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Support interference corrections of a common research model with flying-wing configuration

机译:支持带有飞翼配置的常见研究模型的干扰校正

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Since flying-wing configuration has excellent performance in aerodynamic, stealth capability and structure, it has become an ideal configuration of the future unmanned ah- vehicles. Compared with conventional airplane layout, the support interference effects and the local shape distortions are more obvious. Though the support effect is now accounted for in most wind tunnel procedures thanks to various correction methods, they call upon dedicated experiments which are expensive, complex and require the introduction of another support. Solving the steady Reynolds-Averaged Navier-Stokes equations for complex configuration has become routine task in research and it has occasionally been used to investigate model support effects. In this paper, the flow field and force disturbance caused by the support was calculated by comparing simulations with and without support for several angles of attack at Mach number equals 0.9. Meanwhile, and amounts and regulations of support interference effects on forces and moments for this flying-wing model were obtained.
机译:由于飞翼构型在空气动力学,隐身能力和结构方面具有出色的性能,因此它已成为未来无人驾驶飞行器的理想构型。与传统飞机布局相比,支撑干扰效应和局部形状畸变更为明显。尽管由于采用了各种校正方法,现在在大多数风洞程序中都考虑到了支撑效果,但他们要求进行昂贵,复杂且需要引入另一种支撑的专用实验。解决复杂配置的稳定雷诺平均Navier-Stokes方程已成为研究的常规任务,并且偶尔用于研究模型支持效果。在本文中,通过比较在有马赫数等于0.9的几个攻角下有无支撑的模拟,计算了由支撑引起的流场和力扰动。同时,获得了该飞行翼模型的支撑干涉对力和力矩的影响的量和规律。

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