Crankcase ventilation system for engines capable of operating in roll-over situations and/or in steeply oblique positions
09982634 · 2018-05-29
Assignee
Inventors
Cpc classification
F01M2013/0494
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M2011/068
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M13/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/067
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T10/12
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F02M25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M13/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A crankcase ventilation system, preferably for an engine capable of operation in roll-over situations and/or in steeply oblique positions, and/or for permitting such operation. The crankcase ventilation system includes a crankcase, preferably at least one extraction point for blow-by, and at least one blow-by separator a blow-by separation container. The at least one blow-by separator and the blow-by separation container are connected to one another.
Claims
1. A crankcase ventilation system, for an engine having a crankcase and at least one extraction point for blow-by, the crankcase ventilation system, comprising: at least one blow-by separator; a blow-by separation container, wherein the at least one blow-by separator and the blow-by separation container are connected to one another; and at least one detection device configured to detect engine oblique positions, wherein when one of a predefined engine oblique position and an inadmissible engine oblique position is detected by the at least one detection device at least one of: a shut-off part is closed for a defined time, the engine is operated in reduced fashion, and the engine is shut off.
2. The crankcase ventilation system according to claim 1, wherein the blow-by separation container is arranged at least one of: above a level of the at least one blow-by separator, on a side of the engine, and separately from the engine.
3. The crankcase ventilation system according to claim 1, further comprising: at least one blow-by connector configured to connect the at least one blow-by separator to the blow-by separation container.
4. The crankcase ventilation system according to claim 3, further comprising: at least one blow-by connecting device configured to connect the blow-by separation container to the at least one extraction point.
5. The crankcase ventilation system according to claim 4, further comprising: the shut-off part connected to the at least one blow-by connector and configured to prevent a blow-by flow from the blow-by separation container in a direction of the at least one blow-by separator or into the at least one blow-by separator.
6. The crankcase ventilation system according to claim 5, wherein the shut-off part is at least one of: integrated into the blow-by separation container and actuated one of electrically, mechanically, or pneumatically.
7. The crankcase ventilation system according to claim 5, wherein at least one of the at least one blow-by connecting device and the at least one blow-by connector comprises an upper section and a lower section that proceeds from the upper section.
8. The crankcase ventilation system according to claim 7, wherein the upper section is horizontal.
9. The crankcase ventilation system according to claim 1, further comprising: at least one oil return element configured to connect the blow-by separation container to an oil pan.
10. The crankcase ventilation system according to claim 9, further comprising: at least one oil return configured to connect the at least one blow-by separator to an oil pan.
11. The crankcase ventilation system according to claim 10, wherein the at least one oil return has a safety configured to prevent a back flow of oil from the oil pan into the at least one blow-by separator.
12. The crankcase ventilation system according to claim 11, wherein the safety comprises one of a flap, a valve, a check valve, and a solenoid valve.
13. The crankcase ventilation system according to claim 9, further comprising: a collecting container connected to the at least one oil return element and configured to collect oil that escapes during operation in at least one of a roll-over situation and a steeply oblique position; and a safety element is configured to open during operation in the at least one of the roll-over situation and the steeply oblique position, configured to conduct the oil that escapes into the collecting container.
14. The crankcase ventilation system according to claim 13, wherein the safety element is one of a flap, a valve, an overpressure valve, and a solenoid valve.
15. The crankcase ventilation system according to claim 1, further comprising: at least one line element for purified blow-by leads from the at least one blow-by separator to an intake device of a compressor.
16. The crankcase ventilation system according to claim 1, wherein the blow-by separation container, is configured to prevent oil from entering a combustion chamber of the engine during engine operation in at least one of a steeply oblique position and a roll-over situation.
17. The crankcase ventilation system according to claim 1, wherein the crankcase ventilation system is for the engine capable of one or more of operation in roll-over situations, operation in steeply oblique positions, and for permitting such operation.
18. The crankcase ventilation system according to claim 1, wherein the one of the predefined engine oblique position and the inadmissible engine oblique position is at least 45 relative to a horizontal, without a roll-over occurring.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The FIGURE shows a schematic view of a crankcase ventilation system K according to an aspect of the invention, expediently for an engine capable of operation in roll-over situations and/or in steeply oblique positions, and/or for permitting such operation.
DETAILED DESCRIPTION OF THE PRESENTLY PREFERRED EMBODIMENTS
(2) The capability of an engine to operate in roll-over situations, or the capability of an engine to operate in steeply oblique positions, is required in particular for engines for highly dynamic ships, for example rescue boats.
(3) In the context of the invention, the feature operation in steeply oblique positions and/or capability of operating in steeply oblique positions expediently encompasses inclinations of the crankcase ventilation system K and/or of the engine during operation of over 45, over 60, over 75 or over 80 relative to the horizontal.
(4) The feature capability of operation in roll-over situations or roll-over refers in particular to rotations into an upside down position, and/or 360 rotations, during the operation of the crankcase ventilation system K or of the engine.
(5) As shown the FIGURE crankcase ventilation system K comprises an extraction point 1 for blow-by, a crankcase 14, a compressor 7 with intake connector, a blow-by separator 3, and an oil pan 5. Blow-by connecting element 2 is a constituent part of an embodiment according to the prior art which does not exhibit capability of operation in roll-over situations, and serves merely for background information. The blow-by connecting element 2 is not part of the crankcase ventilation system K.
