Thermodynamik & Wärmetechnik

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Thermodynamik & Wärmetechnik

Lutz Kaiser

About Thermodynamik & Wärmetechnik

In the current version, calculates equations of the following categories:

entropy

Cycle of ideal gases
Gas turbine processes

Thermodynamics
- Thermal equation of state of ideal gases
- Caloric equations of state
- heat capacities
- polytropic exponents
- Incompressible pipe flow
- Stationary flow process (1st HS)
- Mixture of ideal gases

Thermal engineering
- Conservation of energy law GES friction
- Energy conservation law SFP friction
- exergy

Heat transfer
- Condensation of still vapors
- heat transfer evaporation
- Dimensionless key figures (e.g. Re, Gr)
- Heat transfer coefficients on external surfaces
- Heat transfer with pipe flow
- Heat transfer concentric annular gap
- Transient processes
- heat conduction
- heat exchangers

Water and steam
Change of state of ideal gases (GES / SFP)
- isochore
- Isobar
- isothermal
- Isentrop
- polytropic

In addition, detailed overview information.
Thermodynamik & Wärmetechnik Screenshots
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