Feasibility analysis and capability characterization of a novel hybrid flash-binary geothermal power plant and trigeneration system through a case study
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference61 articles.
1. Thermodynamic analysis and life cycle assessment of supercritical pulverized coal-fired power plant integrated with No. 0 feedwater pre-heater under partial loads;Han;J Clean Prod,2019
2. Thermodynamic optimization and equipment development for a high efficient fossil fuel power plant with zero emissions;Rogalev;J Clean Prod,2019
3. A new LQG optimal control strategy applied on a hybrid wind turbine/solid oxide fuel cell/in the presence of the interval uncertainties;Yu;Sustain. Energy, Grids Networks,2020
4. Double-flash enhanced Kalina-based binary geothermal power plants;Rostamzadeh,2021
5. Investigating potential benefits of a salinity gradient solar pond for ejector refrigeration cycle coupled with a thermoelectric generator;Rostamzadeh;Energy,2019
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