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Ing.
Ph.D.
FSI, LPTP – zaměstnankyně mimoevidenční
+420 54114 4907Tereza.Kudelova@vut.cz
Odeslat VUT zprávu
2025
VANČURA, J.; KROULÍKOVÁ, T.; BARTULI, E.; KŮDELOVÁ, T.; VONDRUŠ, J. Polymeric hollow fibre heat exchanger for reducing vehicle CO2 pollution. APPLIED THERMAL ENGINEERING, 2025, vol. 270, iss. 126180, p. 1-12. ISSN: 1359-4311.
Článek WoS
2024
ASTROUSKI, I.; KŮDELOVÁ, T.; BARTULI, E. Thermal performance of shell-and-tube polymeric hollow fiber heat exchangers as oil coolers. Case Studies in Thermal Engineering, 2024, vol. 63, iss. 11, p. 1-11. ISSN: 2214-157X.
2023
KŮDELOVÁ, T.; RAUDENSKÝ, M.; BARTULI, E. Limits and Use of Polymeric Hollow Fibers as Material for Heat Transfer Surfaces. In Sborník z konference "2022 International Congress on Advanced Materials Sciences and Engineering (AMSE)". 2023. p. 1-6. ISBN: 978-1-6654-4718-8.
Stať ve sborníku v databázi WoS či Scopus
2022
BULEJKO, P.; BARTULI, E.; KŮDELOVÁ, T.; VANČURA, J. Temperature-dependent burst failure of polymeric hollow fibers used in heat exchangers. Engineering Failure Analysis, 2022, vol. 131, iss. 105895, p. 1-16. ISSN: 1350-6307.
RAUDENSKÝ, M.; KŮDELOVÁ, T.; BARTULI, E. HEAT TRANSFER SURFACES MADE OF POLYMERIC HOLLOW FIBERS - FEATURES AND UTILIZATION. In Sborník z konference Proceedings of the Thermal and Fluids Engineering Summer Conference. 4th Thermal and Fluids Engineering Conference. 2022. p. 573-581. ISSN: 2379-1748.
RAUDENSKÝ, M.; KŮDELOVÁ, T.; BARTULI, E.; KROULÍKOVÁ, T.; ASTROUSKI, I. Cooling of flue gas by cascade of polymeric hollow fiber heat exchangers. Case Studies in Thermal Engineering, 2022, vol. 36, iss. 1, p. 1-10. ISSN: 2214-157X.
KROULÍKOVÁ, T.; BARTULI, E.; KŮDELOVÁ, T. Polymeric Hollow Fiber Heat Exchangers in Higher Temperatures. In Sborník z 9th International Conference on Fluid Flow. 2022. p. 1-4. ISBN: 9781990800061.
ASTROUSKI, I.; KŮDELOVÁ, T.; KALIVODA, J.; RAUDENSKÝ, M. Shear Strength of Adhesive Bonding of Plastics Intended for High Temperature Plastic Radiators. Processes, 2022, vol. 10, iss. 5, p. 1-15. ISSN: 2227-9717.
HVOŽĎA, J.; STRUNGA, A.; KŮDELOVÁ, T. Fully polymeric distillation unit based on polypropylene hollow fiber membranes: thermal performance analysis. In ENGINEERING MECHANICS 2022. Institute of Theoretical and Applied Mechanics of the Czech Academy of Sciences: 2022. p. 161-164. ISBN: 978-80-86246-48-2.
2021
KŮDELOVÁ, T.; BARTULI, E.; STRUNGA, A.; HVOŽĎA, J.; DOHNAL, M. Fully Polymeric Distillation Unit Based on Polypropylene Hollow Fibers. Polymers, 2021, vol. 13, iss. 7, p. 1031-1031. ISSN: 2073-4360.
KROULÍKOVÁ, T.; KŮDELOVÁ, T.; BARTULI, E.; VANČURA, J.; ASTROUSKI, I. Comparison of a Novel Polymeric Hollow Fiber Heat Exchanger and a Commercially Available Metal Automotive Radiator. Polymers, 2021, vol. 13, iss. 7, p. 1-13. ISSN: 2073-4360.
BARTULI, E.; KŮDELOVÁ, T.; RAUDENSKÝ, M. Shell-and-tube polymeric hollow fiber heat exchangers with parallel and crossed fibers. APPLIED THERMAL ENGINEERING, 2021, vol. 182, iss. 1, p. 1-7. ISSN: 1359-4311.
KROULÍKOVÁ, T.; ASTROUSKI, I.; RAUDENSKÝ, M.; KŮDELOVÁ, T. Heat Exchanger for Air-Liquid Application with Chaotised Polymeric Hollow Fibres. APPLIED THERMAL ENGINEERING, 2021, vol. 197, iss. October 2021, p. 1-9. ISSN: 1359-4311.
