28 June 2015 to 3 July 2015
Africa/Johannesburg timezone
SAIP2015 Proceeding published on 17 July 2016

Comparative analysis of the performance of integrated and split type air source heat pump water heaters by diagnostic characterization

3 Jul 2015, 10:20
20m
Oral Presentation Track F - Applied Physics Applied

Speaker

Mr Stephen Tangwe (Fort Hare Institute of Technology, University of Fort Hare)

Abstract content <br> &nbsp; (Max 300 words)<br><a href="http://events.saip.org.za/getFile.py/access?resId=0&materialId=0&confId=34" target="_blank">Formatting &<br>Special chars</a>

Air source heat pump water heater generates sanitary hot water by harnessing the aero-thermal energy during the process of vapor compression refrigerant cycles. The study focuses on identification of critical parameters (volume of hot water drawn off, ambient temperature and relative humidity) as well as deterministic quantities (time used, power consumption and the coefficient of performance) as the indicators to benchmark the efficiencies of the both systems. The analyses were performed based on two predominant scenarios (first hour heating rating and heating up cycle due to hot water drawn off) whereby both the integrated and split type ASHP water heaters were undergoing VCRC. The both types of ASHP water heater were of 200 L tank capacity with the auxiliary heating element disabled. The results analyses were presented for the two systems with their hot water set point temperature at 55o C. Multiple contour simulation plots were developed and built in Matlab to simulate the COP of the systems using the critical parameters as predictors. The multiple contour simulation plots showed the variation of the COP of the systems and the desired predictor with the others invariant. Conclusively, it was demonstrated that the integrated type ASHP water heater demonstrated performed better than the split type system.

keywords: integrated ASHP water heater, Split type ASHP water heater, vapor compression refrigerant cycles, predictors, multiple contour simulation plots, coefficient of performance.

Apply to be<br> considered for a student <br> &nbsp; award (Yes / No)?

Yes

Please indicate whether<br>this abstract may be<br>published online<br>(Yes / No)

Yes

Main supervisor (name and email)<br>and his / her institution

Michael Simon

Level for award<br>&nbsp;(Hons, MSc, <br> &nbsp; PhD, N/A)?

PhD

Would you like to <br> submit a short paper <br> for the Conference <br> Proceedings (Yes / No)?

Yes

Primary author

Mr Stephen Tangwe (Fort Hare Institute of Technology, University of Fort Hare)

Co-authors

Prof. Edson Meyer (Fort Hare Institute of Technology, University of Fort Hare) Dr Michael Simon (Fort Hare Institute of Technology, University of Fort Hare)

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