Hybrid propulsion power system for aerial vehicles
This disclosure generally relates to a hybrid solid-state propulsion system for aerial vehicles. The hybrid propulsion system includes a combustor, a thermophotovoltaic generator, and a thermoelectric generator. The combustor burns a chemical based fuel to produce radiation and heat that are converted into electricity used to power the aerial vehicle. The thermophotovoltaic generator is positioned to receive radiation and remnant heat generated by flames in the combustor while the thermoelectric generator receives heat from exhausted flue gases from the combustor.
1. A propulsion system for an aerial vehicle, the aerial vehicle comprising:
a combustor configured to combust air and a fuel thereby generating exhaust gases and electromagnetic radiation;
an emitter configured to receive the electromagnetic radiation, the emitter configured to reflect infrared radiation with a wavelength greater than 1500 nm into the combustor, the emitter further configured to emit only radiation with a wavelength between 500 nm and 1500 nm to at least one photovoltaic cell, wherein the at least one photovoltaic cell generates electrical power for an electric motor that drives a propeller to propel the aerial vehicle;
an exhaust duct to flow the exhaust gases from the combustor to a thermoelectric generator, wherein the thermoelectric generator generates electrical power for the electric motor.
2. The propulsion system of claim 1 , wherein the emitter includes a first layer containing platinum, a metal mesh, and a second layer containing a rare earth oxide.
3. The propulsion system of claim 1 , wherein the emitter includes a first layer containing platinum, a metal foil, and a second layer containing a rare earth oxide.
4. The propulsion system of claim 1 , wherein the emitter includes a first layer containing platinum, a photonic crystal, and a second layer containing a rare earth oxide.
5. The propulsion system of claim 1 , further comprising:
a first insulator disposed between the combustor and the at least one photovoltaic cell.
6. The propulsion system of claim 5 , further comprising:
a second insulator disposed between the combustor and the at least one photovoltaic cell.
7. The propulsion system of claim 6 , wherein the first insulator is one of a sapphire wafer and a quartz wafer and the second insulator is one of a titania aerogel, a zirconia aerogel, or a silica based aerogel.
8. The propulsion system of claim 1 , wherein the thermoelectric generator includes a heat exchanger that absorbs heat from the exhaust gases.
9. The propulsion system of claim 8 , wherein the thermoelectric generator includes at least one N-type thermoelectric leg and at least one P-type thermoelectric leg connected in a series electrical connection.
10. The propulsion system of claim 1 , further comprising:
a DC-DC converter.
11. The propulsion system of claim 10 , wherein the thermoelectric generator and the at least one photovoltaic cell are electrically connected to the DC-DC converter.