Summary
Based on the numerical simulation of a ground source heat pump system, this paper presents a new optimized model, in which a synthetic economic parameter is presented as target function. Synchronously, a dynamical control method adapted the new model is adopted to improve the performance of the system. The study on the application of this method has also carried out in actual engineering. The result shows that by using this method, the ground source heat pump system has a high energy efficiency and low cost. The study in this paper provides theoretical guidance for the design and application of ground source heat pump systems.
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Pages: ICR07-E2-1218
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Details
- Original title: Study on optimizing and application of a ground source heat pump system.
- Record ID : 2008-0873
- Languages: English
- Source: ICR 2007. Refrigeration Creates the Future. Proceedings of the 22nd IIR International Congress of Refrigeration.
- Publication date: 2007/08/21
Links
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Indexing
- Themes: Heat pumps techniques
- Keywords: Software; Ground-water; Calculation; Design; Heat pump; Performance
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Development of a design and performance predict...
- Author(s) : NAGANO K., KATSURA T., TAKEDA S.
- Date : 2006/10
- Languages : English
- Source: Applied Thermal Engineering - vol. 26 - n. 14-15
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A study on a design and performance prediction ...
- Author(s) : NAGANO K., KATSURA T.
- Date : 2005/08
- Languages : Japanese
- Source: Transaction of the Society of Heating, Air-conditioning and Sanitary Engineers of Japan - n. 101
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Optimal design of heat pumps by mechanical comp...
- Author(s) : LINARES J. I.
- Date : 2002/08/26
- Languages : English
- Formats : PDF
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Development of a design and performance predict...
- Author(s) : NAGANO K., KATSURA T., NOGAWA T., et al.
- Date : 2005/05/02
- Languages : English
- Source: 8th IEA Heat Pump Conference 2005: global advances in heat pump technology, applications, and markets. Conference proceedings [CD-ROM].
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Heat transfer of horizontal parallel pipe groun...
- Author(s) : DEMIR H., KOYUN A., TEMIR G.
- Date : 2009/02
- Languages : English
- Source: Applied Thermal Engineering - vol. 29 - n. 2-3
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