IP Library Granted Patent US 11,725,552
Granted Patent B2
US 11,725,552 · App. 17/617,297 · Granted Aug 15, 2023

Internal combustion engine and method of operating same

Inventors: Gunther Wall (Bad Haring, AT); Jakub Holecek (Innsbruck, AT); Susanne Chvatal (Jenbach, AT)
Assignee: Innio Jenbacher GmbH & Co OG
F01M11/0458F01M11/0004F01M2011/021F01M2013/0438
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Quick Facts
Patent No.
US 11,725,552
App. No.
17/617,297
Granted
Aug 15, 2023
Kind
B2
Abstract

An internal combustion engine having an oil circuit, wherein the oil circuit is designed to supply at least one component of the internal combustion engine with lubricating oil, and at least one oil reservoir for providing the lubricating oil for the oil circuit, wherein there is provided at least one collecting container separate from the at least one oil reservoir, wherein lubricating oil in the oil circuit downstream of the at least one component can be collected in the at least one collecting container, and there is provided at least one removal device, by means of which at least a part of the lubricating oil collected in the at least one collecting container is removable from the at least one oil circuit.

Claims (32)

1. An internal combustion engines comprising:

an oil circuit configured to supply at least one component of the internal combustion engine with lubricating oil;

at least one oil reservoir configured to provide the lubricating oil for the oil circuit, wherein the at least one component includes at least one turbocharger and/or a blow-by filter;

at least one collecting container separate from the at least one oil reservoir, wherein the at least one collecting container is configured to collect the lubricating oil in the oil circuit downstream of the at least one component; and

at least one oil remover configured to remove at least a first part of the lubricating oil collected in the at least one collecting container from the at least one oil circuit during engine operation of the internal combustion engine, such that the first part of the lubricating oil does not return into the at least one oil reservoir.

2. The internal combustion engine of claim 1 , comprising at least one return line configured to return at least a second part of the lubricating oil collected in the at least one collecting chamber into the at least one oil reservoir.

3. The internal combustion engine of claim 1 , wherein the at least one oil reservoir comprises an oil pan or an oil sump of the internal combustion engine.

4. The internal combustion engine of claim 1 , wherein the at least one component includes the at least one turbocharger.

5. The internal combustion engine of claim 1 , wherein the at least one component includes the blow-by filter.

6. The internal combustion engine of claim 1 , wherein the at least one oil remover has at least one removal line, at least one pump, at least one open-loop or closed-loop controllable valve, and/or at least one old oil tank.

7. The internal combustion engine of claim 1 , comprising at least one oil supply configured to supply additional fresh lubricating oil to the oil circuit via the at least one oil reservoir.

8. The internal combustion engine of claim 7 , wherein the at least one oil supply has at least one feed line, at least one pump, at least one open-loop or closed-loop controllable valve, and/or at least one fresh oil tank.

9. The internal combustion engine of claim 7 , comprising an open-loop or closed-loop controller connected in signal-conducting relationship to the at least one oil supply and configured to feed a defined volume of lubricating oil to the oil circuit by open-loop or closed-loop control of the at least one oil supply.

10. The internal combustion engine of claim 1 , comprising an open-loop or closed-loop controller connected in signal-conducting relationship to the at least one oil remover and configured to remove a defined volume of lubricating oil from the at least one collecting container by open-loop or closed-loop control of the at least one oil remover.

11. The internal combustion engine of claim 7 , comprising an open-loop or closed-loop controller configured to maintain constant a total volume of lubricating oil of the oil circuit by open-loop or closed-loop control of the at least one oil supply and/or the at least one oil remover.

12. The internal combustion engine of claim 1 , wherein the at least one collecting container and at least one crankcase are connected together above a liquid level so that gases can circulate between the at least one collecting container and the crankcase.

13. A method of operating an internal combustion engine, comprising:

flowing a lubricating oil in an oil circuit to lubricate and/or cool at least one component of the internal combustion engine, wherein the lubricating oil is provided for the oil circuit by at least one oil reservoir, wherein the at least one component includes at least one turbocharger and/or a blow-by filter;

collecting the lubricating oil in the oil circuit downstream of the at least one component in a collecting container separate from the at least one oil reservoir; and

removing at least a first part of the lubricating oil collected in the at least one collecting container by an oil remover during engine operation of the internal combustion engine, such that the first part of the lubricating oil does not return into the at least one oil reservoir.

14. The method of claim 13 , comprising feeding to the oil circuit a volume of fresh lubricating oil that corresponds to the volume of the first part of the lubricating oil removed from the at least one collecting container.

15. The method of claim 13 , wherein the at least one component includes the at least one turbocharger.

16. The method of claim 13 , wherein the at least one component includes the blow-by filter.

17. A system, comprising:

a controller configured to control an internal combustion engine to:

flow a lubricating oil in an oil circuit to lubricate and/or cool at least one component of the internal combustion engine, wherein the lubricating oil is provided for the oil circuit by at least one oil reservoir, wherein the at least one component includes at least one turbocharger and/or a blow-by filter;

collect the lubricating oil in the oil circuit downstream of the at least one component in a collecting container separate from the at least one oil reservoir; and

remove at least a first part of the lubricating oil collected in the at least one collecting container by an oil remover during engine operation of the internal combustion engine, such that the first part of the lubricating oil does not return into the at least one oil reservoir.

18. The system of claim 17 , comprising the at least one component, the internal combustion engine, or a combination thereof.

19. The system of claim 17 , wherein the at least one component includes the at least one turbocharger.

20. The system of claim 17 , wherein the at least one component includes the blow-by filter.

21. The system of claim 17 , wherein the controller is configured to control at least one oil supply to supply a volume of fresh lubricating oil to the oil circuit to compensate for the first part of the lubricating oil removed from the at least one collecting container.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2022
From: WALL, GUNTHER; HOLECEK, JAKUB; CHVATAL, SUSANNE
To: INNIO JENBACHER GMBH & CO OG
Reel/Frame 060044/0790 →
Continuity (1)
Related Publication 20220307397A1 · Sep 29, 2022