Recommended by the IIR
A Review of Heat Batteries Based PV Module Cooling—Case Studies on Performance Enhancement of Large-Scale Solar PV System.
Author(s) : VELMURUGAN K., ELAVARASAN R. M., DE P. V., KARTHIKEYAN V., KORUKONDA T. B., DHANRAJ J. A., EMSAENG K., CHOWDHURY M. S., TECHATO K., EL KHIER B. S. A., ATTIA E-A.
Type of article: Periodical article, Review
Summary
Several studies have concentrated on cooling the PV module temperature (TPV) to enhance the system’s electrical output power and efficiency in recent years. In this review study, PCM-based cooling techniques are reviewed majorly classified into three techniques: (i) incorporating raw/pure PCM behind the PV module is one of the most straightforward techniques; (ii) thermal additives such as inter-fin, nano-compound, expanded graphite (EG), and others are infused in PCM to enhance the heat transfer rate between PV module and PCM; and (iii) thermal collectors that are placed behind the PV module or inside the PCM container to minimize the PCM usage. Advantageously, these techniques favor reusing the waste heat from the PV module. Further, in this study, PCM thermophysical properties are straightforwardly discussed. It is found that the PCM melting temperature (Tmelt) and thermal conductivity (KPCM) become the major concerns in cooling the PV module. Based on the literature review, experimentally proven PV-PCM temperatures are analyzed over a year for UAE and Islamabad locations using typical meteorological year (TMY) data from the National Renewable Energy Laboratory (NREL) data source in 1 h frequency.
Available documents
Format PDF
Pages: 65 p.
Available
Free
Details
- Original title: A Review of Heat Batteries Based PV Module Cooling—Case Studies on Performance Enhancement of Large-Scale Solar PV System.
- Record ID : 30029408
- Languages: English
- Subject: Technology
- Source: Sustainability - vol. 14 - n. 4
- Publishers: MDPI
- Publication date: 2022/02
- DOI: http://dx.doi.org/10.3390/su14041963
Links
See other articles in this issue (6)
See the source
-
Simulation of Phase Change Material absorbers f...
- Author(s) : HASSABOU A., ISAIFAN R. J.
- Date : 2022/12
- Languages : English
- Source: Energies - vol. 15 - n. 24
- Formats : PDF
View record
-
Introducing a hybrid photovoltaic-thermal colle...
- Author(s) : GHORBANI B., MEHRPOOYA M., SHARIFZADEH M. M. M.
- Date : 2019/07
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 103
- Formats : PDF
View record
-
The influence of various solar radiations on th...
- Author(s) : RUBAIEE S., FAZAL M. A.
- Date : 2022/12
- Languages : English
- Source: Energies - vol. 15 - n. 24
- Formats : PDF
View record
-
Sizing of thermal energy storage with phase cha...
- Author(s) : COCA-ORTEGON A., PRIETO J., CORONAS A.
- Date : 2019/08/24
- Languages : English
- Source: Proceedings of the 25th IIR International Congress of Refrigeration: Montréal , Canada, August 24-30, 2019.
- Formats : PDF
View record
-
Energy and thermal performance analysis of PCM-...
- Author(s) : ARASTEH H., MAREF W., SABER H. H.
- Date : 2023/02
- Languages : English
- Source: Energies - vol. 16 - n. 3
- Formats : PDF
View record