Uçak Kablolamasında Kullanılan Kalkan Sonlandırma Yaklaşımlarının Yıldırımın Dolaylı Etkilerine Karşı Değerlendirilmesi

Author:

ATALAY Emre1ORCID,TUNCER Ahmet Turgut2ORCID

Affiliation:

1. BAŞKENT ÜNİVERSİTESİ, FEN BİLİMLERİ ENSTİTÜSÜ

2. BAŞKENT ÜNİVERSİTESİ, MESLEK YÜKSEKOKULU

Abstract

Lightning is a natural phenomenon where high voltages and currents suddenly discharge. It can be caused by clouds themselves, clouds between them, or clouds near the earth. Aircraft are also at risk of being struck by lightning and there is currently no way to prevent this from happening. Instead, efforts are being made to protect by reducing the effects of lightning. Metal structures in aircraft form a Faraday cage which helps in preventing lightning currents from entering the aircraft. However, composite structures, which are becoming more prevalent in the aviation sector, are less efficient in doing so compared to metals. Additionally, openings such as windows in the aircraft can break the Faraday cage and allow strong electromagnetic fields to penetrate. Hence, all equipment used on board the aircraft must be adequately qualified and lightning-proof. The most popular technique used to reduce the indirect effects of lightning on electronics is cable shielding. In this study, various shielding termination techniques for their effectiveness against indirect effect of lightning examined and It is found that utilizing a 360˚ backshell termination technique provided to be highly effective, providing protection of nearly 3 dB. The results obtained from the experiments are compared with simulation results and previous studies and it has been observed that the obtained results are consistent with each other.

Publisher

Politeknik Dergisi

Subject

Colloid and Surface Chemistry,Physical and Theoretical Chemistry

Reference46 articles.

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3. [3] Duan Z., "Review of aircraft lightning protection," High Voltage Engineering, 43(5): 1393-1399, (2017).

4. [4] EUROCAE ED-81, “Certification of Aircraft Electrical/Electronic Systems for the Indirect Effects of Lightning (including Amendment N°1 – 26 August 1999)”, (1996).

5. [5] MIL-STD-464D, “Electromagnetic Environmental Effects Requirements for Systems”, (2020).

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