Gas-Driven Piston Undergoing Simple Harmonic Oscillation
Gas-Driven Piston Undergoing Simple Harmonic Oscillation
This Demonstration shows simple harmonic oscillation of an isothermal ideal gas in a piston being driven by a pressure gradient. The piston is assumed to be frictionless and thermal effects of successive expansion and compression of the gas are neglected. This idealized system is a perpetual motion machine!
With the spring portion of the cylinder held at vacuum and the remaining portion at some initial pressure ), the piston is displaced by an initial amplitude (α). The ideal gas in the cylinder is assumed to be isothermal by temperature equilibrating with the outside instantaneously as the piston oscillates. The initial displacement would cause the piston to undergo simle harmonic oscillation even without the presence of the ideal gas. The ideal gas, therefore, acts as a driving force for the simple harmonic oscillation. In the limit, when the inital volume of the ideal gas is much greater than the oscillation of the piston, only a component of the initial pressure of the ideal gas acts as the driving force, and the frequency of oscillation is amended from simple mass-spring behavior to include components of the pressure and volume from the ideal gas. Details of the derivation are given below.
(
p
0