The present disclosure relates to a fuel injector of an engine and, more particularly, to a nozzle spray pattern of the fuel injector.
A two-stroke opposed piston engine utilizes two common rail fuel injectors per cylinder with an injector on either side of the cylinder. The high-power density of the engine requires high fuel quantities from the injectors which requires higher hydraulic flow from the injector nozzles. The spray patterns of the injector nozzles are clocked and the spray of one injector is “laced” with the spray of the injector from the other side of the engine or the sprays of the two injectors collide with one another. This architecture results in spray pattern angles which are much deeper than conventional four-stroke engines. However, the larger spray hole sizes have demonstrated less than optimal spray plume quality. Thus, a need exists for an improved injector nozzle with improved fuel flow to each spray hole of the injector nozzle and improved fuel spray quality for combustion.
In one aspect of the present disclosure, a fuel injector nozzle is provided comprising a plurality of injector orifices including at least a first injector orifice, a second injector orifice, and a third injector orifice, wherein the first injector orifice extends parallel to the second injector orifice, and the first and second injector orifices are angled relative to the third injector orifice
In another aspect of the present disclosure, a fuel injector nozzle is provided comprising at least two sets of injector orifices, each set of injector orifices including a first injector orifice and a second injector orifice, wherein the first injector orifice is parallel to the second injector orifice, and each set of injector orifices is angled relative to at least one other set of injector orifices.
In a further aspect of the present disclosure, a fuel injector nozzle is provided comprising a plurality of injector orifices including at least a first injector orifice, a second injector orifice, and a third injector orifice, wherein the first injector orifice has an inlet and an outlet, the second injector orifice has an inlet and an outlet, and the third injector orifice has an inlet and an outlet, the inlets of the first injector orifice, the second injector orifice, and the third injector orifice each being evenly spaced apart on a nozzle sac, the outlet of the first injector orifice and the outlet of the second injector orifice being spaced apart a first distance, and the outlet of the second injector orifice and the outlet of the third injector orifice being spaced apart a second distance, the second distance being greater than the first distance.
Advantages and features of the embodiments of this disclosure will become more apparent from the following detailed description of exemplary embodiments when viewed in conjunction with the accompanying drawings.
Referring to
With reference to
Injector orifices 26 are provided in three sets 27 of two separate injector orifices 26a and 26b. The two separate injector orifices 26a and 26b of each set 27 are parallel to one another along their length and have the same angle trajectory, while each set 27 of injector orifices 26 is angled relative to the other sets 27 of injector orifices 26. As such, inlets 28 are positioned evenly or substantially evenly about nozzle sac 24, while outlets 30 of injector orifices 26a and 26b of set 27 are adjacent to one another and spaced apart by a first distance d1, and outlets 30 of each different set 27 are spaced apart from outlets 30 of the other sets 27 by a second distance d2, which is greater than first distance d1. Though sets 27 include two separate orifices 26, the proximity of the two separate orifices 26 allow for a single spray plume 20 to be produced by each separate set 27.
In various embodiments, a diameter of inlets 28 of injector orifices 26 may be larger than a diameter of outlets 30 of injector orifices 26. The relationship between the diameters of inlets 28 and outlets 30 can be characterized as a K-factor, calculated as follows:
The parallel distance between injector orifices 26a and 26b is defined by material stress limitations due to the high fluid pressure (+1800 bar) and manufacturing capabilities.
Referring to
With reference to
In addition, and with reference to
Specifically, with reference to
Specifically, with reference to
As can be seen in graphic 1004 and 1104 in
Furthermore, and as shown below in Table 1, nozzles of the present disclosure also may allow for improved power, indicated thermal efficiency (ITE), and heat losses per power ratio, and/or reduced soot as compared to the known nozzle. Each of the various improvements discussed herein may allow for better combustion within the combustion chamber of cylinders of the engine, and therefore improved power and/or efficiency of the engine.
While various embodiments of the disclosure have been shown and described, it is understood that these embodiments are not limited thereto. The embodiments may be changed, modified, and further applied by those skilled in the art. For instance, the present disclosure may further be applied to fuel injectors in other various types of combustion engines. Therefore, these embodiments are not limited to the detail shown and described previously, but also include all such changes and modifications.
This application is a continuation of International PCT Application No. PCT/US2021/057655 filed on Nov. 2, 2021, which claims priority to U.S. Provisional Pat. Application No. 63/108,550 filed Nov. 2, 2020, the disclosure of each of which is incorporated herein by reference.
This Project Agreement Holder (PAH) effort was sponsored by the U.S. Government under Other Transaction number W15QKN-14-9-1002 between the National Advanced Mobility Consortium and the Government. The U.S. Government is authorized to reproduce and distribute reprints for Governmental purposes notwithstanding any copyright notation thereon.
Number | Date | Country | |
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63108550 | Nov 2020 | US |
Number | Date | Country | |
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Parent | PCT/US2021/057655 | Nov 2021 | WO |
Child | 18307537 | US |