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Numerical Study on the Autoignition of Biogas in Moderateor Intense Low Oxygen Dilution Nonpremixed Combustion Systems

机译:中度沼气自燃的数值研究或强力低氧稀释非预混燃烧系统

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摘要

The ignition delay of biogas in mixing layers is investigated using a one-dimensional combustion model, with its application in Moderate or Intense Low oxygen Dilution (MILD) combustion being the focus. The current study reveals the key aspects of the ignition of biogas in a nonpremixed, igniting mixing layer with a hot oxidizer of low oxygen content. The observed characteristics are contrasted against the existing studies on ignition in homogeneous mixtures under similar conditions. Biogas is considered here as a mixture of CH4 with variable amounts CO2. The influence of reactive, thermal, and transport properties of CO2 on the ignition is evaluated using artificial species to mimic the respective characteristics of CO2. While the ignition delay in homogeneous mixtures shows a strong dependence on CO2 content in the fuel, the ignition delay predictions from one-dimensional mixing layers show no significant influence of CO2 levels in biogas. In addition, the influence of oxidizer composition and temperature on ignition delay is determined for CO2 levels ranging from 0% to 90%.A sensitivity analysis of chemical reactions on the ignition delayshows a negligible effect of CO2 concentration in biogas.The current study emphasizes the role of oxidizer composition andtemperature on the ignition characteristics of a MILD biogas flame.
机译:使用一维燃烧模型研究了混合层中沼气的点火延迟,重点研究了其在中度或强烈低氧稀释(MILD)燃烧中的应用。当前的研究揭示了在具有低氧含量的热氧化剂的非预混合,点火混合层中沼气点火的关键方面。所观察到的特性与现有研究在相似条件下在均匀混合物中着火的对比。沼气在这里被认为是CH4与数量可变的CO2的混合物。使用人工物质模拟CO2的各自特性,评估了CO2的反应性,热性和传输性质对点火的影响。虽然均匀混合物中的点火延迟显示出对燃料中CO2含量的强烈依赖性,但一维混合层的点火延迟预测表明,沼气中的CO2水平没有显着影响。另外,对于0%至90%范围内的CO 2水平,确定氧化剂组成和温度对点火延迟的影响。化学反应对点火延迟的敏感性分析显示沼气中二氧化碳浓度的影响可忽略不计。当前的研究强调了氧化剂的组成和温度对轻度沼气火焰点火特性的影响。

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