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2020 | OriginalPaper | Chapter

Experimental Investigation of Dehumidifier Hybrid Air Conditioner Integrated Zeotropic Refrigerant Blend R-407C Air Source Water Heat Pump

Authors : Juned R. Kazi, Neeraj Agrawal

Published in: Renewable Energy and Climate Change

Publisher: Springer Singapore

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Abstract

Air gets heated while passing through the desiccant wheel in a hybrid air conditioning system and needs to be cooled before passing to cooling coil. This hot air can be an effective heat source for the air source heat pump to heat the water. The present work includes experimental investigation of the dehumidifier integrated hybrid R-407C air source water heat pump under different air temperature to achieve hot water. The results exhibit that heating capacity increases by 15% by increasing the air-source temperature from 30 to 45 °C. End loop COP of the system is reduced by 25%.

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Literature
1.
go back to reference Cakir, U., Comakli, K., Yuksel, F.: The role of cogeneration systems in sustainability of energy. Energy Convers. Manage. 63, 196–202 (2012)CrossRef Cakir, U., Comakli, K., Yuksel, F.: The role of cogeneration systems in sustainability of energy. Energy Convers. Manage. 63, 196–202 (2012)CrossRef
2.
go back to reference Cakir, U., Comakli, K., Comakli, O., Karsli, S.: An experimental exergetic comparison of four different heat pump systems working at same conditions: as air to air, air to water, water to water and water to air. Appl. Energy 58, 210–219 (2013)CrossRef Cakir, U., Comakli, K., Comakli, O., Karsli, S.: An experimental exergetic comparison of four different heat pump systems working at same conditions: as air to air, air to water, water to water and water to air. Appl. Energy 58, 210–219 (2013)CrossRef
3.
go back to reference Hepbasli, A., Kalinci, Y.: A review of heat pump water heating systems. Renew. Sustain. Energy Rev. 13, 1211–1229 (2009)CrossRef Hepbasli, A., Kalinci, Y.: A review of heat pump water heating systems. Renew. Sustain. Energy Rev. 13, 1211–1229 (2009)CrossRef
4.
go back to reference Fard, A.H., Aidoun, Z., Ouzzane, M.: Applying refrigerants mixtures with thermal glide in cold climate air source heat pumps. Appl. Therm. Eng. 62, 714–722 (2014)CrossRef Fard, A.H., Aidoun, Z., Ouzzane, M.: Applying refrigerants mixtures with thermal glide in cold climate air source heat pumps. Appl. Therm. Eng. 62, 714–722 (2014)CrossRef
5.
go back to reference Zhang, J., Wang, R.Z., Wu, J.Y.: System optimization and experimental research on air source heat pump water heater. Appl. Therm. Eng. 27(5), 1029–1035 (2007)CrossRef Zhang, J., Wang, R.Z., Wu, J.Y.: System optimization and experimental research on air source heat pump water heater. Appl. Therm. Eng. 27(5), 1029–1035 (2007)CrossRef
6.
go back to reference MacArthur, J.W., Grald, E.W.: Unsteady compressible two-phase flow model for predicting cyclic heat pump performance and a comparison with experimental data. Int. J. Refrig 12(1), 29–41 (1989)CrossRef MacArthur, J.W., Grald, E.W.: Unsteady compressible two-phase flow model for predicting cyclic heat pump performance and a comparison with experimental data. Int. J. Refrig 12(1), 29–41 (1989)CrossRef
7.
go back to reference Techarungpaisan, P., Theerakulpisut, S., Priprem, S.: Modeling of a split type air conditioner with integrated water heater. Energy Convers. Manag. 48, 1222–1237 (2007)CrossRef Techarungpaisan, P., Theerakulpisut, S., Priprem, S.: Modeling of a split type air conditioner with integrated water heater. Energy Convers. Manag. 48, 1222–1237 (2007)CrossRef
8.
go back to reference Ji, J., Pei, G., Chow, T.: Performance of multifunctional domestic heat-pump system. Appl. Energy 80(3), 307–326 (2005)CrossRef Ji, J., Pei, G., Chow, T.: Performance of multifunctional domestic heat-pump system. Appl. Energy 80(3), 307–326 (2005)CrossRef
9.
go back to reference Mei, V.C., Chen, F.C., Domitrovic, R.E., Kilpatrick, J.K., Carter, J.A.: A study of a natural convection immersed condenser heat pump water heater. ASHRAE Trans. Part 2, 109 (2003) Mei, V.C., Chen, F.C., Domitrovic, R.E., Kilpatrick, J.K., Carter, J.A.: A study of a natural convection immersed condenser heat pump water heater. ASHRAE Trans. Part 2, 109 (2003)
10.
go back to reference Guo, J.J., Wu, J.Y., Wang, R.Z., Li, S.: Experimental research and operation optimization of an air-source heat pump water heater. Appl. Energy 88, 4128–4138 (2011)CrossRef Guo, J.J., Wu, J.Y., Wang, R.Z., Li, S.: Experimental research and operation optimization of an air-source heat pump water heater. Appl. Energy 88, 4128–4138 (2011)CrossRef
11.
go back to reference Laipradit, P., Tainsuwan, J., Kiatsiriroat, T., Aye, L.: Theoretical performance analysis of heat pump water heaters using carbon dioxide as refrigerant. Int. J. Energy Res. 32, 356–366 (2008)CrossRef Laipradit, P., Tainsuwan, J., Kiatsiriroat, T., Aye, L.: Theoretical performance analysis of heat pump water heaters using carbon dioxide as refrigerant. Int. J. Energy Res. 32, 356–366 (2008)CrossRef
12.
go back to reference Zhiqiang, L., Xiaolin, L., Hanqing, W., Wangming, P.: Performance comparison of air source heat pump with R407C and R22 under frosting and defrosting. Energy Convers. Manag. 49, 232–239 (2008)CrossRef Zhiqiang, L., Xiaolin, L., Hanqing, W., Wangming, P.: Performance comparison of air source heat pump with R407C and R22 under frosting and defrosting. Energy Convers. Manag. 49, 232–239 (2008)CrossRef
13.
go back to reference Zali, S., Hashemi, R., Naggaashzagadan, M.: Performance comparison of R407C and R22 in off-design point using Wilson-Plot Method. Middle-East J. Sci. Res. 9, 177–183 (2011) Zali, S., Hashemi, R., Naggaashzagadan, M.: Performance comparison of R407C and R22 in off-design point using Wilson-Plot Method. Middle-East J. Sci. Res. 9, 177–183 (2011)
14.
go back to reference Neksa, P., Rekstad, H., Zakeri, G.R., Schiefloe, P.A.: CO2-heat pump water heater: characteristics, system design and experimental results. Int. J. Refrig. 21(3), 172–179 (1998)CrossRef Neksa, P., Rekstad, H., Zakeri, G.R., Schiefloe, P.A.: CO2-heat pump water heater: characteristics, system design and experimental results. Int. J. Refrig. 21(3), 172–179 (1998)CrossRef
15.
go back to reference Li, X.: Experimental study on replacement of R22 with R417A in heat pump heating water system. Refrig. J. 4, 1–3 (2003) Li, X.: Experimental study on replacement of R22 with R417A in heat pump heating water system. Refrig. J. 4, 1–3 (2003)
Metadata
Title
Experimental Investigation of Dehumidifier Hybrid Air Conditioner Integrated Zeotropic Refrigerant Blend R-407C Air Source Water Heat Pump
Authors
Juned R. Kazi
Neeraj Agrawal
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-32-9578-0_16

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