CHINESE JOURNAL OF ENERGETIC MATERIALS
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乙醇气液两相云雾最低着火温度
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北京理工大学 爆炸科学与技术国家重点实验室, 北京 100081

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国家自然科学基金资助(11772057)


Experimental Study on the Minimum Ignition Temperature of Vapor-Liquid Two-Phase Ethanol/Air Mixtures
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State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology, Beijing 100081, China

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    摘要:

    最低着火温度(minimum ignition temperature, MIT)是判定燃料空气炸药是否发生窜火现象的重要依据。借鉴粉尘最低着火温度的研究方法,以Godbert-Greenwald(G-G)加热炉为主要试验仪器,搭建了气液两相云雾的最低着火温度测试系统,建立云雾瞬态浓度粒度测试装置。选取乙醇为实验试剂,在加热炉中心位置处云雾浓度为7000 g·m-³、燃料分散压力为0.06~0.10 MPa的实验条件下,测试了乙醇气液两相云雾的粒度分布情况变化规律,并分析讨论了粒度分布情况和云雾流速对最低着火温度的影响。结果表明,液滴直径和云雾流速都是影响最低着火温度的重要因素,但在不同的燃料分散压力情况下表现出不同的重要性。在浓度保持7000 g·m-³的条件下,随着燃料分散压力从0.06 MPa增大到0.10 MPa,液滴直径由146.58 μm减小到70.97 μm,乙醇的最低着火温度的先从468 ℃降低到464 ℃,再升高到476 ℃,最终保持在475 ℃。当压力小于0.07 MPa时,影响最低着火温度的主要因素是液滴直径,最低着火温度随液滴直径减小而降低。当压力大于0.07 MPa时,影响最低着火温度的主要因素是云雾流速,流速不变,最低着火温度也保持不变。

    Abstract:

    The minimum ignition temperature is an important basis to determine whether the fuel air explosive has the phenomenon of fire channeling. The mixture of flammable liquid and air forms gas-liquid two-phase cloud. At present, the research on the minimum ignition temperature and the specific influence of cloud concentration, particle size and velocity on the minimum ignition temperature are still in a blank stage. In this paper, the research method of dust minimum ignition temperature is used for reference. With Godbert- Greenwald (G-G) heating furnace as the main test instrument, the minimum ignition temperature test system of gas-liquid two-phase cloud is established. On this basis, the cloud instantaneous concentration particle size test device is established. With ethanol as the experimental reagent, the particle size distribution of ethanol gas-liquid two-phase cloud was measured under the experimental conditions of 7000 g·m-³ cloud concentration at the center of the heating furnace and 0.06-0.10 MPa fuel dispersion pressure. The effects of particle size distribution and cloud velocity on the minimum ignition temperature were analyzed and discussed. Under the concentration of 7000 g·m-³, with the increase of pressure from 0.06 MPa to 0.10 MPa, the particle size decreased from 146.58 μm to 70.97 μm, the lowest ignition temperature of ethanol first decreased from 468 ℃ to 464 ℃, then increased to 476 ℃, and finally kept at 475 ℃. When the pressure is less than 0.07 MPa, the main factor affecting the MIT is the particle size, which decreases with the drop diameter. When the pressure is greater than 0.07 MPa, the main factor affecting the MIT is the flowing velocity. Since the velocity is constant, the minimum ignition temperature also stays stable.

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引用本文

孙楚彦,孙航,张奇.乙醇气液两相云雾最低着火温度[J].含能材料, 2020, 28(12):1178-1183. DOI:10.11943/CJEM2019315.
SUN Chu-yan, SU Hang, ZHANG Qi. Experimental Study on the Minimum Ignition Temperature of Vapor-Liquid Two-Phase Ethanol/Air Mixtures[J]. Chinese Journal of Energetic Materials, 2020, 28(12):1178-1183. DOI:10.11943/CJEM2019315.

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  • 收稿日期: 2019-12-09
  • 最后修改日期: 2020-11-10
  • 录用日期: 2020-06-27
  • 在线发布日期: 2020-11-06
  • 出版日期: 2020-12-25