Volume 34 Issue 2
Feb.  2019
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Atomization performance effects of aviation kerosene mixed with long straight-chain alkanes[J]. Journal of Aerospace Power, 2019, 34(2): 357-367. doi: 10.13224/j.cnki.jasp.2019.02.012
Citation: Atomization performance effects of aviation kerosene mixed with long straight-chain alkanes[J]. Journal of Aerospace Power, 2019, 34(2): 357-367. doi: 10.13224/j.cnki.jasp.2019.02.012

Atomization performance effects of aviation kerosene mixed with long straight-chain alkanes

doi: 10.13224/j.cnki.jasp.2019.02.012
  • Received Date: 2018-01-19
  • Publish Date: 2019-02-28
  • The intermediate products C13—C18 of algae-based aviation kerosene were blended with aviation kerosene at a ratio of 10%, and the spray atomization performance of blended fuel oil was compared. In this experiment, as the carbon number of blended linear paraffins grew, the effect of atomization on fuel spray gradually increased. Among them, the linear alkanes C18 was blended at a ratio of 10%: the maximum reduction of the atomizing cone angle was 5.07%; the average droplet speed was changed by a maximum of 17.6%; Sauters average diameter was changed by a maximum of 15%; Ohnesorge number and Weber number significant changed with increasing injection pressure, affecting the secondary breakage of droplets. In general, the addition of long linear alkanes will have a certain influence on the atomization performance of aviation kerosene.

     

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  • [1]
    柳亚琴,赵国浩.节能减排约束下中国能源消费结构演变分析[J].经济问题,2015(1):15-18,27-33.LIU Yaqin,ZHAO Guohao.The evolution analysis of Chinas energy consumption structure in the constraints of energy-saving and carbon emissions reduction[J].On Economic Problems,2015(1):15-18,27-33.(in Chinese)
    [2]
    任海涛,郭放,杨晓奕.中国微藻航空煤油制备潜能及CO2减排[J].北京航空航天大学学报,2016,42(5):912-919.REN Haitao,GUO Fang,YANG Xiaoyi.Potential production of microalgae aviation fuel and CO2 emissions reduction in China[J].Journal of Beijing University of Aeronautics and Astronautics,2016,42(5):912-919.(in Chinese)
    [3]
    张彤,张文琴,王渊,等.中国石油供应安全状态分析与风险预警[J].中国石油大学学报(社会科学版),2014,30(2):1-7.ZHANG Tong,ZHANG Wenqin,WANG Yuan,et al.Analysis and warning on chinese oil supply security[J].Journal of China University of Petroleum(Edition of Social Sciences),2014,30(2):1-7.(in Chinese)
    [4]
    唐旭,张宝生,邓红梅,等.基于系统动力学的中国石油产量预测分析[J].系统工程理论与实践,2010,30(2):207-212.TANG Xu,ZHANG Baosheng,DENG Hongmei,et al.Forecast and analysis of oil production in China based on system dynamics[J].Systems Engineering-Theory and Practice,2010,30(2):207-212.(in Chinese)
    [5]
    胡洪营,李鑫,于茵,等.藻类生物质能源—基本原理、关键技术与发展路线图[M].北京:科学出版社,2011.
    [6]
    CHISTI Y.Biodiesel from microalgae[J].Biotechnology Advances,2007,25(3):294-306.
    [7]
    YOO G,PARK M S,YANG J W.Lipid content in microalgae determines the quality of biocrude and energy return on investment of hydrothermal liquefaction[J].Applied Energy,2015,156:354-361.
    [8]
    ULLAH K,AHMAD M S,SHARMA V K,et al.Assessing the potential of algal biomass opportunities for bioenergy industry[J].Fuel,2015,143(4):414-423.
    [9]
    YANG Xiaoyi,GUO Fang,XUE Song.Carbon distribution of algae-based alternative aviation fuel obtained by different pathways[J].Renewable and Sustainable Energy Reviews,2016,54:1129-1147.
    [10]
    ZHAO C,BRUCK T,LERCHER J.Catalytic deoxygenation of microalgae oil to green hydrocarbons[J].Green Chemistry,2013,15(7):1720-1739.
    [11]
    陈俊英,马晓建,冯向应,等.国内外生物航油研究现状[J].可再生能源,2012,30(2):120-124.CHEN Junying,MA Xiaojian,FENG Xiangying,et al.Status study of aviation biofuel at home and abroad[J].Renewable Energy,2012,30(2):120-124.(in Chinese)
    [12]
    闫博,杨有亮.加氢裂化装置航煤冰点不合格原因分析与对策[J].广州化工,2010,38(3):183-184.YAN Bo,YANG Youliang.Analysis and countermcasures of unqualified freezing point of the jet fuel in hydrocracking unit[J].Guangzhou Chemical Industry,2010,38(3):183-184.(in Chinese)
    [13]
    周婷雅,李江弘,谭若樵,等.正十七烷与正十八烷对航空煤油理化性能及液滴平均直径的影响[J].航空动力学报,2016,31(5):1133-1141.ZHOU Tingya,LI Jianghong,TAN Ruoqiao,et al.Impact of heptadecance and octadecane on physical properties and SMD of kerosene[J].Journal of Aerospace Power,2016,31(5):1133-1141.(in Chinese)
    [14]
    曾青华,范慧杰,王岳,等.基于主动轮廓方法提取雾化锥角[J].航空动力学报,2014,29(5):912-919.ZENG Qinghua,FAN Huijie,WANG Yue,et al.Spray angle tracking based on active contour method[J].Journal of Aerospace Power,2016,29(5):912-919.(in Chinese)
    [15]
    ZHANG Haibin,BAI Bofeng,LIU Li,et al.Droplet dispersion characteristics of the hollow cone sprays in crossflow[J].Experimental Thermal and Fluid Science,2013,45(2):25-33.
    [16]
    GAN Zhiwen,REN Haitao,YANG Xiaoyi.Effect of linear alkane C17,C18 on Spray characteristics of kerosene in hollow cone pressure swirl spray[J].Atomization and Sprays,2017,27(6):207-212.
    [17]
    石日昕.飞机燃油系统高空性及其计算[J].河北工业科技,2013,30(4):244-248.SHI Rixin.Altitude performance of aircraft fuel system and the calculation[J].Hebei Journal of Industrial Science and Technology,2013,30(4):244-248.(in Chinese)
    [18]
    REN N,MARSHALL A W.Characterizing the initial spray from large weber number impinging jets[J].International Journal of Multiphase Flow,2014,58(1):205-213.
    [19]
    MARCHIONE T,ALLOUIS C,AMORESANO A,et al.Experimental investigation of a pressure swirl atomizer spray[J].Journal of Propulsion and Power,2007,23(5):1096-1101.
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