Tag: Thermodynamics
-
Examines the application of the gas laws to Air Compressors and Motors.
-
The application of the gas laws to Air Motors.
-
The ideal thermodynamic cycle
-
An introduction to the critical temperature and the critical pressure of a working substance.
-
Calculation of dew point based on a temperature.
-
Computes the total energy radiated by a body with given parameters.
-
A discussion on the expansion and compression of ideal gases, also considering the particular cases of isothermal and adiabatic processes
-
An introduction to the first law of thermodynamics, and discussing the general energy equation and its application to particular cases.
-
Calculates the convective heat flow per unit area of a fluid.
-
Computes the radiative heat flow between an enclosing surface and a body found inside it.
-
Computes the radiative heat flow between two plane surfaces that are separated by a non-absorptive medium.
-
Computes the radiative heat flow between two plane surfaces that are separated by a number of absorptive thin shields.
-
A brief introduction to heat entropy and isentropic processes.
-
Computes the temperature inside a thin homogeneous cylindrical wall.
-
Computes the temperature at a given distance within a thin planar homogeneous wall.
-
Computes the temperature inside a thin homogeneous spherical wall.
-
A discussion on the thermodynamic cycles of internal combustion engines, including the Otto cycle, the Joule cycle, and the Diesel cycle.
-
Computes the temperatures at contact surfaces between the layers of a cylindrical non-homogeneous wall.
-
Computes the temperatures at contact surfaces between the layers of a planar non-homogeneous wall.
-
Computes the temperatures at contact surfaces between the layers of a spherical non-homogeneous wall.
-
Returns the Nusselt number for a fluid flowing over a pipe.
-
Returns the Nusselt number for a fluid going over a flat surface.
-
Returns the Nusselt number for a fluid going through a pipe.
-
Module containing parameters used in the convective heat transfer modules.
-
Compute the pressure due to a volume of gas.
-
An analysis of thermodynamically reversible processes, and discussing the work done in a reversible process.
-
An introduction to the second law of thermodynamics, and discussing Carnot's theorem.
-
An introduction to the thermodynamics of ideal gases, and discussing the ideal gas laws.
-
An introduction to thermodynamic cycles, and discussing the Carnot cycle.
-
Heat exchangers, cross flow, parallel flow, and counter flow.