Research Article

NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES

Volume: 5 Number: 1 October 3, 2018
  • Nadezhda Bondareva Bondareva
EN

NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES

Abstract

Keywords

References

  1. [1] Raoux, S., Wuttig, M. (2009). Phase change materials: Science and Applications. Berlin: Springer.
  2. [2] Fan, L. W., Xiao, Y. Q., Zeng, Y., Fang, X., Wang, X., Xu, X., ... & Cen, K. F. (2013). Effects of melting temperature and the presence of internal fins on the performance of a phase change material (PCM)-based heat sink. International Journal of Thermal Sciences, 70, 114-126.
  3. [3] Gharbi, S., Harmand, S., Jabrallah, S. B. (2015). Experimental comparison between different configurations of PCM based heat sinks for cooling electronic components. Applied Thermal Engineering, 87, 454-462.
  4. [4] Sharifi, N., Bergman, T. L., Faghri, A. (2011). Enhancement of PCM melting in enclosures with horizontally-finned internal surfaces. International journal of heat and mass transfer, 54(19-20), 4182-4192.
  5. [5] Gharbi, S., Harmand, S., Jabrallah, S. B. (2017). Experimental study of the cooling performance of phase change material with discrete heat sources – Continuous and intermittent regimes, Applied Thermal Engineering, 111, 103–111.
  6. [6] Numerical investigation on the natural convection effects in the melting process of PCM in a finned container using lattice Boltzmann method
  7. [7] Prieto, M. M., Suarez, I., Gonzalez, B. (2017). Analysis of the thermal performance of flat plate PCM heat exchangers for heating systems, Applied Thermal Engineering, 116, 11–23.
  8. [8] Madruga, S., Mendoza, C. (2017). Heat transfer performance and melting dynamic of a phase change material subjected to thermocapillary effects. International Journal of Heat and Mass Transfer, 109, 501-510.

Details

Primary Language

English

Subjects

-

Journal Section

Research Article

Authors

Nadezhda Bondareva Bondareva This is me

Publication Date

October 3, 2018

Submission Date

May 30, 2017

Acceptance Date

October 16, 2017

Published in Issue

Year 2019 Volume: 5 Number: 1

APA
Bondareva, N. B. (2018). NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES. Journal of Thermal Engineering, 5(1), 51-61. https://doi.org/10.18186/thermal.513015
AMA
1.Bondareva NB. NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES. Journal of Thermal Engineering. 2018;5(1):51-61. doi:10.18186/thermal.513015
Chicago
Bondareva, Nadezhda Bondareva. 2018. “NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES”. Journal of Thermal Engineering 5 (1): 51-61. https://doi.org/10.18186/thermal.513015.
EndNote
Bondareva NB (October 1, 2018) NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES. Journal of Thermal Engineering 5 1 51–61.
IEEE
[1]N. B. Bondareva, “NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES”, Journal of Thermal Engineering, vol. 5, no. 1, pp. 51–61, Oct. 2018, doi: 10.18186/thermal.513015.
ISNAD
Bondareva, Nadezhda Bondareva. “NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES”. Journal of Thermal Engineering 5/1 (October 1, 2018): 51-61. https://doi.org/10.18186/thermal.513015.
JAMA
1.Bondareva NB. NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES. Journal of Thermal Engineering. 2018;5:51–61.
MLA
Bondareva, Nadezhda Bondareva. “NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES”. Journal of Thermal Engineering, vol. 5, no. 1, Oct. 2018, pp. 51-61, doi:10.18186/thermal.513015.
Vancouver
1.Nadezhda Bondareva Bondareva. NUMERICAL SIMULATION OF NATURAL CONVECTION MELTING IN 2D AND 3D ENCLOSURES. Journal of Thermal Engineering. 2018 Oct. 1;5(1):51-6. doi:10.18186/thermal.513015

Cited By

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