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Design and analysis pertaining to the aerodynamic and stability characteristics of a hybrid wing-body cargo aircraft

机译:杂交翼机械飞机的空气动力学和稳定特性有关的设计与分析

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摘要

Recent trends in aircraft design research have resulted in development of many unconventional configurations mostly aimed at improving aerodynamic efficiency. The blended wing body (BWB) is one such configuration that holds potential in this regard. In its current form the BWB although promises a better lift to drag (L/D) ratio it is still not able to function to its maximum capability due to design modifications such as twist and reflexed airfoils to overcome stability problems in the absence of a tail. This work aims to maximize the impact of a BWB. A design approach of morphing the BWB with a conventional aft fuselage is proposed. Such a configuration intends to impart full freedom to the main wing and the blended forward fuselage to contribute in lift production while the conventional tail makes up for stability. The aft fuselage, meanwhile, also ensures that the aircraft is compatible with current loading and airdrop operations. This paper is the culmination of obtained models results and inferences from the first phase of the project wherein development of aerodynamic design and analysis methodologies and mission specific optimization have been undertaken.
机译:最近的飞机设计研究的趋势导致许多非常规配置的发展主要旨在提高空气动力学效率。混合的翼体(BWB)是在这方面存在潜力的一种这样的配置。其目前的形成BWB虽然承诺更好的升力(L / D)比率,但由于设计修改,诸如扭曲和反射翼型的设计修改,仍然无法运行其最大能力,以克服尾部的稳定性问题。这项工作旨在最大限度地提高BWB的影响。提出了用传统的AFT机身改变BWB的设计方法。这种配置旨在赋予主翼的充分自由和混合的前向机身,以在升力生产中贡献,而传统的尾部占稳定性。同时,AFT机身还确保飞机与电流加载和AICTOLOP操作兼容。本文是从项目的第一阶段获得所获得的模型结果和推论的高潮,其中已经进行了空气动力学设计和分析方法和特定优化的发展。

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