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System analysis of aircraft with natural laminar flow and forward swept wings

机译:具有自然层流和前掠机翼的飞机系统分析

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摘要

The objective of this paper is an enhanced analysis and assessment of a short-to-medium range aircraft configuration with natural laminar flow (NLF) and forward swept wings (FSW) designed by DLR. It is intended to show how the proposed aircraft concept could contribute to a more economic and ecologic operation. By implementing a multidisciplinary simulation and assessment framework, the net-benefit on air transportation system level is evaluated from airline perspective under consideration of realistic airline network conditions. Therefore operational aspects (e.g. stage length) and environmental factors (e.g. insect contamination, cloud encounter) which affect the aircraft effectiveness are included into the assessment. Apart from modeling the technology intended effect of fuel saving on airline economics, the study also aims to determine unintentional repercussions (e.g. change in maintenance effort, emissions, noise) which arise due to the design and the operation of the FSW-NLF concept. The overall goal of the paper is to provide aircraft operators with a better understanding of the behavior of NLF aircraft under realistic operational boundary conditions as well as to demonstrate resulting trade-offs between economical and ecological effectiveness.
机译:本文的目的是对DLR设计的具有自然层流(NLF)和前掠机翼(FSW)的中短程飞机配置进行增强的分析和评估。目的是说明拟议的飞机概念如何有助于更加经济和生态的运营。通过实施多学科的模拟和评估框架,在考虑实际航空公司网络条件的情况下,从航空公司的角度评估了航空运输系统级的净收益。因此,影响飞机有效性的运行方面(例如阶段长度)和环境因素(例如昆虫污染,遇到云层)将包括在评估中。除了对节省燃油对航空公司经济的预期技术影响进行建模外,该研究还旨在确定由于FSW-NLF概念的设计和运行而引起的意外影响(例如维护工作量,排放,噪音的变化)。本文的总体目标是使飞机操作员更好地了解NLF飞机在实际操作边界条件下的行为,并证明由此产生的经济效益和生态效益之间的取舍。

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