Notice: Undefined index: linkPowrot in C:\wwwroot\wwwroot\publikacje\publikacje.php on line 1275
Publikacje
Pomoc (F2)
[90420] Artykuł:

COMPARISON OF THE 1D AND 2D CALCULATION MODELS USED FOR DETERMINATION OF THE HEAT TRANSFER COEFFICIENT DURING FLOW BOILING HEAT TRANSFER IN A MINICHANNEL

Czasopismo: Proc. XII Int. Conf. on Computational Heat, Mass and Momentum Transfer ,ICCHMT 2019, Rome, Italy, 3-6 September 2019   Zeszyt: 293
Opublikowano: 2019
 
  Autorzy / Redaktorzy / Twórcy
Imię i nazwisko Wydział Katedra Do oświadczenia
nr 3
Grupa
przynależności
Dyscyplina
naukowa
Procent
udziału
Liczba
punktów
do oceny pracownika
Liczba
punktów wg
kryteriów ewaluacji
Kinga Strąk orcid logo WMiBMKatedra Mechaniki**Takzaliczony do "N"Inżynieria mechaniczna50.00.00  
Magdalena Piasecka orcid logo WMiBMKatedra Mechaniki**Takzaliczony do "N"Inżynieria mechaniczna50.00.00  

Grupa MNiSW:  Pozostałe publikacje (niepunktowane)
Punkty MNiSW: 0


DOI LogoDOI    
Keywords:

inverse heat transfer  Trefftz method  Beck method  flow boiling  minichannel  infrared thermography 



Abstract:

The paper discusses the results of the flow boiling heat transfer in a vertical minichannel with rectangular cross-section. The heating element for FC-72 flowing in the minichannel is a thin plate. Infrared thermography is used to determine changes in the temperature on its outer side. The aim of the calculation is to determine the heat transfer coefficient using 1D and 2D calculation models. Local values of heat transfer coefficient on the surface between the heated plate and boiling fluid are calculated from the Newton`s and Fourier`s laws. In 2D model the plate temperature distribution is obtained by solving the inverse heat conduction problem. The governing equation is solved by means of two methods: the non-continuous Trefftz method and the Beck method. The results are presented as plate temperature and heat transfer coefficient calculated using 1D and 2D models as a function of the distance from the minichannel inlet. The analysis of the results revealed that the values and distributions of the heat transfer coefficient calculated by means of both models were similar. This suggests that all mentioned methods are interchangeable.