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STUDY ON THE STATIC AND DYNAMIC STABILITY OF A MODULAR AIRPLANE SYSTEM

机译:模块化飞机系统的静态和动态稳定性研究

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The purpose of this research is an analysis of the static and dynamic stability of the Modular Airplane System (MAS). The MAS is designed to perform suborbital space flights. The concept assumes that two tailless vehicles bonded together form a conventional aircraft where the wing of the second one is used as the horizontal tail of the whole system. The CFD calculations, and the stability and control derivatives were conducted by the PANUKL package, which uses a low order panel method for the aerodynamic analysis. The analysis of the static and dynamic stability was performed by the SDSA package. Only the selected part of the MAS mission was investigated. The results that will be presented have been divided into three parts: static stability, longitudinal dynamic stability and lateral dynamic stability. The MAS has a few possible applications. The first one is a suborbital space tourism flight. Moreover, it can be used as a lunching vehicle for micro satellites or as a testing platform for new space technology to improve their TRL level. Finally, in the far future, it could be used as a fast point-to-point travel system. The paper presents the results of the static and dynamic stability of a unique aircraft configuration which consists of two tailless vehicles. The research focuses on a situation where the vehicles are just before separation and their mass is similar. Moreover, the influence of the second vehicles position with respect to the first one is included.
机译:这项研究的目的是分析模块化飞机系统(MAS)的静态和动态稳定性。 MAS设计用于执行亚轨道太空飞行。该概念假定将两个无尾飞行器粘合在一起,形成一架常规飞机,其中第二个的机翼用作整个系统的水平尾翼。 CFD计算以及稳定性和控制导数由PANUKL软件包进行,该软件包使用低阶面板方法进行空气动力学分析。静态和动态稳定性的分析是通过SDSA软件包进行的。仅对MAS任务的选定部分进行了调查。将要呈现的结果分为三个部分:静态稳定性,纵向动态稳定性和横向动态稳定性。 MAS有一些可能的应用程序。第一个是亚轨道太空旅游飞行。此外,它还可以用作微型卫星的午餐工具,也可以用作提高其TRL水平的新太空技术的测​​试平台。最后,在不远的将来,它可以用作快速的点对点旅行系统。本文介绍了由两架无尾翼飞机组成的独特飞机配置的静态和动态稳定性结果。该研究着眼于这样一种情况,即车辆刚好在分离前并且它们的质量相似。而且,包括第二车辆位置相对于第一车辆的影响。

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