Data centers today contain more computing and networking equipment than ever before. As a result, a higher amount of cooling is required to maintain facilities within operable temperature ranges. Increasing amounts of resources are spent to achieve thermal control, and tremendous potential benefit lies in the optimization of the cooling process. This paper describes a study performed on data center thermal management systems using the thermodynamic concept of exergy. Specifically, an exergy analysis has been performed on sample data centers in an attempt to identify local and overall inefficiencies within thermal management systems. The development of a model using finite volume analysis has been described, and potential applications to real-world systems have been illustrated. Preliminary results suggest that such an exergy-based analysis can be a useful tool in the design and enhancement of thermal management systems.
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ASME 2003 International Mechanical Engineering Congress and Exposition
November 15–21, 2003
Washington, DC, USA
Conference Sponsors:
- Advanced Energy Systems Division
ISBN:
0-7918-3708-4
PROCEEDINGS PAPER
Exergy Analysis of Data Center Thermal Management Systems
Amip J. Shah,
Amip J. Shah
University of California at Berkeley, Berkeley, CA
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Van P. Carey,
Van P. Carey
University of California at Berkeley, Berkeley, CA
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Cullen E. Bash,
Cullen E. Bash
Hewlett Packard Laboratories, Palo Alto, CA
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Chandrakant D. Patel
Chandrakant D. Patel
Hewlett Packard Laboratories, Palo Alto, CA
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Amip J. Shah
University of California at Berkeley, Berkeley, CA
Van P. Carey
University of California at Berkeley, Berkeley, CA
Cullen E. Bash
Hewlett Packard Laboratories, Palo Alto, CA
Chandrakant D. Patel
Hewlett Packard Laboratories, Palo Alto, CA
Paper No:
IMECE2003-42527, pp. 437-446; 10 pages
Published Online:
May 12, 2008
Citation
Shah, AJ, Carey, VP, Bash, CE, & Patel, CD. "Exergy Analysis of Data Center Thermal Management Systems." Proceedings of the ASME 2003 International Mechanical Engineering Congress and Exposition. Advanced Energy Systems. Washington, DC, USA. November 15–21, 2003. pp. 437-446. ASME. https://doi.org/10.1115/IMECE2003-42527
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