Publication Cover
Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 32, 2019 - Issue 3
298
Views
2
CrossRef citations to date
0
Altmetric
Articles

Experimental study on performance optimization of air source heat pump using DOE method

, , , , , , & show all
Pages 267-283 | Received 25 Mar 2018, Accepted 23 Jul 2018, Published online: 28 Nov 2018

References

  • M. Beshr, V. Aute, and R. Radermacher, “Multi-objective optimization of a residential air source heat pump with small-diameter tubes using genetic algorithms,” Int. J. Refrigeration, vol. 67, pp. 134–142, 2016. DOI: 10.1016/j.ijrefrig.2016.03.016.
  • S. Jiang, S. Wang, X. Jin, and Y. Yu, “Optimum compressor cylinder volume ratio for two-stage compression air source heat pump systems,” Int. J. Refrigeration, vol. 67, pp. 77–89, 2016. DOI: 10.1016/j.ijrefrig.2016.03.012.
  • Y. H. Diao, S. Wang, C. Z. Li, Y. H. Zhao, and T. T. Zhu, “Experimental study on the heat transfer characteristics of a new type flat micro heat pipe heat exchanger with latent heat thermal energy storage,” Experimental Heat Transfer, vol. 30, no. 2, pp.91–111, 2017. DOI: 10.1080/08916152.2016.1179355.
  • K. A. Cansiz, “The efficiency analysis of a finned cross-flow heat recovery unit,” Experimental Heat Transfer, vol. 28, no. 1, pp.9–22, 2015. DOI: 10.1080/08916152.2013.803172.
  • M. Kassai, “Experimental investigation on the effectiveness of a sorption energy recovery wheel in ventilation system,” Experimental Heat Transfer, vol. 31, no. 2, pp.106–120, 2018. DOI: 10.1080/08916152.2017.1397815.
  • A. Sözen, M. Gürü, T. Menlik, and M. Aktaş, “Utilization of blast furnace slag nano-fluids in two-phase closed thermo-syphon heat pipes for enhancing heat transfer,” Experimental Heat Transfer, vol. 30, no. 2, pp.112–125, 2016. DOI: 10.1080/08916152.2016.1179356.
  • S. M. Peyghambarzadeh, H. Hallaji, M. R. Bohloul, and N. Aslanzadeh, “Heat transfer and Marangoni flow in a circular heat pipe using self-rewetting fluids,” Experimental Heat Transfer, vol. 30, no. 3, pp.218–234, 2017. DOI: 10.1080/08916152.2016.1233148.
  • M. M. K. Bhuiya, et al., “HEAT TRANSFER AND PRESSURE DROP CHARACTERISTICS IN TURBULENT FLOW THROUGH A TUBE,” Experimental Heat Transfer, vol. 25, no. 5, pp.301–322, 2012. DOI: 10.1080/08916152.2011.623819.
  • D. Panahi, “Evaluation of Nusselt number and effectiveness for a vertical shell-coiled tube heat exchanger with air bubble injection into shell side,” Experimental Heat Transfer, vol. 30, no. 3, pp.179–191, 2017. DOI: 10.1080/08916152.2016.1233145.
  • H. Sadighi Dizaji and S. Jafarmadar, “Experiments on new arrangements of convex and concave corrugated tubes through a double pipe heat exchanger,” Experimental Heat Transfer, vol. 29, no. 5, pp.577–592, 2016. DOI: 10.1080/08916152.2015.1046015.
  • B. Raei, F. Shahraki, M. Jamialahmadi, and S. M. Peyghambarzadeh, “Different methods to calculate heat transfer coefficient in double-tube heat exchanger: A comparative study,” Experimental Heat Transfer, vol. 31, no. 1, pp.32–46, 2018. DOI: 10.1080/08916152.2017.1341963.
  • J. F. Seara, R. Diz, F. J. Uhía, A. Dopazo, and J. M. Ferro, “Experimental analysis of an air-to-air heat recovery unit for balanced ventilation systems in residential buildings,” Energy Convers Manage, vol. 52, pp. 635–640, 2011. DOI: 10.1016/j.enconman.2010.07.040.
