Vehicle water jacket
09732661 ยท 2017-08-15
Assignee
Inventors
- Steve Jones (Coventry, GB)
- Steven Pierson (Coventry, GB)
- Kevin French (Conventry, GB)
- Chris McNab (Coventry, GB)
Cpc classification
B60H1/04
PERFORMING OPERATIONS; TRANSPORTING
F01P3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P2007/146
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/242
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P2003/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P7/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01P7/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P3/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A vehicle water jacket assembly includes a first water jacket portion establishing a plurality of first fluid channels that are situated to facilitate fluid movement along at least a first plane. A second water jacket portion is situated near the first water jacket portion. The second water jacket portion establishes a plurality of second fluid channels that are situated to facilitate fluid movement along at least a second plane that is generally parallel to the first plane. At least one connector portion establishes a plurality of connector fluid channels that are situated to facilitate fluid movement between at least one of the first fluid channels and at least one of the second fluid channels along a direction that is transverse to the first and second planes.
Claims
1. An assembly, comprising a first water jacket portion establishing a plurality of first fluid channels that are situated to facilitate fluid movement along at least a first plane; a second water jacket portion situated near the first water jacket portion, the second water jacket portion establishing a plurality of second fluid channels that are situated to facilitate fluid movement along at least a second plane that is generally parallel to the first plane; and at least one connector portion establishing a plurality of connector fluid channels that are situated to facilitate fluid movement between at least one of the first fluid channels and at least one of the second fluid channels along a direction that is transverse to the first and second plane; an inlet to the first water jacket portion on a first side of the first water jacket portion; an outlet from the second water jacket portion on the first side of the first water jacket portion; an engine cylinder block, wherein the first water jacket portion includes a cylinder block outlet for directing some fluid from the first fluid channels toward the engine cylinder block; a vehicle cabin heater, wherein the outlet from the second water jacket portion directs the at least some of the fluid toward the vehicle cabin heater; and a flow control element that is selectively controllable to prioritize fluid flow through the cylinder block outlet when warming engine oil is desired and prioritize fluid flow through the outlet from the second water jacket portion when warming the vehicle cabin heater is desired; wherein the first fluid channels are configured to carry at least some of the fluid in a direction from the first side of the first water jacket portion toward a second, opposite side of the first water jacket portion; the connector fluid channels are configured to carry the at least some of the fluid from the first fluid channels to the second fluid channels; and the second fluid channels are configured to carry the at least some of the fluid received from the connector fluid channels in another direction from the second side toward the first side and toward the outlet.
2. The assembly of claim 1, wherein the first and second water jacket portions are configured to be situated in a generally horizontal orientation and the connector fluid channels are configured to be situated in a generally vertical orientation.
3. The assembly of claim 1, comprising a reinforcing plate situated at least partially between the first water jacket portion and the second water jacket portion.
4. The assembly of claim 1, wherein the engine cylinder block includes a plurality of cylinders; there are a corresponding plurality of injectors associated with the cylinders; the first water jacket portion includes injector port sections adjacent the injectors to facilitate heat transfer from the injectors to fluid in corresponding injector port sections of the first fluid channels; and at least some of the connector fluid channels are situated near the injector port sections to carry heated fluid from the injector port sections to the second water jacket portion to facilitate further heat transfer from the injectors to the fluid.
5. The assembly of claim 1, wherein the engine cylinder block includes a plurality of cylinders; the first water jacket portion is situated a first proximity to the engine cylinder block to facilitate a first amount of heat dissipation based on heat transfer from the engine cylinder block to fluid in the first fluid channels; and the second water jacket portion is situated a second proximity that is further from the engine cylinder block than the first proximity to facilitate a second, additional amount of heat dissipation based on heat transfer from the fluid in the second fluid channels to a material of the second water jacket portion.
6. The assembly of claim 1, wherein the first and second water jacket portions comprise aluminum.
7. The assembly of claim 1, wherein the first fluid channels are configured to direct fluid in a first direction along the first plane; and the second fluid channels are configured to direct fluid in a second, opposite direction along the second plane.
8. The assembly of claim 1, wherein the first water jacket portion includes an area that is situated where coolant may not readily flow from the area; and at least one of the connector fluid channels is situated near the area to carry coolant from the area to the second water jacket portion.
