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Controlling combustion with negative valve overlap in a gasoline-diesel dual-fuel compression ignition engine

机译:在汽油-柴油双燃料压缩点火发动机中通过负气门重叠控制燃烧

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Premixed charge compression ignition technology for diesel engines has been attracting increasing interest in recent years because of its ability to reduce nitrogen oxide emissions. At the same time, homogeneous charge compression ignition technology for gasoline engines also has been expected for high thermal efficiency and reduction in nitrogen oxide emissions. However, both methods have common challenges, such as limited part-load operation and ignition timing control. Additionally, under very low load conditions, thermal efficiency decreases due to the difficulty of providing steady combustion. In this study, a dual-fuel method has been applied to control the ignition timing and combustion duration. As a high ignitability fuel, diesel fuel was supplied to the direct injector, and as an inhibitor, gasoline was supplied to the port injector. Under very low load conditions, negative valve overlap and multiple fuel injection were applied. Diesel fuel injected during the negative valve overlap duration oxidised partially in the high-temperature environment with oxygen-contained exhaust gas of the previous cycle. The oxidation reaction of fuel during the main compression stroke was inhibited by the products from these reactions that occurred during negative valve overlap. Thus, it was possible to control the timing of the heat release immediately after top dead centre. As a consequence, high controllability of combustion and high thermal efficiency at low loads were achieved through independent control of the ratio of diesel fuel injected at negative valve overlap and the fractions of the two fuels.
机译:近年来,用于柴油发动机的预混合增压压缩点火技术由于其减少氮氧化物排放的能力而引起了越来越多的关注。同时,还期望用于汽油发动机的均质充量压缩点火技术具有较高的热效率并减少氮氧化物的排放。但是,这两种方法都有共同的挑战,例如有限的部分负荷运行和点火正时控制。另外,在非常低的负载条件下,由于难以提供稳定的燃烧,热效率降低。在这项研究中,已采用双燃料方法来控制点火正时和燃烧持续时间。作为高可燃性燃料,柴油被提供给直接喷射器,而作为抑制剂,汽油被提供给进气道喷射器。在非常低的负载条件下,施加负气门重叠和多次燃油喷射。在负气门重叠期间喷射的柴油在高温环境中被前一循环的含氧废气部分氧化。在负气门重叠期间发生的这些反应的产物抑制了主压缩冲程期间燃料的氧化反应。因此,可以在上止点之后立即控制放热的时间。结果,通过独立地控制在负气门重叠处喷射的柴油比例和两种燃料的比例,实现了在低负荷下的高燃烧控制性和高热效率。

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