Claims
- 1. An induced flow motor cooling jacket for a propeller-driven underwater vehicle comprising:
- a self-priming inlet;
- a heat exchanger comprising heat conductive tubing having a cross-section shaped to provide an increasing heat transfer coefficient as said tubing extends through the heat exchanger, wherein said tubing is wound around and in physical contact with a vehicle motor and connected to said self-priming inlet; and
- a coolant discharge nozzle attached to said heat exchanger and located in a region in front of said vehicle propeller.
- 2. An induced flow motor cooling jacket as in claim 1 wherein said heat conductive tubing comprises copper tubing.
- 3. An induced flow motor cooling jacket as in claim 1 wherein said coolant discharge nozzle is a divergent diffuser.
- 4. An induced flow motor cooling jacket as in claim 1 wherein said conductive tubing has a cross-section initially circular, and changing to elliptical in a middle section of said heat exchanger.
- 5. An induced flow motor cooling jacket for an underwater vehicle having a motor and a propeller, comprising:
- a self-priming inlet exposed to high pressure environmental water outside said vehicle;
- means for cooling positioned in contact with a motor of said underwater vehicle, said means for cooling having an input and an output, said input being joined to said self-priming inlet to provide water to said input, said means for cooling comprising heat conductive tubing having a cross section shaped to provide an increasing heat transfer coefficient as said water travels through said means for cooling from said input to said output; and
- a coolant discharge nozzle attached to said means for cooling output, said coolant discharge nozzle being exposed to low pressure environmental water outside said vehicle.
- 6. The induced flow motor cooling jacket of claim 5 wherein said means for cooling comprises a heat conductive tubing wrapped in turns around said underwater vehicle motor.
- 7. The induced flow motor cooling jacket of claim 5 wherein said heat conductive tubing has an initial section with said tubing having a circular cross-section and a middle section with said tubing having a flattened elliptical cross-section smaller in area than that of said initial section.
- 8. The induced flow motor cooling jacket of claim 7 wherein said heat conductive tubing has a rearmost section with said tubing having a circular cross-section.
- 9. The induced flow motor cooling jacket of claim 8 wherein said heat conductive tubing is made from copper.
- 10. The induced flow motor cooling jacket of claim 5 wherein said heat conductive tubing has an initial section with said tubing having a circular cross-section and a middle section with said tubing having a substantially square cross-section smaller in area than that of said initial section.
- 11. The induced flow motor cooling jacket of claim 10 wherein said heat conductive tubing has a rearmost section with said tubing having a circular cross-section.
- 12. The induced flow motor cooling jacket of claim 11 wherein said heat conductive tubing is made from copper.
- 13. The induced flow motor cooling jacket of claim 5 wherein said coolant discharge nozzle is positioned in front of a propeller of said underwater vehicle.
- 14. The induced flow motor cooling jacket of claim 13 wherein said coolant discharge nozzle is a divergent diffuser.
STATEMENT OF GOVERNMENT INTEREST
The invention described herein may be manufactured and used by or for the Government of the United States of America for Governmental purposes without the payment of any royalties thereon or therefor.
US Referenced Citations (18)