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Effects of injection strategies on low‐speed marine engines using the dual fuel of high‐pressure direct‐injection natural gas and diesel

机译:利用高压直喷天然气和柴油机双燃料注射策略对低速海洋发动机的影响

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摘要

Abstract Pilot‐ignited high‐pressure direct‐injection (HPDI) natural gas engines have drawn much attention since being proposed, as these engines can maintain high performance and lead to clean combustion compared with conventional diesel engines. This prospective concept is not only used in vehicle engines but also used in large‐scale marine engines. In this study, the effects of injection strategies of dual fuels on combustion characteristics and emissions were investigated using the computational fluid dynamics (CFD) code CONVERGE coupled with a reduced n‐heptane/methane mechanism. The results showed that the effects of absolute injection timing (AIT) on the combustion characteristics and emissions are similar to those of traditional diesel engines. As the AIT varies from advanced by 4°CA to retarded by 4°CA, the peak values of the in‐cylinder pressure and temperature decrease gradually. However, a conventional trade‐off between NOx and soot/CO/HC/ISFC emissions can also be observed as the AIT is retarded. In contrast, relative injection timing (RIT) has more complicated impacts on the combustion and emissions characteristics. The in‐cylinder temperature distribution and concentration stratification change as the gas jet initially interacts with the pilot flame. The effects of the gas injection timing on the combustion characteristics and indicated specific fuel consumption are also similar to those of the AIT, but the emissions are quite different. The pilot injection timing shows minimal influence on the main combustion process. Better performance can be obtained with partially premixed combustion with a slightly late injection timing compared with that of the original (ORG) base case.
机译:摘要试图点火高压直喷(HPDI)天然气发动机由于提出而引起了很多关注,因为这些发动机可以保持高性能并导致与传统的柴油发动机相比的清洁燃烧。这种潜在的概念不仅用于车辆发动机,而且用于大型海洋发动机。在这项研究中,使用计算流体动力学(CFD)代码与降低的正庚烷/甲烷机构相结合,研究了双燃料注射策略对燃烧特性和排放的影响。结果表明,绝对喷射正时(AIT)对燃烧特性和排放的影响与传统柴油发动机的影响类似。由于AIT从高级4°C CA的变化以延迟4°CA,因此缸内压力的峰值和温度逐渐降低。然而,也可以观察到NOx和SOOT / CO / HC / ISFC排放之间的传统折衷,因为AIT被延迟。相反,相对喷射正时(RIT)对燃烧和排放特性具有更复杂的影响。随着气体射流最初与先导火焰相互作用,缸内温度分布和浓度分层变化。气体喷射时序对燃烧特性的影响和指示的特定燃料消耗也与AIT的燃料消耗相似,但排放量很大。导频注射定时显示对主燃烧过程的最小影响。与原始(ORG)基础壳体相比,通过部分预混合的燃烧可以通过部分预混的燃烧获得更好的性能。

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