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机载制氮系统中空纤维膜分离特性

冯诗愚 卢吉 刘卫华 蒋军昌 刘苏彦

冯诗愚, 卢吉, 刘卫华, 蒋军昌, 刘苏彦. 机载制氮系统中空纤维膜分离特性[J]. 航空动力学报, 2012, 27(6): 1332-1339.
引用本文: 冯诗愚, 卢吉, 刘卫华, 蒋军昌, 刘苏彦. 机载制氮系统中空纤维膜分离特性[J]. 航空动力学报, 2012, 27(6): 1332-1339.
FENG Shi-yu, LU Ji, LIU Wei-hua, JIANG Jun-chang, LIU Su-yan. Separation performance of hollow fiber membrane for on-board inerting gas generating system[J]. Journal of Aerospace Power, 2012, 27(6): 1332-1339.
Citation: FENG Shi-yu, LU Ji, LIU Wei-hua, JIANG Jun-chang, LIU Su-yan. Separation performance of hollow fiber membrane for on-board inerting gas generating system[J]. Journal of Aerospace Power, 2012, 27(6): 1332-1339.

机载制氮系统中空纤维膜分离特性

基金项目: 国家自然科学基金(50906066); 南京航空航天大学引进人才科研基金(S1030-014)

Separation performance of hollow fiber membrane for on-board inerting gas generating system

  • 摘要: 采用微元方法建立了机载制氮系统中空纤维膜数学模型,并使用龙格-库塔法对其进行了数值计算,与实验数据进行对比后显示,误差不超过10%.然后分析了单位膜面积进料量、膜丝(membrane fiber)内外压比和氧氮渗透比其对产品气氧体积分数和制氮效率的影响.结果表明:增加单位膜面积进料量虽然可提高制氮效率的增加,但是会显著降低产品气中氮的体积分数,因此需要采用合适的流程设计以克服此缺点.压比和氧气渗透系数的增加均会使氧体积分数与制氮效率减小,但是提高渗透比对制氮效率影响不大,因此对于气体分离过程是有利的.通过计算模型及实验数据,分析了中空纤维膜分离理想度随压比和温度的变化关系,结果显示压力对理想度影响较大,随着压力增加,实际分离过程与理论值偏差趋大,而温度对理想度影响较小.

     

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出版历程
  • 收稿日期:  2011-06-23
  • 刊出日期:  2012-06-28

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