A Review on the Current Status of Icing Physics and Mitigation in Aviation

IF 0.1 4区 工程技术 Q4 ENGINEERING, AEROSPACE Aerospace America Pub Date : 2021-07-14 DOI:10.3390/AEROSPACE8070188
Masafumi Yamazaki, A. Jemcov, H. Sakaue
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引用次数: 30

Abstract

Icing on an aircraft is the cause of numerous adverse effects on aerodynamic performance. Although the issue was recognized in the 1920s, the icing problem is still an area of ongoing research due to the complexity of the icing phenomena. This review article aims to summarize current research on aircraft icing in two fundamental topics: icing physics and icing mitigation techniques. The icing physics focuses on fixed wings, rotors, and engines severely impacted by icing. The study of engine icing has recently become focused on ice-crystal icing. Icing mitigation techniques reviewed are based on active, passive, and hybrid methods. The active mitigation techniques include those based on thermal and mechanical methods, which are currently in use on aircraft. The passive mitigation techniques discussed are based on current ongoing studies in chemical coatings. The hybrid mitigation technique is reviewed as a combination of the thermal method (active) and chemical coating (passive) to lower energy consumption.
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航空结冰物理与减缓研究现状综述
飞机结冰会对空气动力性能产生许多不利影响。虽然这个问题在20世纪20年代就被认识到,但由于结冰现象的复杂性,结冰问题仍然是一个正在进行研究的领域。本文综述了飞机结冰的两个基本问题:结冰物理和结冰缓解技术。结冰物理主要研究受结冰严重影响的固定翼、旋翼和发动机。近年来,对发动机结冰的研究主要集中在冰晶结冰上。综述了基于主动、被动和混合方法的结冰缓解技术。主动缓解技术包括目前在飞机上使用的基于热方法和机械方法的技术。所讨论的被动缓解技术是基于目前正在进行的化学涂料研究。混合缓释技术是将热法(主动)和化学涂层(被动)相结合以降低能耗的技术。
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来源期刊
Aerospace America
Aerospace America 工程技术-工程:宇航
自引率
0.00%
发文量
9
审稿时长
4-8 weeks
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