MRÁZ, K.; BARTULI, E.; KROULÍKOVÁ, T.; ASTROUSKI, I.; RESL, O.; VANČURA, J.; KŮDELOVÁ, T. Case study of liquid cooling of automotive headlights with hollow fiber heat exchanger. Case Studies in Thermal Engineering, 2021, vol. 28, iss. 12, p. 101689-101689. ISSN: 2214-157X.
2020
KROULÍKOVÁ, T.; ASTROUSKI, I.; KŮDELOVÁ, T. Air-side pressure drop of polymeric hollow fibre heat exchangers. Acta Mechanica Slovaca, 2020, vol. 24, iss. 2, p. 14-18. ISSN: 1335-2393.
Článek recenzovaný mimo WoS a Scopus
ASTROUSKI, I.; RAUDENSKÝ, M.; KŮDELOVÁ, T.; KROULÍKOVÁ, T. Fouling of Polymeric Hollow Fiber Heat Exchangers by Air Dust. Materials, 2020, vol. 13, iss. 21, p. 1-12. ISSN: 1996-1944.
KŮDELOVÁ, T.; KROULÍKOVÁ, T.; ASTROUSKI, I.; RAUDENSKÝ, M. The Influence of the Fibres Arrangement on Heat Transfer and Pressure Drop of Polumeric Hollow Fibre Heat Exchangers. Acta Polytechnica, 2020, vol. 60, iss. 2, p. 122-126. ISSN: 1210-2709.
KLEPIKOV, D.; KŮDELOVÁ, T.; PAUSHKINA, K.; STRIZHAK, P. Additives to Coal-Based Fuel Pellets for the Intensification of Combustion and Reduction in Anthropogenic Gas Emissions. Applied Sciences-Basel, 2020, vol. 10, iss. 19, p. 1-18. ISSN: 2076-3417.
KROULÍKOVÁ, T.; ASTROUSKI, I.; KŮDELOVÁ, T. Pressure drop study of polymeric hollow fiber heat exchangers. In Proceedings of the Engineering Mechnics 2020. Engineering Mechanics. Brno: Brno University of Technology Institute of Solid Mechanics, Mechatronics and Biomechanics, 2020. p. 314-317. ISBN: 978-80-214-5896-3. ISSN: 1805-8248.
GLUSHKOV, D.O.; FEOKTISTOV, D.V.; KUZNETSOV, G.V.; BATISCHEVA, K.A.; KŮDELOVÁ, T.; PAUSHKINA, K.K. Conditions and characteristics of droplets breakup for industrial waste-derived fuel suspensions ignited in high-temperature air. Fuel, 2020, vol. 265, iss. 1, p. 1-13. ISSN: 0016-2361.
2019
KŮDELOVÁ, T.; KROULÍKOVÁ, T. Life Expectancy of Polymeric Hollow Fibre Heat Transfer Surfaces. In Proceedings of the World Congress on Mechanical, Chemical, and Material Engineering 2019. Proceedings of the World Congress on Mechanical, Chemical, and Material Engineering 2019. Lisbon: 2019. p. HTFF 128-1 (HTFF 128-6 p.)ISBN: 978-1-927877-61-6. ISSN: 2369-8136.
BROŽOVÁ, T.; ASTROUSKI, I.; RAUDENSKÝ, M. The Influence of the Structure of Heat Transfer Surfaces on Polymeric Hollow Fibre Heat Exchangers. ERIN 2019. 1. Brno: 2019. p. 14.ISBN: 978-80-214-5733-1.
Abstrakt
KROULÍKOVÁ, T.; BROŽOVÁ, T.; BARTULI, E.; RAUDENSKÝ, M. Experimental Verification of Polymeric Distillation Unit. In Engineering Mechanics 2019 Book of Full Texts. Engineering Mechanics. Praha: Institute of Thermomechanics of the Czech Academy of Sciences, 2019. p. 211-214. ISBN: 978-80-87012-71-0. ISSN: 1805-8248.
RAUDENSKÝ, M.; BROŽOVÁ, T.; BARTULI, E. POLYMERIC HOLLOW FIBER HEAT TRANSFER SURFACES FOR SHELL AND TUBE APPLICATION. In ASTFE Digital Library. 4th Thermal and Fluids Engineering Conference. 2019. p. 199-204. ISSN: 2379-1748.
2018
BROŽOVÁ, T. Fázové změny na povrchu tepelných výměníků s dutými vlákny. 2018. 30 s.
Teze Ph.D. práce
BROŽOVÁ, T.; RAUDENSKÝ, M. Determination of surface wettability of polymeric hollow fibres. JOURNAL OF ELASTOMERS AND PLASTICS, 2018, vol. 50, iss. 8, p. 737-746. ISSN: 0095-2443.
BROŽOVÁ, T.; BARTULI, E. Influence of Condensation on the Outer Surface of Polymer Hollow Fiber Heat Exchangers during Heat Transfer. In ASME 2018 16th International Conference on Nanochannels, Microchannels, and Minichannels. American Society of Mechanical Engineers, 2018. p. 1-6. ISBN: 978-0-7918-5119-7.