9. The assembly of claim 8, wherein the area is near at least one of an injector or an exhaust valve.
10. A cooling system comprising the assembly of claim 1.
11. A cooling system for an internal combustion engine comprising the assembly of claim 1.
12. A cooling system for a vehicle, comprising the assembly of claim 1.
13. A vehicle comprising the assembly of claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) One or more embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings, which can be briefly described as follows.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6)
(7) The first water jacket portion 22 is situated at a first proximity relative to the engine cylinder block 30. The second water jacket portion 26 is spaced from the first water jacket portion and situated at a second proximity to the engine cylinder block 30. The first proximity is closer to at least some of the cylinder block 30 than the second proximity of the second water jacket portion 26. Having two water jacket portions separated and at different relative locations relative to the engine cylinder block can facilitate better cooling capacity, which can contribute to allowing the water jacket assembly withstanding relatively higher temperatures and pressures associated with engine operation.
(8) The first water jacket portion is situated so that the first fluid channels 24 facilitate movement of a fluid such as coolant in at least one direction along a first plane 40. The second water jacket portion is situated so that the second fluid channels 28 facilitate fluid movement along a second plane 42 that is generally parallel to the first plane. A connector portion between the first jacket portion 22 and the second jacket portion 26 establishes a plurality of connector fluid channels 44 that allow fluid to flow between the first fluid channels 24 and the second fluid channels 28. The connector fluid channels 44 are transverse to the first plane 40 and the second plane 42. In the example of
(9) The first jacket portion 22 in this example includes an inlet 50 situated on one side of the first jacket portion 22. The second jacket portion 26 includes an outlet 52 that is situated on or near the one side of the first jacket portion. Having the outlet 52 situated on the same side of the first jacket portion 22 as the inlet 50 allows for returning fluid from the second jacket portion 26 to a thermostat (not illustrated) associated with an inlet pump 53. This arrangement eliminates a need for long hoses otherwise associated with having the inlet 50 and the outlet 52 on opposite sides of a water jacket. The shorter hose length reduces the circuit coolant volume, reduces the overall envelope required to accommodate the water jacket assembly and provides improvements in the thermal inertia of the system.
(10) The example second water jacket portion 26 includes another outlet 54 configured to deliver fluid toward a cabin heater (not illustrated). As schematically shown in
(11) The first water jacket portion 22 includes an engine cylinder block outlet 58 configured to direct fluid from the first water jacket portion to the engine cylinder block 30. Depending on the situation, it is possible to prioritize directing more of the coolant fluid through the outlet 58 to more quickly heat up engine oil or to prioritize directing more coolant fluid through the outlet 54 to more quickly heat up a vehicle cabin. The multiple jacket portions and the various outlets associated with the illustrated configuration facilitate more flexibility in achieving such desired functions or features.
(12) As best appreciated from
(13) The two jacket portions 22 and 26 of the illustrated embodiment increase the coolant jacket to metal surface, which results in better heat extraction from the metal. This aspect serves to increase the fluid warm-up when starting the engine from cold. The increased coolant jacket to metal surface also reduces metal temperatures under high load, which enhances the durability limit of the cylinder block 30. Having multiple jacket portions with increased heat dissipation capacity also facilitates making the jacket assembly 20 from a lighter weight material, such as aluminum. The illustrated embodiment includes a reinforcing plate 70 at least partially received between the first water jacket portion 22 and the second water jacket portion 26 to provide structural reinforcement to the water jacket assembly 20.
(14) Another feature associated with the multiple water jacket portions is shown schematically in
(15) As shown in
(16) The features of the illustrated example embodiment provide enhanced cooling capability and coolant distribution while facilitating using less material or lighter weight material for a water jacket assembly. Additionally, the illustrated embodiment is well-suited for withstanding higher engine temperatures and pressures compared to other designs.
(17) While various features and aspects are described above in connection with one or more particular embodiments, those features and aspects are not necessarily exclusive to the corresponding embodiment. The disclosed features and aspects may be combined in other ways than those specifically mentioned above. In other words, any feature of one embodiment may be included with or substituted for a feature of another embodiment.
