减少飞机对飞行区域和停机坪的环境影响的可能性

Michael Šulka, J. Rostáš
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摘要

本文的目的是基于对飞机起飞、滑行和翻转过程中减少燃料消耗、排放和噪音的可能性的理论分析。首先,作者定义了机场基础设施的基本术语,并根据其结构方案和物理特性定义了滑行道的类型。许多机场并没有尽可能高效地为飞机提供滑行道。为了指出不同的滑行道路线降低燃油消耗和排放产生的可能性,作者决定对维也纳-施微信机场(IATA: VIE)的滑行道和跑道基础设施进行分析,并对空客A320-200进行跑道分析。减少上述属性并提高环境质量的另一个选择是单发滑行(SET)程序。作者分析了SET的优缺点,并建立了机组人员与空管人员之间可能的通信方式。推杆式拖拉机也产生了不可忽视的污染物。解决方案是使用由电动发动机驱动的零排放推回拖拉机,或者在前起落架上安装创新的WheelTug系统。这些解决方案为周围环境带来了许多好处,也减少了机场噪音。最后,作者描述了在切换过程中使用固定接地电源代替APU或GPU的优点和可能性
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Possibilities of reducing environmental impacts of aircraft on movement areas and aprons
This aim of the paper is based on a theoretical analysis of possibilities of reducing fuel consumption, emissions and noise during aircraft take-off, taxi and turn-over procedure. In the very beginning, author defines the basic terms of airport infrastructure and defines types of taxiways based on their constructional solution and physical characteristic. Taxiways are not given to the aircrafts as efficient as possible on many airports. To point out the possibility of reducing fuel consumption and emissions production from different taxiway route, author decided to analyse taxiway and runway infrastructure of Vienna-Schwechat Airport (IATA: VIE) and made runway analysis of Airbus A320-200. Another option how to reduce mentioned attributes and increase the quality of environment is single engine taxi (SET) procedure. Author analysed advantages and disadvantages of SET and established possible communication between aircraft crew and air traffic control officer. Push-back tractors produce not negligible amount of pollutants too. The solution is to operate zero emission push-back tractors powered by electric engine or implement innovative system WheelTug into the nose landing gear. These solutions bring many advantages for surrounding environment and reduce airport noise too. Last not but least, author describes advantages and possibilities of use of Fixed Electrical Ground Power instead of APU or GPU during turn-over procedure
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