicz J.: Wybrane zagadnienia ekologicznej gospodarki energią. Gdańsk: Wydawn. IMP PAN Gdańsk. 1996 Mikielewicz J., Cieśliński J.T.: Niekonwencjonalne urządzenia i systemy konwersji energii. Wrocław, Warszawa, Kraków: PAN Zakład Narodowy im. Ossolińskich, 1999, 274 s. 165. Maszyny Przepływowe. Red. Eustachy S. Burka, t. 24. PAN IMP Cieśliński J.T.: Modelowanie wrzenia pęcherzykowego. Gdańsk: P. Gdań. 2005 s. 148 Mikielewicz J., Cieśliński J., Mikielewicz D., Stan i perspektywy technologii odnawialnych źródeł energii w Polsce, PAN Warszawska Drukarnia Naukowa, 2014. List of publications in JCR 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. Cieśliński J.T., Pudlik W.: Laminar free-convection from spherical segments. Int. J. Heat a. Fluid Flow. 1988 vol. 9 nr 4 s. 405-409 Lewandowski W.M., Bieszk H., Cieśliński J.T.: Influence of cylindrical screens on free convection heat transfer from a horizontal plate. Int. J. Heat a. Fluid Flow. 1991 vol. 12 nr 1 s. 92-94 Szymczyk J.A., Siekmann J., Cieśliński J.T.: Oscillatory instabilities in a rapidly rotating liquid annulus. J. Spacecraft and Rockets, 1992 vol. 29 nr 4 s. 491-497 Lewandowski W.M., Bieszk H., Cieśliński J.T.: Free convection from horizontal screened plates. Wärme- u. Stoffübertragung 1992 nr 27 s. 481-488 Szymczyk J.A., Cieśliński J.T., Meironke H., Wysocki J.: Visualisierung der Blasenbildung an einer Kapillare mittels der Particle Image Velocimetry. Z. Angew. Math. Mech., 1999 vol. 79 Suppl. 3 s. 755-756 Cieśliński J.T.: Nucleate pool boiling on porous metallic coatings. Experimental Thermal a. Fluid Sci., 2002 vol. 25 s. 557-564 Cieśliński J.T., Mosdorf R.: Gas bubble dynamics – experiment and fractal analysis. Int. J. Heat and Mass Transfer, vol. 48, 2005, no. 9, pp. 1808-1818. Cieśliński J.T., Polewski J., Szymczyk J. A.: Flow field around growing and rising vapour bubble by PIV measurement. J. of Visualization vol. 8, 2005, no. 3, 1-8. Targański W., Cieśliński J.T.: Evaporation of R407c/oil mixtures inside corrugated and micro-fin tubes. Applied Thermal Engineering, vol. 27, 2007, pp. 2226-2232. Dominiczak P., Cieśliński J.T.: Circumferential temperature distribution during nucleate pool boiling outside smooth and modified horizontal tubes. Experimental Thermal a. Fluid Science, vol. 33, 2008, 173-177 Cieśliński J.T., Kaczmarczyk T.: Pool boiling of water-Al2O3 and water-Cu nanofluids on horizontal smooth tubes. Nanoscale Research Letters, 2011, doi:10.1186/1556-276X-6-220 - ISSN 1556-276X Cieśliński J.T.: Flow and Pool Boiling on Porous Coated Surfaces, 2011, Rev Chem Eng 27 (2011): 179–190 © 2011 by Walter de Gruyter • Berlin • Boston. DOI 10.1515/REVCE.2011.007 Dawidowicz B., Cieśliński J.T.: Heat transfer and pressure drop during flow boiling of pure refrigerants and refrigerant/oil mixtures in tube with porous coating. International Journal of Heat and Mass Transfer. - Vol. 55, iss. 9-10, 2012, s. 2549–255 Cieśliński J.T., Fiuk A.: Heat transfer characteristics of a two-phase thermosyphon heat exchanger. Applied Thermal Engineering. - Vol. 51, 2013, s. 112-118 Cieśliński J.T., Krasowski K.: Heat Transfer During Pool Boiling of Water, Methanol and R141b on Porous Coated Horizontal Tube Bundles, J Enhanced Heat Transfer, Vol. 20 (2), 2013, pp. 165-177 Cieśliński J.T., Krygier K.: Sessile droplet contact angle of water-Al2O3, water-TiO2 and water-Cu nanofluids. Experimental Thermal and Fluid Science, 59 (2014) 258–263. Cieśliński J.T., Kaczmarczyk T.: Pool boiling of water-Al2O3 and water-Cu nanofluids on porous coated tubes. Heat Transfer Engineering 36:553–563, 2015 Boertz H., Baars A., Cieśliński J.T., Smoleń S.: Numerical study of turbulent flow and heat transfer of nanofluids in pipes, accepted for publication in Heat Transfer Engineering List of publications in other journals 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. Szymczyk J., Cieśliński J.T.: Thermocapillary flow in a rapidly rotating cylinder with a free inner surface. Arch. Mech. 1990 vol. 42 nr 4-5 s. 583-594 Cieśliński J.T.: An experimental study of nucleate pool boiling heat transfer from a flat horizontal plate covered with porous coatings. Arch. Thermodyn. 1991 vol. 12 nr 1-4 s. 69-76 Cieśliński J.T.: Nucleate pool boiling heat transfer of water from gas-thermally coated surfaces. Arch. Thermodyn. 1992 vol. 13 nr 1-4 s. 49-57 Cieśliński J.T.: Eksperymentalne badania wymiany ciepła podczas wrzenia wody na powierzchniach chropowatych. Inż. Chem. i Proces. 1993 vol. 2 s. 211-224 Cieśliński J.T.: Improved heat transfer to water boiling on tubes covered with porous metallic coatings. Arch. Thermodyn. 