(18) Non-limiting aspects of one or more embodiments of the invention will also be understood with reference to the following numbered paragraphs: 1. An assembly, comprising
(19) a first water jacket portion establishing a plurality of first fluid channels that are situated to facilitate fluid movement along at least a first plane;
(20) a second water jacket portion situated near the first water jacket portion, the second water jacket portion establishing a plurality of second fluid channels that are situated to facilitate fluid movement along at least a second plane that is generally parallel to the first plane; and
(21) at least one connector portion establishing a plurality of connector fluid channels that are situated to facilitate fluid movement between at least one of the first fluid channels and at least one of the second fluid channels along a direction that is transverse to the first and second plane. 2. The assembly of paragraph 1, wherein the first and second water jacket portions are configured to be situated in a generally horizontal orientation and the connector fluid channels are configured to be situated in a generally vertical orientation. 3. The assembly of paragraph 1, comprising
(22) an inlet to the first water jacket portion on a first side of the first water jacket portion; and
(23) an outlet from the second water jacket portion on the first side of the first water jacket portion;
(24) and wherein
(25) the first fluid channels are configured to carry at least some of the fluid in a direction from the first side of the first water jacket portion toward a second, opposite side of the first water jacket portion;
(26) the connector fluid channels are configured to carry the at least some of the fluid from the first fluid channels to the second fluid channels; and
(27) the second fluid channels are configured to carry the at least some of the fluid received from the connector fluid channels in another direction from the second side toward the first side and toward the outlet. 4. The assembly of paragraph 3, comprising an engine cylinder block and wherein the first water jacket portion includes a cylinder block outlet for directing some fluid from the first fluid channels toward the engine cylinder block. 5. The assembly of paragraph 4, comprising a vehicle cabin heater and wherein the outlet from the second water jacket portion directs the at least some of the fluid toward the vehicle cabin heater. 6. The assembly of paragraph 5, comprising a flow control element that is selectively controllable to
(28) prioritize fluid flow through the cylinder block outlet when warming engine oil is desired; and
(29) prioritize fluid flow through the outlet from the second water jacket portion when warming the vehicle cabin heater is desired. 7. The assembly of paragraph 1, comprising a reinforcing plate situated at least partially between the first water jacket portion and the second water jacket portion. 8. The assembly of paragraph 1, comprising
(30) an engine cylinder block including a plurality of cylinders;
(31) a corresponding plurality of injectors associated with the cylinders;
(32) and wherein
(33) the first water jacket portion includes injector port sections adjacent the injectors to facilitate heat transfer from the injectors to fluid in corresponding injector port sections of the first fluid channels;
(34) at least some of the connector fluid channels are situated near the injector port sections to carry heated fluid from the injector port sections to the second water jacket portion to facilitate further heat transfer from the injectors to the fluid. 9. The assembly of paragraph 1, comprising
(35) an engine cylinder block including a plurality of cylinders;
(36) and wherein
(37) the first water jacket portion is situated a first proximity to the engine cylinder block to facilitate a first amount of heat dissipation based on heat transfer from the engine cylinder block to fluid in the first fluid channels; and
(38) the second water jacket portion is situated a second proximity that is further from the engine cylinder block than the first proximity to facilitate a second, additional amount of heat dissipation based on heat transfer from the fluid in the second fluid channels to a material of the second water jacket portion. 10. The assembly of paragraph 1, wherein the first and second water jacket portions comprise aluminum. 11. The assembly of paragraph 1, wherein
(39) the first fluid channels are configured to direct fluid in a first direction along the first plane; and
(40) the second fluid channels are configured to direct fluid in a second, opposite direction along the second plane. 12. The assembly of paragraph 1, wherein
(41) the first water jacket portion includes an area that is situated where coolant may not readily flow from the area; and
(42) at least one of the connector fluid channels is situated near the area to carry coolant from the area to the second water jacket portion. 13. The assembly of paragraph 12, wherein the area is near at least one of an injector or an exhaust valve. 14. A vehicle comprising the assembly of any preceding numbered paragraph.
(43) The preceding description is illustrative rather than limiting in nature. Variations and modifications to the disclosed examples may become apparent to those skilled in the art that do not necessarily depart from the essence of the contribution to the art provided by the disclosed examples. The scope of legal protection provided to the invention can only be determined by studying the following claims.