Experimental Evaluation of Binary and Combined Cycle Geothermal Power Plants Operating with Optimised Working Fluids

محتوى المقالة الرئيسي

E.P. Khaleeva
N.A. Ashurov
B. Uzokov
Yu.V. Daus
M.S. Demchenko
S.V. Sargsyan

الملخص

This study presents a comprehensive experimental and analytical assessment of geothermal power plant configurations utilizing binary and combined-cycle systems for the efficient generation of electricity from low- and medium-temperature geothermal resources. The research used a modular geothermal energy block equipped with an ORMAT Model 3G-250 unit and various working fluids, including R245fa, isobutane, R134a, and R227ea. Experimental scenarios simulated geothermal water temperatures ranging from 95 to 175°C under different condensation and load conditions. The results demonstrated that the combined cycle, integrating a dry saturated steam turbine with an organic Rankine cycle, achieved the highest performance, with a peak electrical output of 305 kW and a thermal efficiency of 15.9%. Binary configurations operating on R245fa–isobutane mixtures exhibited a 5–7% higher specific electricity yield than pure R134a. Additionally, lowering the ambient air temperature for condenser cooling enhanced output power by up to 15.7%. The findings highlight the significant advantages of optimised working fluid compositions and regenerative heating in improving efficiency.  These findings validate the thermodynamic feasibility of binary and combined-cycle configurations for sustainable power generation, demonstrating superior conversion efficiencies particularly when valorizing low-to-medium enthalpy geothermal reservoirs.

تفاصيل المقالة

القسم

Special Issue

المراجع

Glinscaya A, Tynchenko V, Kukartseva O, Suprun E, Nizameeva A. Comparative Analysis of Compressed Air Production Equipment. E3S Web of Conferences 2024; 549:05009.

Brigida V, Golik VI, Voitovich EV, Kukartsev VV, Gozbenko VE, Konyukhov VY, Oparina TA. Technogenic Reservoirs Resources of Mine Methane When Implementing the Circular Waste Management Concept. Resources 2024; 13:33.

Bertani R. Geothermal Energy: An Overview of Resources and Potential. Renewables 2020: Global Status Report, REN21 2022.

Podgornyj Y, Skeeba V, Martynova T, Rozhnov E, Yulusov I. Synthesis of the Heddle Drive Mechanism. Obrabotka Metallov 2024; 26(1):80–98.

Malozyomov BV, Tynchenko VS, Kukartsev VA, Bashmur KA, Panfilova TA. Investigation of Properties of Laminar Antiferromagnetic Nanostructures. CIS Iron and Steel Review 2024; 27(1):84–90.

Zaalishvili VB, Melkov DA, Martyushev NV, Klyuev RV, Kukartsev VV, Konyukhov VY, Kononenko RV, Gendon AL, Oparina TA. Radon Emanation and Dynamic Processes in Highly Dispersive Media. Geosciences 2024; 14:102.

Panfilova T, Tynchenko V, Kukartseva O, Kozlova A, Glinscaya A. Modernisation of Electronic Document Management and Systems Analysis Processes Using an Automated Platform. E3S Web of Conferences 2024; 549:09018.

Martyushev N, Kozlov V, Qi M, Han Z, Bovkun A. Milling Martensitic Steel Blanks Obtained Using Additive Technologies. Obrabotka Metallov 2023; 25(4):74–89.

IPCC Special Report on Renewable Energy Sources and Climate Change Mitigation. Cambridge University Press; 2011:404.

Enhanced Geothermal System (EGS). NREL ATB 2024.

Ayyad S, Bani Baker M, Handam A, Al-Smadi T. Reducing the Highway Networks' Energy Bills Using Renewable Energy System. Civil Engineering Journal (Iran) 2023; 9(11):2914–2926.

Ivanova EV, Martyushev NV, Musatova AI, Kukartsev VV, Karlina AI. Multivariate Approach to Justifying a Rational Payback Period for an Investment Project of an Electric Steelmaking Shop. Chernye Metally 2023; 2023(8):74–80.

Tynchenko YA, Kukartsev VV, Gladkov AA, Panfilova TA. Assessment of Technical Water Quality in Mining Based on Machine Learning Methods. Sustainable Development of Mountain Territories 2024; 16(1):56–69.

Shale Drilling Techniques Could Lead to a Geothermal Surge. Reuters 2024.

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