Reliability Analysis of Aero-Engine Main Fuel System Based on GO Methodology

Author:

Zhang Sheng,Ren Chenhui,Wan Liyong,Yi Xiaojian,Dong Haiping

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference18 articles.

1. GAO S L, ZHANG S Y, LUO L, et al. Semi-physical simulation experiment system of fuel control system for an aeroengine [J]. Advanced Materials Research, 2012, 468–471: 2495–2498.

2. CHEN N T, MA T,WANG J, et al. Aviation engine foil leakage fault analysis based on fuzzy fault tree theory [J]. Computer Measurement & Control, 2016, 24(6): 64–67.

3. LIU Y, ZHANG T H, ZHOU J. Fault diagnosis and semi-physical simulation for actuator and sensor of aero-engine fuel regulator [J]. Journal of Propulsion Technology, 2016, 37(11): 2165–2172 (in Chinese).

4. WILLIAMS R L, GATELEY W Y. Use of the GO methodology to directly generate minimal cut sets [C]//Nuclear System Reliability Engineering and Risk Assessment. Philadelphia, PA, USA: Society for Industrial and Applied Mathematics, 1977: 825–849.

5. LI Y Y, YI X J, DENG C L, et al. Reliability analysis of turbocharging system for vehicle engine based on GO method [J]. Vehicle Engine, 2016, (5): 38–42 (in Chinese).

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