Control system for compression-ignition engine
US-10794323-B2 · Oct 6, 2020 · US
US11236684B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-11236684-B1 |
| Application number | US-201917277215-A |
| Country | US |
| Kind code | B1 |
| Filing date | Sep 19, 2019 |
| Priority date | Sep 20, 2018 |
| Publication date | Feb 1, 2022 |
| Grant date | Feb 1, 2022 |
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A two-stroke engine with a supercharger is provided that can prevent occurrence of abnormal combustion under high load and can improve fuel efficiency when compression self-ignition combustion is carried out under low load, and spark ignition combustion is carried out under high load. When an operation state of an engine body is in a high-load side operation range, an intake variable valve mechanism and an exhaust variable valve mechanism are actuated to retard at least closing timing of an intake valve and at least opening timing of an exhaust valve from those in the case where the operation state of the engine body is in a low-load side operation range at the same engine speed as the engine speed detected by engine speed detection means while particular conditions are satisfied.
Opening claim text (preview).
What is claimed is: 1. A two-stroke engine with a supercharger, the two-stroke engine including: an engine body that has a cylinder constituting a combustion chamber, a piston inserted in and fitted to said cylinder, and an intake valve and an exhaust valve arranged on top of the cylinder and respectively opening/closing an intake port and an exhaust port; and a supercharger that is provided in an intake passage connected to the intake port of said engine body, the two-stroke engine with the supercharger further comprising: an intake variable valve mechanism capable of varying at least closing timing of the intake valve; an exhaust variable valve mechanism capable of varying at least opening timing of the exhaust valve; engine speed detection means that detects an engine speed as a speed of the engine body; and control means that controls actuation of the engine body including the intake variable valve mechanism and the exhaust variable valve mechanism, wherein an open period of each of the intake valve and the exhaust valve is set to satisfy particular conditions that are that the open period includes compression bottom dead center, that the opening timing of the intake valve is later than the opening timing of the exhaust valve, and that the closing timing of the intake valve is substantially the same as closing timing of the exhaust valve or later than the closing timing of the exhaust valve, wherein the control means is configured to conduct compression self-ignition combustion, in which fuel is compressed to ignite by itself in the combustion chamber, when an operation state of the engine body is in a low-load side operation range where a load is smaller than a specified load and to conduct spark ignition combustion of the fuel in the combustion chamber when the operation state of the engine body is in a high-load side operation range, in which the load is equal to or larger than the specified load, wherein the supercharger is configured to be actuated when the operation state of the engine body is in the low-load side operation range or the high-load side operation range, and wherein the control means is further configured to actuate the intake variable valve mechanism and the exhaust variable valve mechanism in order to retard at least the closing timing of the intake valve and at least the opening timing of the exhaust valve from those in a case where the operation state of the engine body is in the low-load side operation range at the same engine speed as the engine speed detected by the engine speed detection means while the particular conditions are satisfied, when the operation state of the engine body is in the high-load side operation range. 2. The two-stroke engine with the supercharger according to claim 1 further comprising: outside temperature detection means that detects an outside temperature; and compression end temperature estimation means that estimates a compression end temperature as a temperature of gas in the combustion chamber at compression top dead center on the basis of a detection result by each of the outside temperature detection means and the engine speed detection means and a current effective compression ratio of the engine body when the operation state of the engine body is in the low-load side operation range, wherein the control means is configured to actuate the variable valve mechanism in order to vary at least the closing timing of the intake valve within a specified range according to the compression end temperature estimated by the compression end temperature estimation means when the operation state of the engine body is in the low-load side operation range, and wherein the closing timing of the intake valve at the time when the operation state of the engine body is in the high-load side operation range is retarded from the closing timing of the intake valve at the time when said closing timing is retarded at a maximum according to the compression end temperature at the time when the operation state of the engine body is in the low-load side operation range at the same engine speed as the engine speed in said high-load side operation range. 3. The two-stroke engine with the supercharger according to claim 2 , wherein the intake variable valve mechanism comprises a variable valve mechanism of a phase type that varies both of the opening timing and the closing timing of the intake valve in an interlocking manner while keeping the open period of said intake valve constant, and wherein the exhaust variable valve mechanism comprises a variable valve mechanism of the phase type that varies both of the opening timing and the closing timing of the exhaust valve in an interlocking manner while keeping the open period of said exhaust valve constant. 4. The two-stroke engine with the supercharger according to claim 1 , wherein the intake variable valve mechanism comprises a variable valve mechanism of a phase type that varies both of the opening timing and the closing timing of the intake valve in an interlocking manner while keeping the open period of said intake valve constant, and wherein the exhaust variable valve mechanism comprises a variable valve mechanism of the phase type that varies both of the opening timing and the closing timing of the exhaust valve in an interlocking manner while keeping the open period of said exhaust valve constant.
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