Feasibility analysis and capability characterization of a novel hybrid flash-binary geothermal power plant and trigeneration system through a case study

Yan Cao, Dayong Xu, Hussein Togun, Hayder A. Dhahad, Hossein Azariyan, Naeim Farouk

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

This study presents and evaluates the feasibility of a novel hybridization of modified Kalina cycle, reverse osmosis desalination, and low-temperature water electrolysis utilizing geothermal energy to yield power, distilled water, and hydrogen, respectively. The scientific impact of the current work has been improved considering the features of Sabalan flash-binary geothermal wells in Iran as a real model through a case study. In addition to designing a novel setup, the smart use of multi-heat recovery technique, modifying the base cycle, and utilizing a part of generated distilled water to produce hydrogen by the electrolyzer are the other structural originalities, distinguishing the current work from the previous studies. The suggested system is scrutinized via a parametric study and optimized based on a genetic algorithm. The parametric study demonstrated that the highest sensitivity of varying the performance criteria of the whole system is attributed to the change in flash tank pressure. Moreover, the multi-objective optimization led to achieving the exergy efficiency and trigeneration gain output ratio as 51.3% and 1.7 for the system, respectively. Furthermore, the system was able to produce 4795 kW of power, 5.3 kg/h of hydrogen, and 19.9 kg/s of distilled water.

Original languageEnglish
Pages (from-to)26241-26262
Number of pages22
JournalInternational Journal of Hydrogen Energy
Volume46
Issue number52
DOIs
StatePublished - 29 Jul 2021

Keywords

  • Feasibility analysis
  • Low-temperature water electrolysis
  • Multi-heat recovery
  • Multi-objective optimization
  • Reverse osmosis desalination
  • Sabalan flash-binary geothermal wells

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