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Aerodynamic characteristics of a two-dimensional supersonic biplane, covering its take-off to cruise conditions

机译:二维超音速双翼飞机的气动特性,涵盖了其在巡航条件下的起飞

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摘要

Supersonic biplanes can possibly achieve low-boom and low-drag supersonic flights. In the present study, aerodynamic analysis and design of two-dimensional (2-D) biplanes were investigated with the help of computational fluid dynamics (CFD) tools. By utilizing an inverse-design method, a 2-D biplane configuration with lower wave drag than the single flat-plate airfoil at sufficient lift conditions (C-1 > 0.14) was designed at its design Mach number (M-infinity = 1.7). In general, although, supersonic biplanes show superior aerodynamic characteristics at their design Mach numbers, unfortunately, they are characterized by poor performances under their off-design conditions. Flow choking occurs at high subsonic speeds, and continues to Mach numbers greater than the design Mach number in the acceleration stage due to flow hysteresis. Hinged slats and flaps were applied as high-lift devices to avoid the flow choking and concomitant hysteresis problems, and were also used as actual high-lift devices under take-off and landing conditions. As further improvement, morphing and Fowler motion were considered. Finally, a series of 2-D biplane configurations from take-off (and landing) to cruise conditions were studied by applying the slats and flaps, as well as morphing mechanisms, to our inversely designed biplane.
机译:超音速双翼飞机可能会实现低空飞行和低阻力超音速飞行。在本研究中,借助计算流体动力学(CFD)工具研究了二维(2-D)双翼飞机的空气动力学分析和设计。通过采用逆向设计方法,在其设计马赫数(M-无穷大= 1.7)下,设计了在足够的升力条件下(C-1> 0.14)具有比单个平板翼型更低的波阻力的二维双翼飞机配置。 。通常,尽管超音速双翼飞机在其设计马赫数上显示出卓越的空气动力学特性,但不幸的是,它们的特点是在非设计条件下的性能较差。气流阻塞发生在高亚音速下,由于气流滞后,在加速阶段其马赫数一直大于设计马赫数。铰链板条和襟翼被用作高升力装置,以避免流阻和伴随的滞后问题,并且还用作起飞和着陆条件下的实际高升力装置。作为进一步的改进,考虑了变形和福勒运动。最后,通过将板条和襟翼以及变形机制应用于我们反向设计的双翼飞机,研究了从起飞(着陆)到巡航条件的一系列二维双翼飞机构型。

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