Wykaz publikacji wybranego autora

Elżbieta Fornalik-Wajs, dr hab. inż., prof. AGH

profesor nadzwyczajny

Wydział Energetyki i Paliw
WEiP-kppe, Katedra Podstawowych Problemów Energetyki


  • 2018

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria środowiska, górnictwo i energetyka


[poprzednia klasyfikacja] obszar nauk technicznych / dziedzina nauk technicznych / energetyka


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-2712-9309 orcid iD

ResearcherID: C-6551-2013

Scopus: 36659195600

PBN: 5e70922c878c28a04739124e

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • An analysis of unsteady thermal convection of paramagnetic fluid in cubical enclosure under strong magnetic field gradient
2
  • Analiza eksperymentalna wpływu strug uderzających pod działaniem przepływu krzyżowego na wymianę ciepła
3
  • Analysis of the influence of a strong magnetic field gradient on convection process of paramagnetic fluid in the annulus between horizontal concentric cylinders
4
  • Approach to novel design of $CO_{2}$ based centrifugal compressor
5
  • Asymmetrical thermal boundary condition influence on the flow structure and heat transfer performance of paramagnetic fluid-forced convection in the strong magnetic field
6
7
8
  • Compressor efficiency in the light of blade-fluid thermal interaction
9
  • Convection of paramagnetic fluid in a cube heated and cooled from side walls and placed below a superconducting magnet – comparison between experiment and numerical computations
10
  • Curved surface minijet impingement phenomena analysed with $\zeta-f$ turbulence model
11
  • Effect of a magnetic field on the convection of paramagnetic fluid in unstable and stable thermosyphon-like configurations
12
  • Evaluation of colour space transformation suitability to optical temperature measurements
13
  • Evaluation of diamagnetic nanofluid ability to heat transfer in the strong magnetic field
14
  • Experimental analysis of velocity and temperature fields in a system similar to the Czochralski method of single crystal growth
15
16
17
  • Experimental investigations of jet flows
18
19
  • Extend of magnetic field interference in the natural convection of diamagnetic nanofluid
20
  • Flow patterns generated by a strong magnetic field
21
  • Flow structure, heat transfer and scaling analysis in the case of thermo-magnetic convection in a differentially heated cylindrical enclosure
22
  • Heat transfer intensification by jet impingement – numerical analysis using RANS approach
23
  • High performance tubular heat exchanger with minijet heat transfer enhancement
24
  • Identification of the structures for low Reynolds number flow in the strong magnetic field
25