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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Lean-Burn Characteristics of a Heavy-Duty Diesel Engine Retrofitted to Natural-Gas Spark Ignition
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Lean-Burn Characteristics of a Heavy-Duty Diesel Engine Retrofitted to Natural-Gas Spark Ignition

机译:改装为天然气火花点火的重型柴油发动机的稀燃特性

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摘要

Increased utilization of natural gas (NG) in the transportation sector can decrease the use of petroleum-based fuels and reduced greenhouse gas emissions. Heavy-duty diesel engines retrofitted to NG spark ignition (SI) can achieve higher efficiencies and low NOX, CO, and hydrocarbon (HC) emissions when operated under lean-burn conditions. To investigate the SI lean-burn combustion phenomena in a bowl-in-piston combustion chamber, a conventional heavy-duty direct-injection CI engine was converted to SI operation by replacing the fuel injector with a spark plug and by fumigating NG in the intake manifold. Steady-state engine experiments and numerical simulations were performed at several operating conditions that changed spark timing (ST), engine speed, and mixture equivalence ratio. Results suggested a two-zone NG combustion inside the diesel-like combustion chamber. More frequent and significant late-burn (including double-peak heat release rate) was observed for advanced ST. This was due to the chamber geometry affecting the local flame speed, which resulted in a faster and thicker flame in the bowl but a slower and thinner flame in the squish volume. Good combustion stability (COV-(IMEP) 3%), moderate rate of pressure-rise, and lack of knocking showed promise for heavy-duty CI engines converted to NG SI operation.
机译:运输部门对天然气(NG)利用率的提高可以减少基于石油的燃料的使用并减少温室气体的排放。在稀薄燃烧条件下运行时,改装为NG火花点火(SI)的重型柴油发动机可以实现更高的效率,并降低NOX,CO和碳氢化合物(HC)的排放。为了研究缸内活塞燃烧室中的SI稀薄燃烧现象,通过将传统的重型直喷CI发动机替换为火花塞,并通过对进气口中的NG进行熏蒸,将其转换为SI操作。流形。在几种运行条件下进行了稳态发动机实验和数值模拟,这些条件改变了火花正时(ST),发动机转速和混合气当量比。结果表明类柴油燃烧室内有两区NG燃烧。对于晚期ST,观察到更频繁和明显的晚期烧伤(包括双峰放热率)。这是由于腔室的几何形状会影响局部火焰速度,从而导致碗中的火焰更快更浓,而挤压体积的火焰更慢更稀。良好的燃烧稳定性(COV-(IMEP)<3%),适度的升压率和不爆震表明,重型CI发动机有望转换为NG SI操作。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2019年第7期|071013.1-071013.12|共12页
  • 作者单位

    West Virginia Univ, CAFEE, POB 6106 ESB E-275, Morgantown, WV 26506 USA;

    West Virginia Univ, CAFEE, POB 6106 ESB E-275, Morgantown, WV 26506 USA|West Virginia Univ, CIGRU, POB 6106 ESB E-275, Morgantown, WV 26506 USA;

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