Abstract
항공기는 결빙, 난기류, 낙뢰 등 환경적 요인에 의해 안전성을 위협받는다. 그 중 낙뢰는 항공기에 강한 전류와 전압을 유입시켜 고온의 열과 자기장을 발생시키므로 항공기 안정성에 큰 위협이 된다. 본 연구에서는 낙뢰의 발생원리 및 항공기 낙뢰 피격 메카니즘을 설명하고 항공기에 대한 낙뢰의 직접, 간접 영향성을 다룬다. 먼저 항공기 낙뢰 지침서인 ARP를 분석하여 항공기 낙뢰모사와 부착위치에 대한 분석을 진행하였으며, 이를 전산 시뮬레이션에 적용하였다. 또한 ABAQUS 소프트웨어를 활용한 열적, 전기적 시뮬레이션을 통해 연료탱크의 낙뢰 영향성 분석 및 낙뢰보호시스템 설계를 진행하였다. 그리고 Maxwell 방정식에 기초한 EMA3D 소프트웨어를 활용하여 항공기 전기체의 전류 흐름에 대한 전산수치해석을 진행하였다. The safety of aircraft can be threatened by environmental factors, such as icing, turbulence, and lightning strike. Due to its adverse effects on aircraft structure and electronic components of aircraft, lightning strike is one of the biggest hazards on aircraft safety. Lightning strike can inject high voltage electric current to the aircraft, which may generate strong magnetic field and extreme hot spots, leading to severe damage of structure or other equipment in aircraft. In this work, mechanism of lightning strike and associated direct and indirect effects of lightning on aircraft were studied. First, on the basis of aircraft lightning regulations provided by Aerospace Recommended Practice (ARP), we considered different lightning waveform and zones of an aircraft. A coupled thermal-electrical computational model of ABAQUS was then used for simulating flow of heat and electric current caused by a lightning strike. A study on fuel tank, with and without lightning protection system, was also conducted using the computational model. Finally, electric current flow on two full scale airframes was analyzed using the EMA3D code.
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