黄佐华  (教授)

博士生导师 硕士生导师

教师英文名称:Zuohua Huang

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所在单位:能源与动力工程学院 绿色氢电全国重点实验室

职务:教授

学历:博士研究生毕业

办公地点:西安交通大学兴庆校区北二楼四层

性别:男

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学位:博士

学科:动力工程及工程热物理

   

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Ignition delay times measurement and kinetic modeling studies of 1-heptene, 2-heptene and n-heptane at low to intermediate temperatures by using a rapid compression machine (PDF)

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发布时间:2025-04-30

发布时间:2025-04-30

论文名称:Ignition delay times measurement and kinetic modeling studies of 1-heptene, 2-heptene and n-heptane at low to intermediate temperatures by using a rapid compression machine (PDF)

发表刊物:Combust Flame

摘要:In this work, we have firstly investigated the auto-ignition behaviors of 1-heptene, 2-heptene and n-heptane in the low to intermediate temperature range (650–950 K) over various equivalence ratios at 15 and 23 bar using a rapid compression machine. Results show that n-heptane exhibits the expected negative temperature coefficient (NTC) behavior and shows the shortest IDTs among the three fuels, while the NTC behavior for 1-heptene and 2-heptene is moderated and quasi-Arrhenius temperature dependence of the 1st stage IDTs is observed at all test conditions. As the temperature increased over 900 K, the IDTs of the three fuels begin to be consistent indicating a moderated effect of the unsaturated bond. In the NTC temperature region, 1-heptene shows higher reactivity than 2-heptene, while opposite relative reactivity is observed in the temperature beyond the NTC region. The IDT data of 1-heptene, 2-heptene and n-heptane were then used to validate several kinetic models. Results show that the performance of the n-heptane models is generally good, while all the models underestimate the low temperature reactivity of 1-heptene. Finally, a model refinement has been made and the prediction shows better agreement with the present measured IDT as well as the experimental pressure evolution trace in literature.

合写作者:Wu YT, Liu Y, Tang CL, Huang ZH

卷号:2018, 197: 30-40

页面范围:30-40

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发表时间:2018-11-10

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