1995 vol. 16 nr 1-2 s. 93-101 Szymczyk J., Cieśliński J.T.: Measurements of gas and vapour detachment frequency, diameter and rise velocity. Transactions of the IFFM, No. 109, 2001, s. 69-85 Cieśliński J.T., Polewski J., Szymczyk J.A.: Formation of bubbles from a single nucleation site. Archives of Thermodynamics. Vol. 23, 2002, No. 3, s. 59-77 Cieśliński J.T., Targański W.: Investigation of R 22 and R 134a flow boiling in enhanced tubes. Transactions of the IFFM, No. 112, 2003 s. 21-36 Cieśliński J.T., Targański W.: Horizontal flow boiling of R22, R134a and their mixtures with oil in smooth and enhanced tubes. Archives of Thermodynamics, vol. 28, no. 2 (2007), s. 19-40. Cieśliński J.T., Dawidowicz B.: Influence of porous coating on heat transfer during flow boiling of R22, R134a and R407C. Turbulence: International Journal, vol. 11 (2005), s. 239-246. Cieśliński J.T., Butrymowicz D.: The Workshop on Multi-Phase Flows. Turbulence: International Journal, vol. 11 (2005), s. 21-23. 12. 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 29. Cieśliński J.T., Krasowski K., Kaczmarczyk T.: Simulation of temperature field in cylindrical boiling heating section. Turbulence: International Journal, vol. 12 (2007), s. 59 – 64. Cieśliński J.T., Jasiński R., Polewski J.: Modelling of temperature field of flat boiling section with active single nucleation site. Turbulence: International Journal, vol. 12 (2007), s. 65-73. Krasowski K., Cieśliński J.T.: Nucleate pool boiling heat transfer from small horizontal smooth tube bundles. Transactions of the Institute of Fluid Flow Machinery - 2011, no. 123, s. 3-16 Cieśliński J.T., Kaczmarczyk T.: The effect of pressure on heat transfer during pool boiling of water-Al2O3 and water-Cu nanofluids on stainless steel smooth tube. Chemical and Process Engineering. - Vol. 32, no. 4, 2011, s. 321-332 Cieśliński J.T., Krygier K.: Influence of surface curvature on sessile droplet contact angle of nanofluids. Trans of the IFFM, No. 125, 2013, s. 3-12 Cieśliński J.T., Krygier K.: Wettability of horizontal stainless steel tubes by nanofluid droplets, Key Engineering Materials, Vol. 597, 2014, pp. 21-27; online available since 2013/Dec/13 Cieśliński J.T., Krygier K.: Free convection of water-Al2O3 nanofluid from horizontal porous coated tube. Key Engineering Materials, Vol. 597, 2014, pp. 15-20; online available since 2013/Dec/13 Cieśliński J.T., Kaczmarczyk T.: Pool boiling of nanofluids on rough and porous coated tubes: experiment and correlation, Archives of Thermodynamics, Vol. 35(2014), No. 2, 3–20 Cieśliński J.T., Krygier K., Smoleń S.: Measurement of temperature-dependent viscosity and thermal conductivity of alumina and titania thermal oil nanofluids, Archives of Thermodynamics, Vol. 36, No. 4, 35-47, 2015. Cieśliński J.T., Fiuk A., Miciak W., Siemieńczuk B.: Performance of a plate heat exchanger operated with waterAl2O3 nanofluid, Applied Mechanics and Materials, vol. 831, 2016, 188-197. Cieśliński J.T., Krygier K., Smoleń S.: Infuence of nanoparticle concentration on thermal properties of thermal oilMWCNT nanofluids, Applied Mechanics and Materials, vol. 831, 2016, 198-207. Ronewicz K., Sawicka D., Cieśliński J.T., Smoleń S.: Numerical modeling of the combustion in a lab-scale pulverized-coal fired combustion chamber, Applied Mechanics and Materials, vol. 831, 2016, 286-294. Cieśliński J.T., Kozak P.: Influence of nanoparticle concentration on convective heat transfer of water-Al2O3 nanofluids inside horizontal tubes, Applied Mechanics and Materials, vol. 831, 2016, 208-215. Cieśliński J.T., Dawidowicz B., Popakul A.: Performance of the flat plate solar collector operated with water-Al2o3 nanofluid, Applied Mechanics and Materials, Vol. 831, 2016, 181-187. Cieśliński J.T.: Effect of nanofluid concentration on two-phase thermosyphon heat exchanger performance, Archives of Thermodynamics, Vol. 37(2016), No. 2, 23–40. Cieśliński J.T., Fiuk A., Typiński K., Siemieńczuk B.: Heat transfer in PHE channels: experimental validation of selected correlation equations, accepted for publication in Archives of Thermodynamics Cieśliński J.T., Kaczmarczyk T., Dawidowicz B.: Performance of the PEM fuel cell module. Part 1. Dynamic characteristics, accepted for publication in Journal of Power Technologies, Cieśliński J.T., Kaczmarczyk T., Dawidowicz B.: Performance of the PEM fuel cell module. Part 2. Effect of thermal conditions and hydrogen source, accepted for publication in Journal of Power Technologies