  • C. S. An and D. H. Choi, “Analysis of heat transfer performance of cross-flow fin-tube heat exchangers under dry and wet conditions, Int,” J. Heat Mass Trans., vol. 55, pp. 1496–1504, 2012. DOI: 10.1016/j.ijheatmasstransfer.2011.10.055.
  • S. H. Nam and H. Han, “Computational modeling and experimental validation of heat recovery ventilator under partially wet conditions,” Appl. Thermal Eng., vol. 95, pp. 229–235, 2016. DOI: 10.1016/j.applthermaleng.2015.11.023.
  • P. Zhang and P. S. Hrnjak, “Air-side performance evaluation of three types of heat exchangers in dry, wet and periodic frosting conditions,” Int. J. Refrigeration, vol. 32, pp. 911–921, 2009. DOI: 10.1016/j.ijrefrig.2008.11.006.
  • M. H. Kim and C. W. Bullard, “Air-side performance of brazed aluminum heat exchangers under dehumidifying conditions,” Int. J. Refrigeration, vol. 25, pp. 924–934, 2002. DOI: 10.1016/S0140-7007(01)00106-2.
  • Z. Fang, L. Li, Y. Cheng, H. Wang, and M. O. Oladokun, “Investigation on thermal-hydraulic performance of outdoor heat exchanger in air sources heat pump,” Exp. Thermal Fluid Sci., vol. 84, pp. 28–38, 2017. DOI: 10.1016/j.expthermflusci.2017.01.008.
  • K. Kim and K. S. Lee, “Frosting and defrosting characteristics of surface-treated louvered-fin heat exchangers: effects of fin pitch and experimental conditions,” Int. J. Heat . Transfer, vol. 60, pp. 505–511, 2013. DOI: 10.1016/j.ijheatmasstransfer.2013.01.036.
  • Z. Fang, H. Wang, J. Zhang, and W. Wu, “Experimental analysis on frosting characteristic of SK-type finned refrigerating heat exchanger with large diameter circular holes,” Appl. Thermal Eng., vol. 64, pp. 192–200, 2014. DOI: 10.1016/j.applthermaleng.2013.12.030.
  • D. Huang, Z. Jing, Y. Liu, and D. Yi, “Effect of fin types of outdoor fan-supplied finned-tube heat exchanger on periodic frosting and defrosting performance of a residential air-source heat pump,” Appl. Thermal Eng., vol. 69, pp. 251–260, 2014. DOI: 10.1016/j.applthermaleng.2013.11.052.
  • S. K. Park, H. Kim, H. Ahn, and H. S. Park, “Study on the reduction of fuel consumption in the A/C system, used variable displacement swash-plate compressor and the performance improvement by field test,” ASE Technical Paper, vol. 1, pp. 0164, 2006.
  • Q. Yan and W. Shi, C. Tian Refrigeration Technology for Air Conditioning. China Architecture Building Press, Beijing, 2014.
  • Y. Zhu, X. Jin, Z. Du, B. Fan, and S. Fu, “Generic simulation model of multi-evaporator variable refrigerant flow air conditioning system for control analysis,” Int. J. Refrigeration, vol. 36, pp. 1602–1615, 2013. DOI: 10.1016/j.ijrefrig.2013.04.019.
  • A. Alpaslan and H. Murat, “Comparative performance of an automotive air conditioning system using fixed and variable capacity compressors,” Int. J. Refrigeration, vol. 33, pp. 487–495, 2010. DOI: 10.1016/j.ijrefrig.2009.12.018.
  • F. Yu and K. Chan, “Improved condenser design and condenser-fan operation for air-cooled chillers,” Appl. Energy, vol. 83, pp. 628–648, 2006. DOI: 10.1016/j.apenergy.2005.05.007.
  • P. Sarntichartsak and S. Thepa, “Modeling and experimental study on the performance of an inverter air conditioner using R410A with evaporative cooled condenser,” Appl. Thermal Eng., vol. 51, pp. 597–610, 2013. DOI: 10.1016/j.applthermaleng.2012.08.063.
