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Original Articles

Grey relational analysis of an integrated cascade utilization system of geothermal water

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References

  • Ahmadi, M., A. Mohammadi, and S. Dehghani. 2013. Multi-objective thermodynamic-based optimization of output power of Solar Dish-Stirling engine by implementing an evolutionary algorithm. Energy Conversion and Management 75:438–45.
  • Arslan, O. and R. Kose. 2010. Exergoeconomic optimization of integrated geothermal system in Simav, Kutahya Original Research Article. Energy Conversion and Management 51(4):663–76.
  • Astolfi, M., L. Xodo, and M. Romano. 2011. Technical and economical analysis of a solar–geothermal hybrid plant based on an Organic Rankine Cycle. Geothermics 40(1):58–68.
  • Bertani, R. 2012. Geothermal power generation in the world 2005–2010 update report. Geothermics 41:1–29.
  • Deng, J. 1982. Control problems of grey systems. Systems and Control Letters 1:288–94.
  • Dipippo, R. 2004. Second law assessment of binary plants generating power from low-temperature geothermal fluids. Geothermics 33:565–86.
  • Elı´asson, E. and O. Björnsson. 2003. Multiple integrated applications for low-to medium-temperature geothermal resources in Iceland. Geothermics 32:439–50.
  • Fang, Y. and Y. Zeng. (2007). Balancing energy and environment: The effect and perspective of management instruments in China. Energy 32:2247–61.
  • Farshi, L., S. Mahmoudi, and M. Rosen. 2013. Exergoeconomic analysis of double effect absorption refrigeration systems. Energy Conversion and Management 65:13–25.
  • Feng, X., B. Zhang, and W. Long. 2006. An analysis of the ash correlation of various factors influencing the cost-effectiveness of a combined refrigeration, heat and power trigeneration system. Journal of Engineering for Thermal Energy & Power 21(4):342–44 ( in Chinese).
  • Guo,T., H. Wang, and S. Zhang. 2011. Fluids and parameters optimization for a novel cogeneration system driven by low-temperature geothermal sources. Energy 36:2639–49.
  • He, J., D. Wang, and Z. Jiang. 1998. The mathematics model about the intermediate pressure of two-stage LiBr refrigerating cycle for using the low potential energy. Journal of Nanjing Architectural and Civil Engineering Institute 45: 55–59( in Chinese).
  • Heberle, F. and D. Brüggemann. 2010. Exergy based fluid selection for a geothermal organic Rankine cycle for combined heat and power generation. Applied Thermal Engineering 30:1326–32.
  • IEA(International Energy Agency). 2011. Technology roadmap geothermal heat and power. Tech. Rep. International Energy Agency. Paris, France.
  • Jiang, H. and S. Zhang. 2005. Improved AHP method for optimal selection of the air-conditioning cooling and heating source. Fluid Machinery 33(5):67–69 ( in Chinese).
  • Kanoğlu, M. and Y. Çengel. 1999. Economic evaluation of geothermal power generation, heating, and cooling. Energy 24:501–09.
  • Lin, Q. 2007. Application of fuzzy semantic distance to heat source system scheme selection. Engineering Journal of Wuhan University 40 (2):115–20( in Chinese).
  • Lund, J., D. Freeston, and T. Boyd. 2011. Direct utilization of geothermal energy 2010 worldwide review. Geothermics 40:159–80.
  • Ma, W. and S. Deng. 1996. Theoretical analysis of low-temperature hot source driven two-stage LiBr/H2O absorption refrigeration system. International Journal of Refrigeration 19:141–46.
  • Mehleri, E., H. Sarimveis, and N. Markatos. 2012. A mathematical programming approach for optimal design of distributed energy systems at the neighbourhood level. Energy. 44(1):96–104.
  • Pablo, A., C. Fidel, and P. Juan. 2014. An AHP (Analytic Hierarchy Process)/ANP (Analytic Network Process)-based multi-criteria decision approach for the selection of solar-thermal power plant investment projects. Energy,( in Press).
  • Pilavachi, P., C. Roumpeas, and S. Minett. 2006. Multi-criteria evaluation for CHP system options. Energy Conversion and Management 47(20):3519–29.
  • Ratlamwala, T., I. Dincer, and M. Gadalla. 2012. Performance analysis of a novel integrated geothermal-based system for multi-generation applications. Applied Thermal Engineering 40:71—79.
  • Saaty, T. 1980. The Analytic Hierarchy Process. Planning, Priority Setting, Resource Allocation. New York: McGraw-Hill.
  • Sayyaadi, H., E. Amlashi, and M. Amidpour. 2009. Multi-objective optimization of a vertical ground source heat pump using evolutionary algorithm. Energy Conversion and Management 50(8):2035–46.
  • Sayyaadi, H. and M. Nejatolahi. 2011. Multi-objective optimization of a cooling tower assisted vapor compression refrigeration system. International Journal of Refrigeration 34(1):243–56.
  • Tosun, N. 2006. Determination of optimum parameters for multi-performance characteristics in drilling by using grey relational analysis. The International Journal of Advanced Manufacturing Technology 28(5):450–55.
  • Wang, J., C. Zhang, and Y. Jing. 2008. Using the fuzzy multi-criteria model to select the optimal cool storage system for air conditioning. Energy and Buliding 40(11):2059–66.
  • Wei, B., S. Wang, and L. Li. 2010. Fuzzy comprehensive evaluation of district heating systems. Energy Policy 38(10):5947–55.
  • Xu, J. 2006. Comprehensive analysis of the CCHP cogeneration system. China University of Petroleum, Dongying, China ( in Chinese).
  • Zhang, S., S. Liu, and R. Zhai. 2011. An extended GRA method for MCDM with interval-valued triangular fuzzy assessments and unknown weights. Computers & Industrial Engineering 61(4):1336–41.
  • Østergaard, P. 2012. Comparing electricity, heat and biogas storages’ impacts on renewable energy integration. Energy 37:255–62.

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