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Nov 9, 2023 · In this study, advanced exergy and exergoeconomic analysis are applied to an Organic Rankine Cycle (ORC) for waste heat recovery to identify ...
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Mar 3, 2024 · The exergy efficiency of both systems decreases with the increase of the evaporation temperature of the ORC. The net power output, the ...
Missing: q= https:// 374935001_Advanced_Exergy- Based_Analysis_of_an_Organic_Rankine_Cycle_ORC_for_Waste_Heat_Recovery
In this study, advanced exergy and exergoeconomic analysis are applied to an Organic Rankine Cycle (ORC) for waste heat recovery to identify ...
Dec 26, 2020 · The study analyzes exergy and energy by applying environment-friendly newly developed refrigerants. Initially, a thermodynamic model has ...
Missing: 374935001_Advanced_Exergy- Based_Analysis_of_an_Organic_Rankine_Cycle_ORC_for_Waste_Heat_Recovery
This technology is a new opportunity for industries and alternative solution for clean power generation. This paper recalls ORC principles, outlines challenges ...
Missing: 374935001_Advanced_Exergy- Based_Analysis_of_an_Organic_Rankine_Cycle_ORC_for_Waste_Heat_Recovery
The Organic Rankine cycle (ORC) is named for its use of an organic, high molecular mass fluid with a liquid-vapor phase change, or boiling point,.
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In this study, the effect of turbine inlet temperature change on organic fluid performance in three different Organic Rankine Cycle (ORC) models designed ...
Missing: https:// 374935001_Advanced_Exergy- Based_Analysis_of_an_Organic_Rankine_Cycle_ORC_for_Waste_Heat_Recovery
\This chapter presents an overview of the current state of the art in the ORC technology and exposes the main target applications. The modelling of such a cycle ...
Missing: 374935001_Advanced_Exergy- Based_Analysis_of_an_Organic_Rankine_Cycle_ORC_for_Waste_Heat_Recovery
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