Influent of inerting process of multi-bays central fuel tank for civil passenger airplane under various gas distributions
-
摘要: 在假设燃油箱整体和各隔仓无质量堆积的前提下,建立了一种可根据压力差自动确定流动方向和流量的数学模型,并给出了迭代法计算的步骤,然后采用微元法获得了惰化过程中各隔仓体积氧浓度随换气次数的关系.以波音747中央翼油箱为对象,与国外文献中公布的实验数据进行了对比,验证了所建模型有较高的计算精度.以国产某型客机中央翼燃油箱为研究对象,给出了4种不同的富氮气体进气孔设置及2种气体分配方式,比较了它们对惰化过程的影响,结果显示,将富氮气体按体积平均方式通入所有的隔仓具有最好的惰化效果,而将进气孔口设置在外侧隔仓并单独进气的惰化效果最差,而且在中部对称位置的隔仓上设置进气孔优于非对称位置设置进气孔.Abstract: Based on the assumption of zero mass accumulation in the fuel tank and all bays, a mathematical model to automatically determine the flow direction and rate via the pressure difference was set up, and iterative steps were offered. Then, the mole concentration of the oxygen in the each bay related to volumetric tank exchange of ullage via the differential method was obtained. Adopting Boeing 747 central wing tank as the object of study, the calculating results of the models show highly accurate with the experimental data published on the foreign literature. The central fuel tank of an unnamed domestic passenger airplane was employed to study the inerting process influenced by 4 different configurations of the nitrogen-enriched air inlet port and 2 different gas distributions. The result reveals that the inering effect is the best to distribute the nitrogen-enriched air into all bays according to the volume average while it is the worst to solo distribute the nitrogen-enriched air into an outside bay. Moreover, it is better to emplace the inlet ports on the symmetrical bays than the asymmetrical bays.
-
Key words:
- fuel inerting /
- washing /
- central fuel tank /
- multi bays /
- iterative method
-
[1] William M C.The effect of fuel on an inert ullage in a commercial transport airplane fuel tank .DOT/FAA/AR-05/25,2005 [2] 王小平,肖再华.飞机燃油箱氮气惰化的机理分析及应用[J].航空科学技术,2008,20(8):24-26 Wang Xiaoping,Xiao Zaihua.Fundamentally analysis on inerting of aircraft fuel tank with nitrogen-enriched air and its application[J].Aeronautical Science and Technology,2008,20(8):24-26 (in Chinese) [3] 刘小芳,刘卫华.飞机供氧和燃油箱惰化技术概况[J].北华航天工业学院学报,2008,18(3):4-7 Liu Xiaofang,Liu Weihua.Outline of airborne oxygen supplied and its fuel tanks inerted[J].Journal of North China Institute of Aerospace Engineering,2008,18(3):4-7(in Chinese) [4] Michael B,William M C,Richard H,et al.Flight-testing of the FAA onboard inert gas generation system on an airbus A320 .DOT/FAA/AR-03/58,2004 [5] Michael B,William M C.Ground and flight testing of a Boeing 737 center wing fuel tank inerted with nitrogen-enriched air .DOT/FAA/AR-01/63,2001 [6] 高秀峰,刘卫华,熊斌,等.燃油箱冲洗惰化过程理论研究[J].西安交通大学学报,2010,46(9):16-20 Gao Xiufeng,Liu Weihua,Xiong Bin,et al.Theoretical study of washing inerting process in aircraft fuel tank[J].Journal of Xi’an Jiaotong University,2010,46(9):16-20(in Chinese) [7] Michael B,William M C.Inerting of a vented aircraft fuel tank test article with nitrogen-enriched air .DOT/FAA/AR-01/6,2001 [8] William M C,Ole K.Inerting a Boeing 747sp center wing tank scale model with nitrogen-enriched air .DOT/FAA/AR-02/51,2002 [9] William M C,Timothy B.Modeling in-flight inert gas distribution in a 747 center wing fuel tank .AIAA 2005-4906,2005
点击查看大图
计量
- 文章访问数: 12306
- HTML全文浏览量: 215
- PDF下载量: 998
- 被引次数: 0