Nova Patents
EP2201219A1

Electromagnetic engine

Abstract

This record has no abstract on file.

Term

2 yearsto projected expiry

Projected expiry 3 October 2028, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

58 claims: 7 independent, 51 dependent

  1. 1
    Claims of equivalent WO 2009045521 A1 CLAIMS 1. An internal combustion engine, comprising:a first piston slidably disposed in a first cylinder, the first cylinder having a closed end;a first port configured to admit a reactant to the first cylinder;and a first converter operable with the first piston to convert mechanical energy of the first piston from and to electrical energy within a piston cycle.
  2. 35
    A method of operating an internal combustion engine including a first piston slidably disposed in a first cylinder and a first converter operable with the first piston to convert mechanical energy of the first piston from and to electrical energy, the method comprising:introducing a reactant into a closed end of the first cylinder;applying electrical energy to the first converter to slide the first piston in the first cylinder toward the closed end;triggering a chemical reaction of the introduced reactant, thereby transforming chemical potential energy to mechanical energy of the first piston;and converting the mechanical energy of the first piston to electrical energy via the first converter.
  3. 36
    An internal combustion engine, comprising:a first cylinder having a first closed end and a second closed end;a first piston slidably disposed in the first cylinder;a first port disposed proximate to the first closed end of the first cylinder;a second port disposed proximate to the second closed end of the cylinder;and a first converter operable with the first piston to convert mechanical energy of the first piston from and to electrical energy.
  4. 42
    A method of operating an internal combustion engine including a first piston slidably disposed in a first cylinder having a first and a second closed end; and a first converter operable with the first piston to convert mechanical energy of the first piston from and to electrical energy, the method comprising:a) introducing a first quantity of reactant into the first closed end of the first cylinder;b) applying electrical energy to the first converter to slide the first piston in the first cylinder toward the first closed end;c) reacting the introduced first quantity of reactant, thereby inducing movement of the first piston toward the second closed end;d) converting mechanical energy of the first piston to electrical energy via the converter as the first piston moves toward the second closed end;e) introducing a second quantity of reactant into the second closed end of the first cylinder;f) applying electrical energy to the first converter to slide the first piston in the first cylinder toward the second closed end;g) reacting the introduced second quantity of reactant, thereby inducing movement of the first piston toward the first closed end;and h) converting mechanical energy of the first piston to electrical energy via the first converter as the first piston moves toward the first closed end.
  5. 46
    An internal combustion engine, comprising:a first cylinder having a first piston and a second piston slidably disposed therein;a first port arranged to admit a reactant into the first cylinder between the first and second pistons;and a first converter operable with the first piston to convert mechanical energy of the first piston to electrical energy.
  6. 54
    A method of operating an internal combustion engine including a first piston and a second piston slidably disposed in a first cylinder and a first converter operable with the first piston to convert mechanical energy of the first piston to and from electrical energy, the method comprising:introducing a reactant into the first cylinder between the first and second pistons;applying electrical energy to the first converter to slide the first piston in the first cylinder toward the second piston;reacting the reactant, thereby transforming chemical potential energy to mechanical energy of the first and second pistons;and converting the mechanical energy of the first piston to electrical energy via the first converter.
  7. 58
    A method of retrofitting an internal combustion engine for electrical power generation, the internal combustion engine having a plurality of pistons connected to a common crankshaft, the method comprising:applying to a piston a power converter, wherein the power converter is operable to convert mechanical energy of the piston to and from electrical energy.