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[96220] Artykuł:

Numerical Solution of Axisymmetric Inverse Heat Conduction Problem by the Trefftz Method

Czasopismo: Energies   Tom: 13, Zeszyt: 3, Strony: 1-14
ISSN:  1996-1073
Opublikowano: Luty 2020
Liczba arkuszy wydawniczych:  1.00
 
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Sylwia Hożejowska orcid logo WZiMKKatedra Informatyki i Matematyki Stosowanej**Takzaliczony do "N"Inżynieria środowiska, górnictwo i energetyka50140.00140.00  
Magdalena Piasecka orcid logo WMiBMKatedra Mechaniki**Takzaliczony do "N"Inżynieria mechaniczna50140.00140.00  

Grupa MNiSW:  Publikacja w czasopismach wymienionych w wykazie ministra MNiSzW (część A)
Punkty MNiSW: 140


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Keywords:

annular minigap  flow boiling  heat transfer coefficient  inverse problem  Trefftz method 



Abstract:

In this paper the issue of flow boiling heat transfer in an annular minigap was discussed. The main aim of the paper was determining the boiling heat transfer coefficient at the HFE-649 fluid – heater contact during flow along an annular minigap. The essential element of the experimental stand was a test section vertically oriented with the minigap 2 mm wide. Thermocouples were used to measure temperature of the heater and fluid at the inlet and the outlet to the minigap. The mathematical model assumed that the fluid flow was laminar and the steady state heat transfer process was axisymmetric. The temperatures of the heated surface and of the flowing fluid were assumed to fulfill energy equations with adequate boundary conditions. The problem was solved by the Trefftz method. The local heat transfer coefficients at the fluid – test surface interface were calculated due to the third kind boundary condition at the saturated boiling. Graphs were used to illustrate: the measurement of the heater surface temperature, 2D temperature distributions in the pipe and fluid, and the heat transfer coefficient as a function of the distance from the minigap inlet. The measurement uncertainties and accuracy of heat transfer coefficient determination were estimated.