BARTULI, E.; BROŽOVÁ, T.; RAUDENSKÝ, M. The Influence of Hollow Fibers Orientation Inside the Polymeric Hollow Fiber Heat Exchanger on the Heat Transfer Intensity. In Engineering Mechanics 2018. Praha: ITAM CAS, 2018. p. 61-64. ISBN: 978-80-86246-88-8.
BROŽOVÁ, T. Fázové změny na povrchu tepelných výměníků s dutými vlákny. 2018. 107 s.
Dizertace
BROŽOVÁ, T.; RAUDENSKÝ, M.; ASTROUSKI, I. FLEXIBLE POLYMERIC HOLLOW FIBER HEAT EXCHANGERS. In Proceedings of 2nd International Conference on Design and Production Engineering & 2nd International Conference on Mechatronics, Automation and Smart Materials. 2018. p. 1373-1382. ISBN: 978-1-56700-430-4.
BROŽOVÁ, T.; BARTULI, E.; RAUDENSKÝ, M. Condensation on the Outer Surface of Polymer Hollow Fiber Heat Exchangers and its Influence to the Heat Transfer. In Engineering Mechanics 2018. Praha: ITAM CAS, 2018. p. 117-120. ISBN: 978-80-86246-88-8.
2017
RAUDENSKÝ, M.; BROŽOVÁ, T.; BARTULI, E. Flexible heat exchangers with polymeric hollow fibres. In Scientific Tracks and Abstracts. Journal of Applied Mechanical Engineering. Paris, Francie: 2017. iss. 6, p. 31 ISSN: 2168-9873.
ASTROUSKI, I.; BROŽOVÁ, T.; RAUDENSKÝ, M.; REPPICH, M. Wärmeübertrager mit Kunststoffhohlfasern. In Kompakt-Wärmeübertrager. Essen, Germany: PP PU, 2017. s. 62.ISBN: 978-3-934736-39-9.
Kapitola, resp. kapitoly v odborné knize
2016
RAUDENSKÝ, M.; ASTROUSKI, I.; BROŽOVÁ, T. Polymeric hollow fiber heat exchangers. In Heat Transfer XIV Simulation and Experiments in Heat Transfer and its Applications. WIT Transactions on Engineering Sciences. UK: Wessex Institute, 2016. p. 95-105. ISBN: 978-1-78466-109-0. ISSN: 1743-3533.
BROŽOVÁ, T.; RAUDENSKÝ, M. Determination of the Surface Wettability of Polymeric Hollow Fibres. 24th INTERNATIONAL CONFERENCE ON MATERIALSAND TECHNOLOGY. Ljubljana, Slovenia: Inštitut za kovinske materiale in tehnologije, 2016. p. 47.ISBN: 978-961-94088-0-3.
BROŽOVÁ, T.; CHABIČOVSKÝ, M.; HORSKÝ, J. Influence of the surface roughness on the cooling intensity during spray cooling. In METAL 2016, 25rd International Conference on Metallurgy and Materials, Conference Proceedings. Ostrava: TANGER Ltd., 2016. p. 41-46. ISBN: 978-80-87294-67-3.
RAUDENSKÝ, M.; ASTROUSKI, I.; BROŽOVÁ, T.; BARTULI, E. Flexible Polymeric Hollow Fiber Heat Exchangers for Electronic Systems. In Thermal and Thermomechanical Phenomena in Electronic Systems ITherm 2016. 2010 IEEE. USA: IEEE, 2016. p. 1143-1147. ISBN: 978-1-4799-5266-3. ISSN: 1087-9870.
BROŽOVÁ, T.; LUKS, T.; ASTROUSKI, I.; RAUDENSKÝ, M. Fatigue Testing of Polymeric Hollow Fibre Heat Transfer Surfaces by Pulsating Pressure Loads. In Engineering Mechanics 2015. Applied Mechanics and Materials. Switzerland: Trans Tech Publications, 2016. p. 3-9. ISBN: 978-3-03835-700-1. ISSN: 1660-9336.
2015
BROŽOVÁ, T.; LUKS, T.; ASTROUSKI, I.; RAUDENSKÝ, M. Fatigue Testing of Polymeric Hollow Fibre Heat Transfer Surfaces by Pulsating Pressure Loads. In ENGINEERING MECHANICS 2015 21st International Conference Engineering Mechanics 2015. Engineering Mechanics. 1. Svratka: Institute of Theoretical and Applied Mechanics, 2015. p. 30-31. ISBN: 978-80-86246-42-0. ISSN: 1805-8248.
STRÁNSKÝ, M.; BROŽOVÁ, T.; RAUDENSKÝ, M.; HNÍZDIL, M.; TUROŇ, R. Effect of Various Spray Cooling Configurations on Hardness Profile of Tubes. In METAL 2015 24th International Conference on Metallurgy and Materials. 1. Ostrava: Tanger Ltd Ostrava, 2015. p. 1-6. ISBN: 978-80-87294-58-1.
*) Citace se generují jednou za 24 hodin.