Detail publikace

Melting front propagation in a paraffin-based phase change material-lab-scale experiment and simulations

ŠTĚTINA, J. MAUDER, T. KLIMEŠ, L. CHARVÁT, P.

Originální název

Melting front propagation in a paraffin-based phase change material-lab-scale experiment and simulations

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

angličtina

Originální abstrakt

The paper reports experimental and numerical investigation of the melting front propagation in a paraffin-based Phase Change Material (PCM). The investigated case was a block of PCM with a heat flux introduced at one of its sides. The PCM block was contained in a transparent container and thus the propagation of the melting front could be monitored with a camera. The melting temperature of the PCM was 28 °C and the container was located in an environmental chamber where the ambient temperature was maintained at 27 °C during the experiment. The natural convection in the melted PCM played an important role and it had to be considered in the heat transfer models. The numerical models taking into account natural convection in liquid PCM require long computation times, and therefore they are impractical if the fast computation of the melting front position is needed. The effective heat conductivity approach can be used to overcome this issue. Two numerical models were compared; an in-house heat transfer model using effective conductivity approach developed in MATLAB and a more advanced model created in the off-the-shelf simulation tool COMSOL, which accounts for the natural convection in liquid PCM.

Klíčová slova

Stefan melting problem, phase change materials, effective thermal conductivity

Autoři

ŠTĚTINA, J.; MAUDER, T.; KLIMEŠ, L.; CHARVÁT, P.

Vydáno

1. 11. 2018

ISSN

0354-9836

Periodikum

Thermal Science

Ročník

22

Číslo

6B

Stát

Srbská republika

Strany od

2723

Strany do

2732

Strany počet

10

URL

BibTex

@article{BUT137461,
  author="Josef {Štětina} and Tomáš {Mauder} and Lubomír {Klimeš} and Pavel {Charvát}",
  title="Melting front propagation in a paraffin-based phase change material-lab-scale experiment and simulations",
  journal="Thermal Science",
  year="2018",
  volume="22",
  number="6B",
  pages="2723--2732",
  doi="10.2298/TSCI161109322S",
  issn="0354-9836",
  url="http://www.doiserbia.nb.rs/Article.aspx?ID=0354-98361600322S#.Y2vM1b6ZPFo"
}