Nova Patents
CA2685089C

Energy transfer machine with inner rotor

Abstract

An energy transfer machine, for example, a positive displacement internal combustion device, has a fixed or rotating outer housing, an internal rotating carrier and one or more inner rotors with rotational axes which are offset from the inner rotor carrier rotational axis. Circumferentially expandable projections from the outer housing and rotor mesh with each other to define variable volume chambers.

CA2685089C, drawing sheet 1
Sheet 1 of 19

Term

0.6 yearsleft in the term

Expires 27 April 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

30 claims: 14 independent, 16 dependent

  1. 1
    CA 02685089 2014-10-28 THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. An energy transfer machine, comprising: a carrier secured within an annular housing, the annular housing having inward projections, the annular housing and carrier arranged for rotation in relation to each other in use;at least one inner rotor secured for rotation about a rotor axis within the carrier, the inner rotor having outward projections;the inward projections projecting inward and the outward projections projecting outward to mesh with each other and define variable volume chambers between the inward projections and the outward projections as the inner rotor rotates within the carrier;the outward projections of the inner rotor being circumferentially expandable under radially inward pressure;and fluid transfer passages on at least one of the outer housing and carrier to permit flow of fluid into and out of the variable volume chambers.
  2. 9
    The energy transfer machine of any one of claims 4-7 further comprising a spring to bias the primary foot and secondary foot apart.
  3. 10
    The energy transfer machine of any one of claims 3-9 further comprising pressure equalization passages extending through the outward projections.
  4. 11
    The energy transfer machine of any one of claims 3-10 in which the primary foot and secondary foot are separated by a slot defined by walls of the primary foot and secondary foot on which inward radial pressure bears during operation.
  5. 12
    The energy transfer machine of any one of claims 1-11 arranged as an engine.
  6. 14
    The energy transfer machine of any one of claims 1-13 in which each outward projection is provided with a leg and terminates in a foot connected to the leg.
  7. 15
    The energy transfer machine of any one of claims 1-11 arranged as a pump, with the fluid transfer passages comprising one-way valves in the outer housing. CA 02685089 2014-10-28
  8. 16
    A method of operating an energy transfer machine, comprising the steps of:causing an inner rotor to rotate about a rotor axis within a rotating carrier, where the carrier is arranged to rotate in relation to an annular housing, with circumferentially expandable outward projections on the inner rotor meshing with inward projections on the annular housing to create variable volume chambers between the inward projections and the outward projections as the inner rotor rotates within the carrier;in which the inner rotor is caused to rotate by expansion of gases within the variable volume chambers or by rotation of the carrier;radially inward pressure in the variable volume chambers causing the circumferentially expandable outward projections to expand circumferentially and contact the inward projections on the annular housing;and fluid transfer passages on at least one of the outer housing and carrier permit flow of fluid into and out of the variable volume chambers.
  9. 24
    The method of any one of claims 19-22 in which the outward projections each further comprise a spring to bias the primary foot and secondary foot apart.
  10. 25
    The method of any one of claims 18-24 in which there are pressure equalization passages extending through the outward projections.
  11. 26
    The method of any one of claims 18-25 in which the primary foot and secondary foot are separated by a slot defined by walls of the primary foot and secondary foot on which inward radial pressure bears during operation.
  12. 27
    The method of any one of claims 16-26 in which the energy transfer machine is operated as an engine.
  13. 29
    The method of any one of claims 16-28 in which each outward projection is provided with a leg and terminates in a foot connected to the leg.
  14. 30
    The method of any one of claims 16-26 in which the energy transfer machine is operated as a pump, with the fluid transfer passages comprising one-way valves in the outer housing.