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Fuel Injection Strategy for Reducing NO{sub}x Emissions From Heavy-Duty Diesel Engines Fueled With DME

机译:燃料喷射策略减少{Sub} X与DME加油的重型柴油发动机排放

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A new fuel injection strategy is proposed for DME engines. Under this strategy, a pre-injection up to 40% demand is conducted after intake valves closing. Due to high volatility of DME, a lean homogeneous mixture can be formed during the compression stroke. Near TDC, a pilot injection is conducted. Combined fuel mass for the pre-injection and pilot injection is under the lean combustion limit of DME. Thus, the mixture is enriched and combustion can take place only in the neighborhood of sprays of the pilot injection. The main injection is conducted after TDC. Because only about half of the demand needs to be injected and DME evaporates almost immediately, combustion duration for the main injection plus the unburnt fuel in the cylinder should not be long because a large portion of the fuel has been premixed with air. With a high EGR rate and proper timing for the main injection, low-temperature combustion could be realized. Under this lean-oxygen and low-temperature combustion, NO{sub}x formation is suppressed. It is believed that with this new fuel injection strategy, NO{sub}x emissions from DME engines could possibly meet the US 2010 emissions standard for NO{sub}x with a simplified aftertreatment system.
机译:为DME发动机提出了一种新的燃油喷射策略。在这种策略下,进样后,在进气阀关闭后进行高达40%的需求。由于DME的高挥发性,可以在压缩冲程期间形成贫均匀的混合物。近TDC,进行先导喷射。用于预喷射和先导注射的组合燃料质量是DME的贫燃烧极限。因此,富集混合物,燃烧可以仅在先导喷射喷射的喷雾附近进行。在TDC之后进行主注射。因为只需要注射大约一半的需求,并且DME几乎立即蒸发,主要喷射的燃烧持续时间加上圆筒中的未燃烧燃料不应长,因为大部分燃料已经用空气预混合。通过高EGR速率和主喷射的适当定时,可以实现低温燃烧。在该贫氧和低温燃烧下,抑制了NO {Sub} x形成。据信,通过这种新的燃料喷射策略,DME发动机的NO {Sub} x排放可能与简化后处理系统的NO {Sub} X满足美国2010的排放标准。

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