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MATERIĀ
1. Concepts and Physical Basics
- Thermal structure of the Earth
- Thermodynamic state functions (Gibbs equations, Maxwell relations)
- Energy budget of the Earth
- Thermal regime of the Earth, plate tectonics and geothermal systems
- Heat transport by diffusion (steady state: conduction) and fluid-driven advection
- Thermal conductivity and diffusivity
- Specific heat capacity and thermal capacity
- Radiogenic heat generation rate
- Temperature and thermal conductivity
- Specific heat capacity
- Radiogenic heat generation rate
- Porosity and density
- Temperature corrections regarding
- Natural steady-state and transient effects
- Calculation of temperature gradient
- Definition of geothermal energy
- Types of geothermal resources
- Direct use of geothermal heat
- Space heating and cooling
- Commercial and industrial applications
- Technological and economical aspects of direct use
- Geothermal reservoir development
- Integrating of structural, geological, and geophysical data into a numerical model for simulating
- Flow and heat transport in geothermal reservoirs
- Step-out exploration and field development
- Geothermal power generation: Technological and economical aspects of geothermal power generation
- Natural steam power plants
- Binary power plants
- Power plants for Hot Dry Rock or Enhanced Geothermal Systems
- Technical, economic and ecological aspects
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