Thermal Stability Analysis of a PCM-Based Energy Storage System †
Abstract
:1. Introduction
2. Experimental Setup
Thermocouples Position
3. Results and Discussion
3.1. Experimentally Calibration of the Heat Sink
3.2. Analysis of Thermal Stability of PCM-Based Energy Storage System
3.3. Analysis of Thermal Stability of PCM and Triangular Pin Fin-Based Energy Storage System
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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TCTs FOR PCM-BASED HEAT SINK | TCTs FOR PCM & PIN FIN BASED HEAT SINK | ||||||
---|---|---|---|---|---|---|---|
MAXIMUM TEMPERATURE | MAXIMUM TEMPERATURE | ||||||
Cycle 5 (C5) | Cycle 10 (C10) | Cycle 15 (C15) | Cycle 20 (C20) | Cycle 5 (C5) | Cycle 10 (C10) | Cycle 15 (C15) | Cycle 20 (C20) |
43.733 °C | 44.286 °C | 44.582 °C | 44.821 °C | 39.429 °C | 38.884 °C | 39.139 °C | 38.849 °C |
DIFFERENCE IN TEMPERATURE DURING TCTs | DIFFERENCE IN TEMPERATURE DURING TCTs | ||||||
C10–C5 | 0.553 °C | C5–C10 | 0.545 °C | ||||
C15–C5 | 0.849 °C | C5–C15 | 0.29 °C | ||||
C20–C5 | 1.088 °C | C5–C20 | 0.58 °C | ||||
C15–C10 | 0.296 °C | C15–C10 | 0.255 °C | ||||
C20–C10 | 0.535 °C | C10–C20 | 0.035 °C | ||||
C20–C15 | 0.239 °C | C15–C20 | 0.29 °C |
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Munir, M.U.; Hussain, A. Thermal Stability Analysis of a PCM-Based Energy Storage System. Eng. Proc. 2022, 23, 20. https://doi.org/10.3390/engproc2022023020
Munir MU, Hussain A. Thermal Stability Analysis of a PCM-Based Energy Storage System. Engineering Proceedings. 2022; 23(1):20. https://doi.org/10.3390/engproc2022023020
Chicago/Turabian StyleMunir, Muhammad Umar, and Abid Hussain. 2022. "Thermal Stability Analysis of a PCM-Based Energy Storage System" Engineering Proceedings 23, no. 1: 20. https://doi.org/10.3390/engproc2022023020
APA StyleMunir, M. U., & Hussain, A. (2022). Thermal Stability Analysis of a PCM-Based Energy Storage System. Engineering Proceedings, 23(1), 20. https://doi.org/10.3390/engproc2022023020