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An Investigation of the Combustion Process of a Heavy-Duty Natural Gas-Diesel Dual Fuel Engine

机译:重型天然气-柴油双燃料发动机燃烧过程的研究

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This paper investigates the effect of the addition of natural gas (NG) and engine load on the cylinder pressure, combustion process, brake thermal efficiency, and methane combustion efficiency of a heavy-duty NG-diesel dual fuel engine. Significantly increased peak cylinder pressure (PCP) was only observed with the addition of NG at 100% load. The addition of a relatively large amount NG at high load slightly retarded the premixed combustion, significantly increased the peak heat release rate (PHRR) of the diffusion combustion, decreased the combustion duration, and advanced combustion phasing. The accelerated combustion process and increased heat release rate (HRR) at high load were supported by the increased NO _( x ) emissions with the addition of over 3% NG (vol.). By comparison, when operated at low load, the addition of a large amount of NG decreased the PHRR of the premixed combustion and slightly increased the PHRR during the late diffusion combustion. Improved brake thermal efficiency was only observed with the addition of a relatively large amount of NG at high load. The improved thermal efficiency was due to a decrease in combustion duration and the shifting of the combustion phasing toward the optimal phasing. The overall combustion efficiency of the dual fuel operation was always lower than diesel-only operation as indicated by the excess emissions of the unburned methane and carbon monoxide from dual fuel engine. This deteriorated the potential of dual fuel engine in further improving the brake thermal efficiency although the combustion duration of dual fuel engine at high load was much shorter than diesel only operation. The addition of NG at low load should be avoided due to the low combustion efficiency of NG and the decreased thermal efficiency. Approaches capable of further improving the in-cylinder combustion efficiency of NG should enable further improvement in the brake thermal efficiency.
机译:本文研究了添加天然气(NG)和发动机负载对重型NG柴油双燃料发动机的气缸压力,燃烧过程,制动热效率和甲烷燃烧效率的影响。仅在100%负载下添加NG时,才能观察到峰值气缸压力(PCP)显着增加。在高负荷下添加相对大量的NG会稍微延迟预混燃烧,显着增加扩散燃烧的峰值放热率(PHRR),缩短燃烧持续时间,并提前进行燃烧定相。增加了超过3%的NG(体积),增加了NO _(x)排放,从而加快了燃烧过程并提高了高负荷下的放热率(HRR)。相比之下,当在低负载下运行时,添加大量的NG会降低预混燃烧的PHRR,并在后期扩散燃烧期间略微提高PHRR。只有在高负荷下添加相对大量的NG才能观察到制动热效率的提高。热效率的提高归因于燃烧持续时间的减少以及燃烧定相向最佳定相的转移。双燃料运行的总体燃烧效率始终低于纯柴油运行,这是由于双燃料发动机未燃烧的甲烷和一氧化碳的过量排放所表明的。尽管双燃料发动机在高负载下的燃烧持续时间比仅柴油运行要短得多,但这恶化了双燃料发动机进一步提高制动热效率的潜力。由于天然气的低燃烧效率和降低的热效率,应避免在低负荷下添加天然气。能够进一步提高NG的缸内燃烧效率的方法应能够进一步提高制动器的热效率。

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