Small diesel engine-generator set
11306652 ยท 2022-04-19
Assignee
Inventors
Cpc classification
F01P3/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B63/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B75/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B63/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B63H8/50
PERFORMING OPERATIONS; TRANSPORTING
F02B63/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B63/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P2050/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An engine-generator set with a single-cylinder diesel engine and an electrical generator with a rotor secured to the engine crankshaft. The rotor is cantilevered on an end of the crankshaft. The engine has an electrically activatable fuel injector connected to a continuously pressurized fuel supply, such as in a common rail injection system. The engine exhaust passes through a catalyst bed. In a marine version, the catalyst bed is disposed within an injection elbow.
Claims
1. An engine-generator set comprising: a diesel engine with a rotatable crankshaft; and an electrical generator with a rotor secured to the crankshaft for rotation, the rotor cantilevered on an end of the crankshaft; wherein the engine is a single-cylinder engine and has an electrically activatable fuel injector connected to a continuously pressurized fuel supply; and wherein the engine has an exhaust system arranged to receive a flow of exhaust from the single cylinder and to pass the received exhaust through a catalyst.
2. The engine-generator set of claim 1, wherein the engine is a marine engine.
3. The engine-generator set of claim 1, wherein the engine defines a cooling passage in hydraulic communication with both a raw water inlet and a raw water outlet into the exhaust system of the engine.
4. The engine-generator set of claim 1, wherein the cooling passage is also in hydraulic communication with a cooling jacket extending at least partially about the catalyst.
5. The engine-generator set of claim 1, wherein the engine is air-cooled.
6. The engine-generator set of claim 1, wherein the engine-generator set is mounted on a vehicle and configured to produce electrical power for powering a cooling system of the vehicle.
7. The engine-generator set of claim 6, wherein the engine is mounted with its crankshaft extending horizontally.
8. The engine-generator set of claim 1, wherein the generator is a variable-speed generator.
9. The engine-generator set of claim 1, wherein the generator is a permanent magnet generator.
10. The engine-generator set of claim 1, further comprising a sound-attenuating enclosure surrounding the engine and the generator.
11. The engine-generator set of claim 10, wherein the engine is mounted to the sound-attenuating enclosure by a vibration isolator.
12. The engine-generator set of claim 1, further comprising an oxygen sensor arranged to be exposed to the flow of exhaust and configured to be responsive to oxygen content in the flow.
13. An engine-generator set comprising: a diesel engine with a rotatable crankshaft; and an electrical generator with a rotor secured to the crankshaft for rotation, the rotor cantilevered on an end of the crankshaft; wherein the engine has an electrically activatable fuel injector connected to a continuously pressurized fuel supply; and wherein the engine defines a cooling passage in hydraulic communication with both a raw water inlet and a raw water outlet into an exhaust system of the engine; and wherein the engine exhaust system is arranged to receive a flow of exhaust and to pass the received exhaust through a catalyst.
14. The engine-generator set of claim 13, further comprising an oxygen sensor arranged to be exposed to the flow of exhaust and configured to be responsive to oxygen content in the flow.
15. The engine-generator set of claim 13, wherein the engine is air-cooled.
16. The engine-generator set of any of claim 13, wherein the engine-generator set is mounted on a boat and configured to produce electrical power for powering a cooling system of the boat.
17. The engine-generator set of claim 16, wherein the engine is mounted with its crankshaft extending horizontally.
18. The engine-generator set of claim 13, wherein the generator is a variable-speed generator.
19. The engine-generator set of claim 13, wherein the cooling passage is also in hydraulic communication with a cooling jacket extending at least partially about the catalyst.
Description
DESCRIPTION OF DRAWINGS
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(7) Like reference symbols in the various drawings indicate like elements.
DETAILED DESCRIPTION
(8) Referring first to
(9) Referring to
(10) The engine 14 is preferably a one-cylinder diesel engine, such as a Model 178/186 available from various sources including Chang Chai, or a Model L70/L100 engine from Yanmar. It includes at least one solenoid-actuated fuel injector, electronically controlled by an engine controller (not shown) to inject timed bursts of fuel into the single cylinder, preferably multiple bursts per cycle from a fuel line held at a pressure of 10 to 20 ksi (70 to 140 MPa). The injector is controlled such that the timing and amount of fuel are optimal for minimizing emissions under sensed power output and speed conditions. The engine-generator set should be able to produce 5 kW of continuous AC power at 50 or 60 Hz and 120 or 240 volts, meeting U.S. EPA and European emissions standards for marine and vehicle use. The engine may be configured for air cooling or liquid (e.g., water) cooling. If air-cooled, the enclosure will provide for a cooling air inlet and outlet. If the engine is cooled by a closed loop liquid circuit, the enclosure will provide for a coolant inlet and outlet connected to an external radiator. If the engine is marinized and cooled by raw water, the enclosure will provide for a seawater inlet.
(11) The engine is started by an electric starting motor. In some cases the generator is also configured to serve as the starting motor. Alternatively, a separate starting motor 18 may be mounted to drive the crankshaft of the engine, such as through a flywheel. In this example, the generator 16 is mounted at an end of the crankshaft opposite the flywheel, which is enclosed in a shroud 20. The generator rotor 22 is rigidly coupled to the crankshaft and cantilevered, such that there is no bearing supporting the rotor other than through the crankshaft.
(12) Alternatively, the generator can be mounted on what would be the flywheel end of the crankshaft, as shown in
(13) Referring next to
(14) Alternatively, the generator may be a synchronous PMG operating at a constant speed and providing output power at the desired frequency.
(15) Referring next to
(16) Referring to
(17) While a number of examples have been described for illustration purposes, the foregoing description is not intended to limit the scope of the invention, which is defined by the scope of the appended claims. There are and will be other examples and modifications within the scope of the following claims.