Pump system for lubricating components of a wind turbine
US-11754054-B2 · Sep 12, 2023 · US
US12359715B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12359715-B2 |
| Application number | US-202218567373-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 8, 2022 |
| Priority date | Aug 10, 2021 |
| Publication date | Jul 15, 2025 |
| Grant date | Jul 15, 2025 |
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A gearbox arrangement with an oil circuit, including at least one lubrication point incorporated in the oil circuit and at least one direction control valve with at least two switching positions and at least three ports, the at least three ports including a first port, a second port, and a third port. In a first switching position the first port and the third port are connected to each other in an oil-conducting manner and disconnected from the second port. In a second switching position, the first port and the second port are connected to each other in an oil-conducting manner and disconnected from the third port. The lubrication point and the second port are connected to each other in an oil-conducting manner. The lubrication point and the third port are not connected to each other in an oil-conducting manner.
Opening claim text (preview).
The invention claimed is: 1. A gearbox arrangement with an oil circuit, comprising: a housing forming an oil sump; a lubricant supply device comprising a pump, a filter, and an oil cooler; at least one lubrication point incorporated in the oil circuit; at least one direction control valve with at least two switching positions and at least three ports, the at least three ports including a first port, a second port, and a third port; and a bypass extending within the housing and configured to drain oil from the third port past the at least one lubrication point into the oil sump, wherein: in a first switching position the first port and the third port are connected to each other in an oil-conducting manner and disconnected from the second port, in a second switching position, the first port and the second port are connected to each other in an oil-conducting manner and disconnected from the third port, the lubrication point and the second port are connected to each other in an oil-conducting manner, the lubrication point and the third port are not connected to each other in an oil-conducting manner, and the entire bypass extends within the housing and the at least one direction control valve. 2. The gearbox arrangement according to claim 1 , wherein the third port is not connected to any lubrication point in an oil-conducting manner. 3. The gearbox arrangement according to claim 1 , further comprising at least one component incorporated in the oil circuit, wherein the at least one component and the first port are connected to one another in an oil-conducting manner. 4. The gearbox arrangement according to claim 3 , wherein the at least one component is arranged outside the housing. 5. The gearbox arrangement according to claim 1 , wherein the oil circuit is fed from the oil sump and the third port is connected to the oil sump in an oil-conducting manner. 6. The gearbox arrangement according to claim 1 , further comprising a dirty oil tank to which the third port is connected in an oil-conducting manner. 7. The gearbox arrangement according to claim 6 , wherein the dirty oil tank is arranged outside the housing. 8. A method of flushing the gearbox arrangement according to claim 1 , the method comprising: moving the at least one direction control valve to the first switching position; conveying oil through the oil circuit; and moving the at least one direction control valve to the second switching position. 9. A method of repairing the gearbox arrangement according to claim 3 , the method comprising: removing the at least one component; repairing or replacing the at least one component; installing at least one new component; and flushing the gearbox arrangement. 10. The method of claim 9 , wherein flushing the gearbox arrangement comprises: moving the at least one direction control valve to the first switching position; conveying oil through the oil circuit; and moving the at least one direction control valve to the second switching position. 11. A gearbox arrangement with an oil circuit, comprising: a housing forming an oil sump; a lubricant supply device comprising a pump, a filter, and an oil cooler; at least one lubrication point incorporated in the oil circuit; at least one direction control valve with at least two switching positions and at least three ports, the at least three ports including a first port, a second port, and a third port; a dirty oil tank to which the third port is connected in an oil-conducting manner; and a bypass extending within the housing and configured to drain oil from the third port past the at least one lubrication point into the oil sump, wherein: in a first switching position the first port and the third port are connected to each other in an oil-conducting manner and disconnected from the second port, in a second switching position, the first port and the second port are connected to each other in an oil-conducting manner and disconnected from the third port, the lubrication point and the second port are connected to each other in an oil-conducting manner, the lubrication point and the third port are not connected to each other in an oil-conducting manner. 12. A method of flushing a gearbox arrangement with an oil circuit, the gearbox arrangement comprising: a housing forming an oil sump, a lubricant supply device comprising a pump, a filter, and an oil cooler, at least one lubrication point incorporated in the oil circuit, at least one direction control valve with at least two switching positions and at least three ports, the at least three ports including a first port, a second port, and a third port, and a bypass extending within the housing and configured to drain oil from the third port past the at least one lubrication point into the oil sump, wherein: in a first switching position the first port and the third port are connected to each other in an oil-conducting manner and disconnected from the second port, in a second switching position, the first port and the second port are connected to each other in an oil-conducting manner and disconnected from the third port, the lubrication point and the second port are connected to each other in an oil-conducting manner, the lubrication point and the third port are not connected to each other in an oil-conducting manner, the method of flushing the gearbox arrangement comprising: moving the at least one direction control valve to the first switching position; conveying oil through the oil circuit; and moving the at least one direction control valve to the second switching position.
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