Recommended by the IIR
Energy management for an air conditioning system using a storage device to reduce the on-peak power consumption.
Author(s) : TIPASRI W., SUKSRI A., VELMURUGAN K., WONGWUTTANASATIAN T.
Type of article: Periodical article
Summary
To reduce the on-peak electrical power consumption, storage devices are widely performed with the help of an energy management system. According to IEA, residential air conditioning consumes 70% of the electricity, increasing by 4% every year. To minimize peak power consumption, thermal energy storage (TES) can be used to store cooled water for the air conditioning system. An efficient chilled water tank was designed and computationally investigated. Three-dimensional cylindrical tanks were simulated with seven different heights to diameter (H:D) ratios. At first, the temperature changes in a chilled water tank during discharging and charging periods were studied. An 11-h charging period was carried out during the off-peak time at night, while the discharging period was 13 h during the daytime. Under time constraints regarding peak and off-peak periods, a tank with an H:D = 2.0 can only be used for 13-h discharging. Then the chilled water was simulated with a set temperature of 4 °C during the charging. This resulted in the system being usable for six days, after which it had to be stopped for longer charging. A storage tank with an H:D ratio of 2.0 was found to be suitable for an air conditioning system. If six days of operations (one day off) were used, it could save 15.38% of electrical energy consumption and 51.65% of electricity cost. This saving leads to a 5.55-year payback period.
Available documents
Format PDF
Pages: 19 p.
Available
Free
Details
- Original title: Energy management for an air conditioning system using a storage device to reduce the on-peak power consumption.
- Record ID : 30031214
- Languages: English
- Subject: Technology
- Source: Energies - 15 - 23
- Publishers: MDPI
- Publication date: 2022/12
- DOI: http://dx.doi.org/https://doi.org/10.3390/en15238940
Links
See other articles in this issue (18)
See the source
-
Air conditioning system with integrated cold st...
- Author(s) : EGOROVA A. I., KOLESNIKOV A. S., KROTOV A.
- Date : 2021/09/01
- Languages : English
- Source: 13rd IIR Conference on Phase-Change Materials and Slurries for Refrigeration and Air Conditioning. Proceedings: (online) Vicenza, Italy, September 1-3, 2021.
- Formats : PDF
View record
-
Simulation of a PCM integrated heat pump using ...
- Author(s) : LI Z., CATANO J., GLUESENKAMP K., SHEN B., LACLAIR T., COMPARIN R., WELCH D.
- Date : 2022
- Languages : English
- Source: 2022 Purdue Conferences. 19th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
View record
-
Comparative analysis of solar-driven air condit...
- Author(s) : PADULLES SOLE R., MARKUSSEN W. B., GULLO P.
- Date : 2022/06/13
- Languages : English
- Source: 15th IIR-Gustav Lorentzen Conference on Natural Refrigerants (GL2022). Proceedings. Trondheim, Norway, June 13-15th 2022.
- Formats : PDF
View record
-
Optimal operating temperatures for a variable-t...
- Author(s) : KRANE P., ZIVIANI D., BRAUN J. E., JAIN N., MARCONNET A.
- Date : 2022
- Languages : English
- Source: 2022 Purdue Conferences. 19th International Refrigeration and Air-Conditioning Conference at Purdue.
- Formats : PDF
View record
-
Practical optimisation of full thermal storage ...
- Author(s) : WEI G., LIU M., SAKURAI Y., et al.
- Date : 2002
- Languages : English
- Source: ASHRAE Transactions. 2002 annual Meeting, Honolulu, Hawaii. Volume 108, part 2 + CD-ROM.
View record