  • C. A. Piedrahita-Velásquez, H. J. Ciro-Velásquez, and M. A. Gómez-Botero, “Identification and digital control of a household refrigeration system with a variable speed compressor,” Int. J. Refrigeration, vol. 48, pp. 178–187, 2014. DOI: 10.1016/j.ijrefrig.2014.09.009.
  • W. Lu, Z. Meng, Y. Sun, and H. Zhu, “Optimal fan speed and compression ratio of an air-condensed vapor-compression ammonia recycling system,” Int. J. Refrigeration, vol. 67, pp. 319–329, 2016. DOI: 10.1016/j.ijrefrig.2016.03.009.
  • Standardization administration, 'GB/T 25128-2010 Direct evaporation all fresh air handing units', Standards Press of China, Beijing, 2010.
  • G. E. P. Box and K. B. Wilson, “On the experimental attainment of optimum conditions (with discussion),” J. Royal Stat. Soc. Ser. B, vol. 13, pp. 1–45, 1951.
  • X. Shen, G. Zhang, and B. Bjerg, “Assessments of experimental designs in response surface modelling process: estimating ventilation rate in naturally ventilated livestock buildings,” Energy and Buildings, vol. 62, 570–580. 2013. 54:185-174. DOI:10.1016/j.enbuild.2013.03.038.
  • H. Chen, B. Moshfegh, and M. Cehlin, “Computational investigation on the factors influencing thermal comfort for impinging jet ventilation,” Build Environ, vol. 66, pp. 29–41, 2013. DOI: 10.1016/j.buildenv.2013.04.018.
  • K. Singh and R. Das, “Exergy optimization of cooling tower for HGSHP and HVAC applications,” Energy Conversion and Management, vol. 136, pp. 418–430, 2017. https://www.minitab.com/en-us/.
  • User's Guide of Design Expert Version 8.0.6, Stat-Ease Inc, USA, 2017.
  • M. J. Anderson and P. J. Whitcomb, RSM Simplified: Optimizing Processes Using Response Surface Methods for Design of Experiments, New York: CSC Press, 2004.
  • A. Alpaslan and H. Murat, “Comparative performance of an automotive air conditioning system using fixed and variable capacity compressors,” Int. J. Refrigeration, vol. 33, pp. 487–495, 2016.
  • L. Zhao and Q. Zhang, “Correlation with frequency of compressors and key parameters of heat pumps,” Taiyangneng Xuebao/Acta Energiae Solaris Sinica, vol. 24, pp. 311–315, 2003.
  • H. Liu, Q. Zhou, Y. Liu, P. Wang, and D. Wang, “Experimental study on cooling performance of air conditioning system with dual independent evaporative condenser,” Int. J. Refrigeration, vol. 55, pp. 85–92, 2015. DOI: 10.1016/j.ijrefrig.2015.03.012.
  • Y. Ding. Lengreyuan Gongcheng. Chemical Industry Press, Beijing, 2009.
  • Y. B. Tao, Y. L. He, W. Q. Tao, and Z. G. Wu, “Experimental study on the performance of CO2 residential air-conditioning system with an internal heat exchanger,” Energy Conversion and Management, vol. 51, pp. 64–70, 2010. DOI: 10.1016/j.enconman.2009.08.024.
  • E. Granryd, “Analytical expressions for optimum flow rates in evaporators and condensers of heat pumping systems,” Int. J. Refrigeration, vol. 33, pp. 1211–1220, 2010. DOI: 10.1016/j.ijrefrig.2010.05.009.
  • A. R. Khoei, I. Masters, and D. T. Gethin, “Design optimization of aluminium recycling processes using Taguchi technique,” J. Mater. Process. Technol., vol. 127, pp. 96–106, 2002. DOI: 10.1016/S0924-0136(02)00273-X.
  • P. G. Mathews. Design of Experiments with MINITAB. ASQ Quality Press, USA, 2005.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.