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There has been extensive work on conceptual models and numerical simulations of supercritical geothermal systems.
In this section, the data, models, and numerical tool are described.
These differences are due to many factors, including approximations and assumptions used in the models, and numerical parameter mismatches.
We compared numerical solutions obtained with this approach with analytical models and numerical solutions obtained with other techniques.
The research in this field is advanced through experimental data collection, engineering models, and numerical simulations.
These methods are mainly based on results from small scale models and numerical analyses.
Mathematical models and numerical analysis are based on a modified finite element method.
In addition, intake and fuel control parameters were optimally calibrated using regression models and numerical optimization.
The development of improved material models and numerical methods is needed.
The results obtained are compared with solutions derived from other models and numerical techniques.
Several turbulence models and numerical schemes are used to validate the method.
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