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Reliability and availability analysis of redundant BCHP (building cooling, heating and power) system

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  • Wang, Jiang-Jiang
  • Fu, Chao
  • Yang, Kun
  • Zhang, Xu-Tao
  • Shi, Guo-hua
  • Zhai, John

Abstract

Failure of a component in BCHP (building cooling, heating and power) system may result in failure of a sub-system or of the whole system. The reliability and availability analysis of BCHP system is helpful to the designer to decide the redundancy in case of equipment failure. This paper presents the redundant design of BCHP system and its operation mode. The SSM (state-space method) combined to the probabilistic analysis of Markov model, is employed to analyze the reliabilities of three forms of energy supply including electricity, heat and cool in BCHP system. The failure rate, the repair rate, the availability and the MTBF (mean time to failure) of the redundant and non-redundant BCHP systems are deduced and analyzed respectively. Then, a numerical case for the reliability analysis of the redundant and non-redundant BCHP systems is compared to the SP (separation production) system. Finally, the calculation results indicate that the reliability of the redundant BCHP system compared to the SP system obviously increases, and the failure rates of the electricity, heat and cool supplies decrease 99.63%, 94.30% and 99.97% respectively.

Suggested Citation

  • Wang, Jiang-Jiang & Fu, Chao & Yang, Kun & Zhang, Xu-Tao & Shi, Guo-hua & Zhai, John, 2013. "Reliability and availability analysis of redundant BCHP (building cooling, heating and power) system," Energy, Elsevier, vol. 61(C), pages 531-540.
  • Handle: RePEc:eee:energy:v:61:y:2013:i:c:p:531-540
    DOI: 10.1016/j.energy.2013.09.018
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    1. Wang, Jiang-Jiang & Jing, You-Yin & Zhang, Chun-Fa & Zhai, Zhiqiang (John), 2011. "Performance comparison of combined cooling heating and power system in different operation modes," Applied Energy, Elsevier, vol. 88(12), pages 4621-4631.
    2. Jing, You-Yin & Bai, He & Wang, Jiang-Jiang, 2012. "Multi-objective optimization design and operation strategy analysis of BCHP system based on life cycle assessment," Energy, Elsevier, vol. 37(1), pages 405-416.
    3. Wang, Jiangjiang & Zhai, Zhiqiang John & Zhang, Chunfa & Jing, Youyin, 2010. "Environmental impact analysis of BCHP system in different climate zones in China," Energy, Elsevier, vol. 35(10), pages 4208-4216.
    4. Ebrahimi, Masood & Keshavarz, Ali, 2013. "Sizing the prime mover of a residential micro-combined cooling heating and power (CCHP) system by multi-criteria sizing method for different climates," Energy, Elsevier, vol. 54(C), pages 291-301.
    5. Wang, Jiang-Jiang & Jing, You-Yin & Zhang, Chun-Fa, 2010. "Optimization of capacity and operation for CCHP system by genetic algorithm," Applied Energy, Elsevier, vol. 87(4), pages 1325-1335, April.
    6. Hao, Xiaoli & Zhang, Guoqiang & Chen, Youming, 2007. "Role of BCHP in energy and environmental sustainable development and its prospects in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 11(8), pages 1827-1842, October.
    7. Wu, Jing-yi & Wang, Jia-long & Li, Sheng, 2012. "Multi-objective optimal operation strategy study of micro-CCHP system," Energy, Elsevier, vol. 48(1), pages 472-483.
    8. Wang, Jiangjiang & Zhai, Zhiqiang (John) & Jing, Youyin & Zhang, Chunfa, 2010. "Optimization design of BCHP system to maximize to save energy and reduce environmental impact," Energy, Elsevier, vol. 35(8), pages 3388-3398.
    9. Frangopoulos, Christos A. & Dimopoulos, George G., 2004. "Effect of reliability considerations on the optimal synthesis, design and operation of a cogeneration system," Energy, Elsevier, vol. 29(3), pages 309-329.
    10. Xu, Jianzhong & Sui, Jun & Li, Bingyu & Yang, Minlin, 2010. "Research, development and the prospect of combined cooling, heating, and power systems," Energy, Elsevier, vol. 35(11), pages 4361-4367.
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