(6) The crankcase ventilation system K furthermore comprises an oil return line 4 (oil return) from the blow-by separator 3 into the oil pan 5, and a line 6 for purified blow-by for connecting the blow-by separator 3 to the intake connector of the compressor 7.
(7) The crankcase ventilation system K comprises, in addition to the blow-by separator 3, a blow-by separation container 8, which is connected to the blow-by separator 3.
(8) The blow-by separation container 8 is arranged above the level of the blow-by separator 3, preferably directly above the latter. Other arrangements, for example on the side of the engine, are also possible.
(9) A blow-by connecting device 2a, for example a connecting line connects the blow-by separation container 8 to the extraction point 1.
(10) A blow-by connector 2b for example a connecting line connects the blow-by separator 3 to the blow-by separation container 8. The blow-by connector 2b comprises, in the blow-by separation container 8, an upper, substantially horizontal section and a preferably substantially vertical section extending downwards from said upper section.
(11) The flow of medium is substantially as follows: extraction, entry into the separation container 8, exit from the separation container 8, entry into the separator 3, entry into an intake connector.
(12) The blow-by connector 2b is connected to a shut-off part 9 in the form of a valve or of a flap. The shut-off part 9 is designed to prevent a blow-by flow from the blow-by separation container 8 in the direction of the blow-by separator 3 or even into the blow-by separator 3. In the embodiment shown, the shut-off part 9 is integrated into the blow-by separation container 8 and may be designed to be electrically, mechanically, or pneumatically actuated, preferably in a manner dependent on a detection device for detecting engine oblique positions. The shut-off part 9 may also be positioned outside the separation container 8.
(13) The shut-off part 9 is optional, if it is sought only to permit operation of the engine in steeply oblique positions. If the shut-off part 9 is not used, the blow-by separation container 8 may serve as a collecting volume or as a coarse separator and/or pre-separator.
(14) The blow-by separation container 8 is connected via an oil return element 10 (oil return line) to the oil pan 5. The blow-by separator 3 is connected via an oil return 4 (oil return line) to the oil pan 5. The oil return 4 may have a safety 13 in the form of a check valve, solenoid valve, or flap, to prevent a backflow of oil from the oil pan 5 into the blow-by separator 3.
(15) The crankcase ventilation system K comprises a collecting container 12. The collecting container 12 is connected via a safety element 11 to the oil return element 10. The safety element 11 may be in the form of a flap or valve, preferably an overpressure valve and/or solenoid valve. If the pressure in the crankcase ventilation system K rises above an admissible level, for example during operation in a roll-over situation and/or in a steeply oblique position, it is preferably the case that the shut-off part 9 is closed and the safety element 11 is opened, such that any escaping oil can pass via the safety element 11 into the collecting container 12. The extraction via the cylinder head is however merely one option.
(16) The crankcase ventilation system K, in particular the oil separation container 8, expediently serves, during engine operation in steeply oblique positions or in roll-over situations of the engine and/or of the crankcase ventilation system K, to prevent oil from being able to enter a combustion chamber of the engine from the oil pan 5, for example from being entrained or drawn in by the crankcase ventilation system and thus passing into the combustion chamber, which may consequently lead to engine damage.
(17) The crankcase ventilation system K may comprise a detection device 20 for the indirect or direct detection of engine oblique positions during the operation of the engine. The detection device may for example comprise an inclination sensor, seismic sensor, pendulum, etc.
(18) The shut-off part 9 may be closed for a defined time if a predefined or inadmissible engine oblique position is detected by the detection device 20. Alternatively or in addition, the engine may be operated in reduced fashion or shut off if a predefined or inadmissible engine oblique position is detected by the detection device 20. Inadmissibly steep engine oblique positions may comprise steep inclinations without a roll-over of the engine occurring, or may comprise steep inclinations followed by a roll-over of the engine.
(19) The function or operation of the crankcase ventilation system K can be described as follows: 1. Operation of an engine in an inadmissible oblique position, and/or roll-over of an engine 2. Outputting of a switching signal by the detection device 3. Optional closure of the shut-off part 9 for a defined time 4. Optional engine operation with reduced speed and/or reduced power for a defined time 5. Entry of oil into the blow-by separation container 8 6. Possible closure of the safety 13 7. Possible opening of the safety element 11, and discharging of blow-by into the collecting container 12 8. Uprighting of the engine after the operation in the inadmissible oblique position, with or without roll-over 9. Outflow of the oil volume from the blow-by separation container 8 into the oil pan 5 via oil return element 10 10. If, after the expiry of a defined time, operation in an inadmissible oblique position is still detected, the processes described above are continued 11. If, after the expiry of a defined time, operation in an admissible oblique position is detected, the optional shut-off part 9 may be opened, and normal engine operation permitted or initiated.
(20) In practice, the processes described above may, under some circumstances, take place in a changed sequence and/or simultaneously.
(21) The invention is not restricted to the preferred embodiments described above. Rather, numerous variants and modifications are possible which likewise make use of the concept of the invention and which therefore fall within the scope of protection. Furthermore, the invention also claims protection for the subject matter and the features of the subclaims independently of the features and claims referred back to.
(22) Thus, while there have shown and described and pointed out fundamental novel features of the invention as applied to a preferred embodiment thereof, it will be understood that various omissions and substitutions and changes in the form and details of the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed or described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.