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High-pressure direct injection of methanol and pilot diesel: A non-premixed dual-fuel engine concept

机译:高压直接注射甲醇和先导柴油:非预混的双燃料发动机概念

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摘要

In order to reduce the climate impacts, methanol produced from carbon-neutral methods plays an important role. Due to its oxygen content and high latent heat, methanol combustion can achieve low soot and NOx emissions. In the present study, direct injection (DI) of methanol is investigated in a non-premixed dual-fuel (DF) setup with diesel pilot. The present DF engine study is carried out via a specially-designed new cylinder head operating with a centrally located methanol injector and with an off-centered diesel pilot injector. The target is to inject methanol close to top dead center (TDC) in a similar fashion as in standard diesel combustion enabling robust operation with high efficiency. The ignition of the DI methanol is achieved with an almost simultaneously injected diesel pilot. The experiments were conducted in a single-cylinder heavy-duty research engine at a constant engine speed of 1500 rpm with a compression ratio of 16.5. The indicated mean effective pressure (IMEP) varied between 4.2 and 13.8 bar while the methanol substitution ratio was swept between 45 and 95%. In addition, the diesel pilot and methanol injection timings were varied for optimum efficiency and emissions. The introduced non-premixed DF concept using methanol as the main fuel showed robust ignition characteristics, stable combustion, and low CO and HC emissions. The results indicate that increasing both the load and the methanol substitution ratio can increase the thermal efficiency and the stability of combustion (lower COV) together with decreased CO and HC emissions.
机译:为了减少气候影响,由碳中性方法产生的甲醇起着重要作用。由于其氧气含量和高潜热,甲醇燃烧可实现低烟灰和NOx排放。在本研究中,在具有柴油飞行员的非预混的双燃料(DF)设置中研究了直接注射(DI)甲醇。目前的DF发动机研究通过专门设计的新汽缸盖进行,操作与中心位于甲醇喷射器,并带有偏心柴油先导器注射器。目标是以类似的方式将甲醇靠近顶部死点(TDC),与标准柴油燃烧一样,能够高效率启用鲁棒操作。通过几乎同时注入柴油飞行员实现二甲醇的点火。实验在单缸重型研究发动机以1500rpm的恒定发动机速度进行,压缩比为16.5。所示的平均有效压力(IMEP)在4.2和13.8巴之间变化,而甲醇取代比在45%至95%之间。此外,柴油飞行员和甲醇注射定时变化,以获得最佳效率和排放。使用甲醇引入的非预混的DF概念,因为主燃料显示出稳健的点火特性,稳定的燃烧和低CO和HC排放。结果表明,增加负荷和甲醇取代比可以增加热效率和燃烧(下COV)的稳定性以及降低的CO和HC排放。

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