IP Library Granted Patent US 9,238,509
Granted Patent B2
US 9,238,509 · App. 13/724,554 · Granted Jan 19, 2016

Stirling engine for an emission-free aircraft

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Quick Facts
Patent No.
US 9,238,509
App. No.
13/724,554
Granted
Jan 19, 2016
Kind
B2
Abstract

Aircraft with an emission-free drive and method for emission-free driving of an aircraft. The aircraft includes a drive device structured and arranged to generate thrust, a lift device structured and arranged to generate lift, and a heat engine structured and arranged to convert thermal energy into kinetic energy to drive the drive device. The heat engine includes at least one flat-plate Stirling engine drivable by solar thermal radiation.

Claims (41)

1. An aircraft with an emission-free drive, comprising:

an aircraft thruster structured and arranged to generate thrust;

an aircraft lift device structured and arranged to generate lift; and

a heat engine, which is structured and arranged to convert thermal energy into kinetic energy to drive the aircraft thruster, comprising at least one flat-plate Stirling engine drivable by solar thermal radiation and wherein the flat-plate Stirling engine comprises:

a working chamber filled with a working gas and having a top and an underside and a changeable working volume;

a displacer structured and arranged to be moveable in the working chamber between the top and the underside;

a regenerator structured and arranged in the working chamber to collect and deliver thermal energy contained in the working gas;

a working piston connected to change a working volume of the working chamber;

an inertia element structured and arranged in a rotatable manner;

a drive structured and arranged to be connectable to the inertia element to drive the aircraft thruster; and

a transmission structured and arranged to mechanically couple the displacer and the working piston with the inertia element,

wherein the working chamber is located in the lift device and the working gas is heatable from a top of the aircraft lift device by the solar thermal radiation;

the displacer being structured and arranged to divide the working chamber into a first and a second chamber region and, with movement, to displace the working gas from one of the first and second chamber region into the other of the first and second chamber region; and

a top of the wing forming a first side of the flat-plate Stirling engine with a first temperature and the underside of the wing forming a second side of the flat-plate Stirling engine with a second temperature, in which the second temperature is lower than the first temperature.

2. The aircraft according to claim 1 , further comprising a heater structured and arranged to heat the working gas in one of the first and second chamber regions of the working chamber.

3. An aircraft with an emission-free drive, comprising:

an aircraft thruster structured and arranged to generate thrust;

an aircraft lift device structured and arranged to generate lift;

a heat engine, which is structured and arranged to convert thermal energy into kinetic energy to drive the aircraft thruster, comprising at least one flat-plate Stirling engine drivable by solar thermal radiation; and

the flat-plate Stirling engine comprising:

a working chamber filled with a working gas and having a top and an underside and a changeable working volume;

a displacer structured and arranged to be moveable in the working chamber between the top and the underside;

a regenerator structured and arranged in the working chamber to collect and deliver thermal energy contained in the working gas;

a working piston connected to change a working volume of the working chamber;

an inertia element structured and arranged in a rotatable manner;

a drive structured and arranged to be connectable to the inertia element to drive the aircraft thruster; and

a transmission structured and arranged to mechanically couple the displacer and the working piston with the inertia element,

wherein the working chamber is located in the aircraft lift device and the working gas is heatable from a top of the aircraft lift device by the solar thermal radiation;

the displacer being structured and arranged to divide the working chamber into a first and a second chamber region and, with movement, to displace the working gas from one of the first and second chamber region into the other of the first and second chamber region;

a top of the wing forming a first side of the flat-plate Stirling engine with a first temperature and the underside of the wing forming a second side of the flat-plate Stirling engine with a second temperature, in which the second temperature is lower than the first temperature; and

a heater structured and arranged to heat the working gas in one of the first and second chamber regions of the working chamber, the heater comprising an electric heater integrally embodied in the displacer that is structured and arranged to convert electric energy into thermal energy.

4. An aircraft with an emission-free drive, comprising:

an aircraft thruster structured and arranged to generate thrust;

an aircraft lift device structured and arranged to generate lift; and

a heat engine, which is structured and arranged to convert thermal energy into kinetic energy to drive the aircraft thruster, comprising at least one flat-plate Stirling engine drivable by solar thermal radiation,

a power-generator structured and arranged to generate electric energy to drive the aircraft, the power-generator comprising photovoltaic elements for converting solar radiation into electric energy, which are arranged on a top of a displacer of the at least one flat-plate Stirling engine.

5. An aircraft with at least one heat engine, the aircraft comprising:

a wing and a fuselage;

a working chamber of the at least one heat engine, having a top and an underside filled with a working gas, being located in at least one of the wing and a fuselage;

a displacer of the at least one heat engine being structured and arranged for movement between the top and the underside of the working chamber to a define a first and a second chamber region;

a heating region of the at least one heat engine being located in a region of the top of the working chamber to receive solar thermal radiation through the at least one of the wing and fuselage to heat the working gas; and an electric heater one of integral with or coupled to the displacer to heat the working gas.

Assignments (2)
CHANGE OF NAME Recorded Feb 7, 2019
From: EADS DEUTSCHLAND GMBH
To: AIRBUS DEFENCE AND SPACE GMBH
Reel/Frame 048284/0694 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2013
From: SEIFERT, JOST, DR.
To: EADS DEUTSCHLAND GMBH
Reel/Frame 030385/0364 →