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Geothermal binary plants are among the most benign of all power plants regarding environmental impact.
Exploitation of lower temperature, water-dominated geothermal fields is analyzed, and a methodology for optimizing geothermal binary plants is discussed.
The conventional geothermal power plants use the brines directly (single flash power plants, dual flash power plants, dry steam power plants) or indirectly (closed loop binary plants).
On a typical resource for binary plants, an analysis has been performed to evaluate the effect of different separation pressures on cycle selection.
Selecting the best design options for turbo-expanders to be used in Organic Rankine Power Cycle applications is a difficult task, with special reference to the low-temperature applications (T < 150 °C) which are relevant for specific fields in rapid development (geothermal binary plants, solar thermal energy conversion systems).
Binary plants have no emissions.
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The hot water is used to generate electricity when the steam that it produces circulates through turbines, in a steam-turbine plant, or when heated water or steam heats a secondary liquid that runs through the turbine, in a binary plant.
Fig. 4 Pressure-enthalpy diagram for a binary plant.
This gives a basis of comparison for all other types of binary plant.
This design decision has great implications for the performance of a binary plant.
A combined concentrating solar power system and a geothermal binary plant based on an Organic Rankine Cycle (ORC) is analyzed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com