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Transient behavior and dynamic performance of cascade heat pump water heater with thermal storage system

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  • Wu, Jianghong
  • Yang, Zhaoguang
  • Wu, Qinghao
  • Zhu, Yujuan

Abstract

At low ambient temperature, air-source heat pump water heater suffers from decrease of both heating capacity and coefficient of performance, and increase in compressor’s pressure ratio and discharge temperature. A cascade air-source heat pump water heater with phase change material (PCM) for thermal storage application was designed to ensure the reliable operation under various weather conditions and enhance the system performance at low ambient temperature. Dynamic experiments were carried out under various operating conditions in accordance with China National Standard GB/T23137-2008. Transient operating characteristics were adopted to analyze the performance of cascade heat pump system. Dynamic performance of the heat pump water heater in single stage mode and cascade mode was compared and discussed. The heating COP values in single stage mode ranged from 1.5 to 3.05, while in cascade mode, the heating COP values ranged from 1.74 to 2.55. Based on the transient heating COP values, critical switching curve from single stage mode to cascade mode was founded for the code of the system controller. Furthermore, energy performance between water tanks with and without PCM was compared to clarify the contribution of PCM.

Suggested Citation

  • Wu, Jianghong & Yang, Zhaoguang & Wu, Qinghao & Zhu, Yujuan, 2012. "Transient behavior and dynamic performance of cascade heat pump water heater with thermal storage system," Applied Energy, Elsevier, vol. 91(1), pages 187-196.
  • Handle: RePEc:eee:appene:v:91:y:2012:i:1:p:187-196
    DOI: 10.1016/j.apenergy.2011.09.020
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    1. Medrano, M. & Yilmaz, M.O. & Nogués, M. & Martorell, I. & Roca, Joan & Cabeza, Luisa F., 2009. "Experimental evaluation of commercial heat exchangers for use as PCM thermal storage systems," Applied Energy, Elsevier, vol. 86(10), pages 2047-2055, October.
    2. Chen, Lingen & Li, Jun & Sun, Fengrui & Wu, Chih, 2008. "Performance optimization for a two-stage thermoelectric heat-pump with internal and external irreversibilities," Applied Energy, Elsevier, vol. 85(7), pages 641-649, July.
    3. Chow, T.T. & Pei, G. & Fong, K.F. & Lin, Z. & Chan, A.L.S. & He, M., 2010. "Modeling and application of direct-expansion solar-assisted heat pump for water heating in subtropical Hong Kong," Applied Energy, Elsevier, vol. 87(2), pages 643-649, February.
    4. Li, Y.W. & Wang, R.Z. & Wu, J.Y. & Xu, Y.X., 2007. "Experimental performance analysis and optimization of a direct expansion solar-assisted heat pump water heater," Energy, Elsevier, vol. 32(8), pages 1361-1374.
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