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首页> 外文期刊>Journal of combustion >The Role of Hydrogen Bonding on Laminar Burning Velocity of Hydrous and Anhydrous Ethanol Fuel with Small Addition of n-Heptane
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The Role of Hydrogen Bonding on Laminar Burning Velocity of Hydrous and Anhydrous Ethanol Fuel with Small Addition of n-Heptane

机译:氢键对少量添加正庚烷的含水和无水乙醇燃料层流燃烧速度的影响

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摘要

The molecular structure of mixed hydrous and anhydrous ethanol with up to 10% v n-heptane had been studied. The burning velocity was examined in a cylindrical explosion combustion chamber. The result showed that the burning velocity of hydrous ethanol is higher than anhydrous ethanol and n-heptane at stoichiometric, rich, and very rich mixtures. The burning velocity of hydrous ethanol with n-heptane drops drastically compared to the burning velocity of anhydrous ethanol with n-heptane. It is caused by two reasons. Firstly, there was a composition change of azeotropic hydrous ethanol molecules within the mixture of fuel. Secondly, at the same volume the number of ethanol molecules in hydrous ethanol was less than in anhydrous ethanol at the same composition of the n-heptane in the mixture. At the mixture of anhydrous ethanol with n-heptane, the burning velocity decreases proportionally to the addition of the n-heptane composition. The burning velocity is between the velocities of anhydrous ethanol and n-heptane. It shows that the burning velocity of anhydrous ethanol mixed with n-heptane is only influenced by the mixture composition.
机译:研究了含水和无水乙醇与正庚烷的含量高达10%的混合分子结构。在圆柱形爆炸燃烧室内检查燃烧速度。结果表明,在化学计量,浓和非常浓的混合物中,含水乙醇的燃烧速度均高于无水乙醇和正庚烷。与正庚烷无水乙醇的燃烧速度相比,正庚烷对水乙醇的燃烧速度急剧下降。这是由两个原因引起的。首先,燃料混合物中共沸含水乙醇分子的组成发生变化。其次,在相同体积下,在混合物中正庚烷组成相同的情况下,含水乙醇中的乙醇分子数量要少于无水乙醇中的乙醇分子数量。在无水乙醇与正庚烷的混合物中,燃烧速度与正庚烷组合物的添加成比例地降低。燃烧速度在无水乙醇和正庚烷的速度之间。结果表明,无水乙醇与正庚烷混合的燃烧速度仅受混合物组成的影响。

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  • 来源
    《Journal of combustion》 |2016年第2016期|9093428.1-9093428.8|共8页
  • 作者单位

    Mechanical Engineering Department, Bali State Polytechnic, Badung Bali 80361, Indonesia,Department of Mechanical Engineering Brawijaya University, Malang East Java, Indonesia;

    Department of Mechanical Engineering Brawijaya University, Malang East Java, Indonesia;

    Department of Mechanical Engineering Brawijaya University, Malang East Java, Indonesia;

    Department of Mechanical Engineering Brawijaya University, Malang East Java, Indonesia;

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