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Injection Strategy in Natural Gas-Diesel Dual-Fuel Premixed Charge Compression Ignition Combustion under Low Load Conditions

机译:低负荷条件下天然气-柴油双燃料预混合充量压缩点火燃烧的喷射策略

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摘要

Dual-fuel premixed charge compression ignition (DF-PCCI) combustion has been proven to be a viable alternative to conventional diesel combustion in heavy-duty compression ignition engines due to its low nitrogen oxides (NOx) and particulate matter (PM) emissions.When natural gas (NG) is applied to a DF-PCCI engine,its low reactivity reduces the maximum pressure rise rate under high loads.However,the NG-diesel DF-PCCI engine suffers from low combustion efficiency under low loads.In this study,an injection strategy of fuel supply (NG and diesel) in a DF-PCCI engine was investigated in order to reduce both the fuel consumption and hydrocarbon (HC) and carbon monoxide (CO) emissions under low load conditions.A variation in the NG substitution and diesel start of energizing (SOE) was found to effectively control the formation of the fuel-air mixture.A double injection strategy of diesel was implemented to adjust the local reactivity of the mixture.Retardation of the diesel pilot SOE and a low fraction of the diesel pilot injection quantity were favorable for reducing the combustion loss.The introduction of exhaust gas recirculation (EGR) improved the fuel economy and reduced the NOx and PM emissions below Euro Ⅵ regulations by retarding the combustion phasing.The combination of an NG substitution of 40%,the double injection strategy of diesel,and a moderate EGR rate effectively improved the combustion efficiency and indicated efficiency,and reduced the HC and CO emissions under low load conditions.
机译:事实证明,双燃料预混合增压压燃(DF-PCCI)燃烧由于其氮氧化物(NOx)和颗粒物(PM)的排放量低,是重型压燃发动机中常规柴油机燃烧的可行替代方案。天然气(NG)用于DF-PCCI发动机,其低反应性降低了高负荷下的最大压力上升率。但是,NG-柴油DF-PCCI发动机在低负荷下燃烧效率较低。为了减少低负荷条件下的燃油消耗以及碳氢化合物(HC)和一氧化碳(CO)排放,研究了DF-PCCI发动机的燃油供应(NG和柴油)的喷射策略。柴油机开始加电(SOE)可以有效地控制燃油-空气混合物的形成。采用柴油双喷射策略来调节混合物的局部反应性。柴油引燃喷射量的低比例有利于减少燃烧损失。废气再循环(EGR)的引入通过延迟燃烧阶段,改善了燃油经济性,并将NOx和PM排放降低到EuroⅥ规定以下。 40%的NG替代,柴油的双喷射策略和适中的EGR率有效提高了燃烧效率和指示效率,并减少了低负荷条件下的HC和CO排放。

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  • 来源
    《工程(英文)》 |2019年第003期|548-557|共10页
  • 作者单位

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology(KAIST), Daejeon 34141, Republic of Korea;

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology(KAIST), Daejeon 34141, Republic of Korea;

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology(KAIST), Daejeon 34141, Republic of Korea;

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