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首页> 外文期刊>Fuel >Development of the chemical kinetic mechanism and modeling study on the ignition delay of liquefied natural gas (LNG) at intermediate to high temperatures and high pressures
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Development of the chemical kinetic mechanism and modeling study on the ignition delay of liquefied natural gas (LNG) at intermediate to high temperatures and high pressures

机译:液化天然气(LNG)在高温下液化天然气(LNG)点火延迟建模研究的发展及大压力

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摘要

In the past decade, liquefied natural gas (LNG) has attracted attention as a sustainable energy resource. The composition of LNG is one of the primary factors that has an influence on the engine knock and determines the fuel reactivity and the heat release in the combustion processes due to the presence of C1-C5 alkanes. The knocking behavior of LNG in gas engines is derived by the methane number (MN) which is directly related to the composition of the mixtures and the operating conditions. The determination of the methane number therefore demands a comprehensive characterization of a fuel mixture towards its auto-ignition properties such as ignition delay time (IDT) based on chemical kinetics of the fuel oxidation. In this study, a detailed chemical kinetic mechanism was developed to discover a correlation between the MNs and IDTs. The comparison of the modeling and experiments results of the ignition of different LNG mixtures containing C1-C5 alkanes and N2, and reference mixtures containing only CH4 and H2 with known MN were carried out in the temperature range 850 & ndash;1550 K, at pressures of 10, 20 and 40 bar, and equivalence ratios (phi) of 0.4 and 1.2. The newly developed model demonstrates very good performance in simulating the IDT of various LNG mixtures, while the improvement in reduction of the maximal discrepancies between model and experiments is from factor 7 & ndash;10 to 1 & ndash;2. Moreover, the modeling studies provided a deeper understanding of the oxidation chemistry of the investigated mixtures.
机译:在过去的十年中,液化天然气(LNG)作为可持续能源资源引起了关注。 LNG的组成是由于C1-C5烷烃的存在,对发动机爆震和确定燃烧过程中的燃料反应性和热释放的主要因素之一。 LNG在气体发动机中的爆震行为由甲烷数(Mn)衍生,甲烷数(Mn)与混合物的组成和操作条件直接相关。因此,甲烷数的测定要求基于燃料氧化的化学动力学朝其自动点火性能朝向其自动点火性能(IDT)综合表征燃料混合物。在该研究中,开发了一种详细的化学动力学机制来发现MN和IDT之间的相关性。在温度范围内,在850&Ndash中,在温度范围内进行含有C1-C5烷烃和N 2的不同LNG混合物的建模和实验结果的比较和仅含有已知Mn的CH 4和H 2的参考混合物; 1550K,压力10,20和40巴,和等效比率(PHI)为0.4和1.2。新开发的模型在模拟各种液化天然气混合物的IDT时表现出非常好的性能,而模型和实验之间的最大差异的改善是来自因子7和ndash; 10到1– 2。此外,建模研究提供了更深入地了解所研究的混合物的氧化化学。

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  • 来源
    《Fuel》 |2021年第15期|121137.1-121137.18|共18页
  • 作者单位

    Phys Tech Bundesanstalt Dept Phys Chem Braunschweig Germany|Tech Univ Carolo Wilhelmina Braunschweig Inst Internal Combust Engines Braunschweig Germany;

    Phys Tech Bundesanstalt Dept Phys Chem Braunschweig Germany;

    Phys Tech Bundesanstalt Dept Phys Chem Braunschweig Germany|Tech Univ Carolo Wilhelmina Braunschweig Inst Internal Combust Engines Braunschweig Germany;

    Tech Univ Carolo Wilhelmina Braunschweig Inst Internal Combust Engines Braunschweig Germany;

    Phys Tech Bundesanstalt Dept Phys Chem Braunschweig Germany|Tech Univ Carolo Wilhelmina Braunschweig Inst Internal Combust Engines Braunschweig Germany;

    Phys Tech Bundesanstalt Dept Phys Chem Braunschweig Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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