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The interference aerodynamics caused by the wing elasticity during store separation

机译:机舱分离时机翼弹性造​​成的干扰空气动力学

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摘要

Air-launch-to-orbit is the technology that has stores carried aloft and launched the store from the plane to the orbit. The separation between the aircraft and store is one of the most important and difficult phases in air-launch-to-orbit technology. There exists strong aerodynamic interference between the aircraft and the store in store separation. When the aspect ratio of the aircraft is large, the elastic deformations of the wing must be considered. The main purpose of this article is to study the influence of the interference aerodynamics caused by the elastic deformations of the wing to the unsteady aerodynamics of the store. By solving the coupled functions of unsteady Navier-Stokes equations, six degrees of freedom dynamic equations and structural dynamic equations simultaneously, the store separation with the elastic deformation of the aircraft considered is simulated numerically. And the interactive aerodynamic forces are analyzed. The study shows that the interference aerodynamics is obvious at earlier time during the separation, and the dominant frequency of the elastic wing determines the aerodynamic forces frequencies of the store. Because of the effect of the interference aerodynamics, the roll angle response and pitch angle response increase. When the store is mounted under the wingtip, the additional aerodynamics caused by the wingtip vortex is obvious, which accelerate the divergence of the lateral force and the lateral-directional attitude angle of the store. This study supports some beneficial conclusions to the engineering application of the air-launch-to-orbit. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:空中发射到空中是一项技术,这种技术可以将商店抬高,并将商店从飞机上发射到轨道。飞机与仓库之间的分离是空中发射入轨技术中最重要和最困难的阶段之一。商店与飞机之间存在强烈的空气动力学干扰。当飞机的长宽比较大时,必须考虑机翼的弹性变形。本文的主要目的是研究机翼弹性变形引起的干扰空气动力学对储气室非定常空气动力学的影响。通过同时求解非稳态Navier-Stokes方程,六个自由度动力学方程和结构动力学方程的耦合函数,对考虑了飞机弹性变形的储层分离进行了数值模拟。并分析了相互作用的空气动力。研究表明,在分离的较早时间,干扰空气动力学很明显,而弹性翼的主导频率决定了储气库的空气动力频率。由于干涉空气动力学的影响,侧倾角响应和俯仰角响应增加。当储物箱安装在翼尖下方时,由翼尖涡流引起的附加空气动力学是显而易见的,这加速了储物箱的侧向力和横向姿态角的发散。这项研究为空中发射入轨的工程应用提供了一些有益的结论。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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