scholarly journals Experimental Study of an On-board Fuel Tank Inerting System

Author(s):  
Fei Wu ◽  
Guiping Lin ◽  
Yu Zeng ◽  
Rui Pan ◽  
Haoyang Sun
2015 ◽  
Vol 28 (2) ◽  
pp. 394-402 ◽  
Author(s):  
Yan Cai ◽  
Xueqin Bu ◽  
Guiping Lin ◽  
Bing Sun ◽  
Yu Zeng ◽  
...  

2021 ◽  
Vol 34 (3) ◽  
pp. 82-93
Author(s):  
Xiaotian PENG ◽  
Shiyu FENG ◽  
Chaoyue LI ◽  
Chen CHEN ◽  
Weihua LIU

2014 ◽  
Vol 1061-1062 ◽  
pp. 1140-1143
Author(s):  
Dong Jie Liu

The numerical study of the influence of the ambient pressure of the fuel tank on the inerting effect of an aircraft fuel tank inerting system was carried out. The mathematical model of ullage equilibrium oxygen concentration has been established using the differential time calculation method based on the mass conservation and ideal gas state equations. The variations of ullage oxygen concentration and dissolved oxygen concentration in the fuel with time under different working conditions have been obtained. The results have shown that the as the ambient pressure of the fuel tank became lower, the speed of the decreasing of oxygen concentration of the fuel tank ullge and the dissolved oxygen concentration of the fuel was slower.


Author(s):  
Chaoyue Li ◽  
Shiyu Feng ◽  
Chen Chen ◽  
Xiaotian Peng ◽  
Weihua Liu

The onboard inert gas generation system with turbocharger (OBIGGSTC) was proposed for better inerting performance of an aircraft fuel tank. The operating principle and method of the system were introduced, and the mathematical model of the major component was deduced. Then, the characteristic of the system was simulated based on the software AMESim. Compared with the traditional onboard inert gas generation system (OBIGGS), the proposed system has the potential advantages of reducing the weight and volume of the air separation system by decreasing the number of hollow fiber membrane modules (HFMMs) from a maximum number of eight to one at 0.3 MPa of the bleed air from the engine. When both inerting systems have a single HFMM configuration, the OBIGGSTC can substantially reduce the inerting time by 66.6% compared with the OBIGGS at 0.3 MPa of the bleed air. Due to the turbine applied, the mass flow rate of the bleed air of the inerting system with turbine is greater than the traditional system. The compensatory loss of the proposed system is less than the OBIGGS by a maximum of 57.39% when the bleed air pressure varies from 0.3 to 0.8 MPa with a range in flight time from 4 h to 10 h. By analyzing the two inerting system, the OBIGGSTC has better performance than the OBIGGS.


2020 ◽  
Vol 30 (2) ◽  
pp. 141-148
Author(s):  
Jieung Kim ◽  
Yonghwan Kim ◽  
Sang-Yeob Kim ◽  
Kwang-Min Lee ◽  
Young-Jae Sung

2022 ◽  
Vol 35 (1) ◽  
Author(s):  
Xiaotian Peng ◽  
Hongming Wang ◽  
Long Huang ◽  
Hao Peng ◽  
Yangyang Wang ◽  
...  

2014 ◽  
Vol 945-949 ◽  
pp. 2026-2029
Author(s):  
Nan Liu ◽  
Jian Chao Wang ◽  
Jian Xiong Yang ◽  
Tian Min Liu

This paper presents the method for quality measurement method about collapsible fuel tank, and mathematical model about the quality of the fluid inside collapsible fuel tank is set up. Comparing the calculate results and principle experimental obtained results, the method of quality measurement is validated. The method is characterized in simple and high measurement precision, which can be extended to apply in measuring the quality of liquid of large-scale irregularly shaped or collapsible fuel tank.


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