Heat Transfer in Vertically Aligned Phase Change Energy Storage Systems
- 1 May 1999
- journal article
- Published by ASME International in Journal of Solar Energy Engineering
- Vol. 121 (2) , 98-109
- https://doi.org/10.1115/1.2888158
Abstract
Convection effects on heat transfer are analyzed in low temperature and vertically aligned phase change energy storage systems. This is performed by detailed temperature measurements in the phase change material (PCM) in eighteen locations forming a grid of six radial and three axial positions. The system constitutes a double pipe configuration, where commercial grade paraffin wax is stored in the annular space between the two pipes and water flows inside the inner pipe. Vertical alignment of the system allowed for reverse of the flow direction of the heat transfer fluid (HTF), which is water. Therefore, the PCM is heated from the bottom for HTF flow from bottom to top and from the top as the HTF flow direction is reversed. For the former case, natural convection affects the melting process. Collected data are used to study variations in the transient temperature distribution at axial and radial positions as well as for the two-dimensional temperature field. The data is used to calculate the PCM heat transfer coefficient and to develop correlations for the melting Fourier number. Results indicate that the PCM heat transfer coefficient is higher for the case of PCM heating from bottom to top. Nusselt number correlations are developed as a function of Rayleigh, Stefan, and Fourier numbers for the HTF flow from bottom to top and as a function of Stefan and Fourier numbers for HTF flow from top to bottom. The enhancement ratio for heat transfer caused by natural convection increases and then levels off as the inlet temperature of the HTF is increased.Keywords
This publication has 15 references indexed in Scilit:
- Convection Heat TransferPublished by Wiley ,2013
- Effectiveness of a thermal energy storage system using phase-change materialsEnergy Conversion and Management, 1997
- A perspective on thermal energy storage systems for solar energy applicationsInternational Journal of Energy Research, 1996
- Latent heat thermal storage for solar dynamic power generationSolar Energy, 1993
- Analysis of Thermal Energy Storage Material With Change-of-Phase Volumetric EffectsJournal of Solar Energy Engineering, 1993
- Heat-transfer characteristics of a latent heat storage system using MgCl2 · 6H2OEnergy, 1992
- A modular phase change heat exchanger for a solar ovenSolar Energy, 1992
- Performance and modelling of latent heat storesSolar Energy, 1992
- A study of the melting heat transfer characteristics of energy storage system utilizing the pcm.JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 1988
- Low temperature latent heat thermal energy storage: Heat storage materialsSolar Energy, 1983