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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Numerical study on aerodynamic performance of waverider with a new bluntness method
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Numerical study on aerodynamic performance of waverider with a new bluntness method

机译:一种新的钝化法的Waverider气动性能的数值研究

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Abastrct The waverider is deemed the most promising configuration for hypersonic vehicle with its high lift-to-drag ratio at design conditions. However, considering the serious aero-heating protection, the sharp leading edge must be blunted. The existing traditional bluntness methods including the following two types: "reducing material method" and "adding material method". Compared to the initial waverider, the volume will be smaller or larger using the traditional methods. With the fixed blunted radius, the volume and aerodynamic performance is determined. In this paper, a new bluntness method which is named "mixing material method" is developed. In this new method, a new parameter is introduced based on the traditional two bluntness methods. Under fixed blunted radius, the volume and aerodynamic performance can be changed within a wide range by adjusting the parameter. When the parameter is 0 and 1, the novel blunted method degenerated into the "reducing material method" and "adding material method" respectively. The influence of new parameter on the aerodynamic characteristics and volume are studied by numerical simulation. Results show that the volume, lift and lift-to-drag ratio increases with the increase of the parameter under the fixed blunt radius, but simultaneously, the drag will also increase. Therefore, considering the different requirements of the air-breathing hypersonic aircrafts for the balance of thrust and drag, lift and weight, a suitable bluntness parameter can be selected to achieve a balance. This research can provide reference for hypersonic waverider vehicle design.
机译:Waverder在设计条件下被视为高超声速车辆的最有前途的配置。然而,考虑到严重的航空加热保护,必须钝化尖锐的前缘。现有的传统钝性方法包括以下两种类型:“减少材料方法”和“添加材料方法”。与初始Waverider相比,使用传统方法,体积将小或更大。通过固定钝的半径,确定体积和空气动力学性能。在本文中,开发了一种以“混合材料法”命名的新钝性方法。在这种新方法中,基于传统的两个钝性方法引入了一个新参数。在固定钝的半径下,通过调整参数可以在宽范围内更改体积和空气动力学性能。当参数为0和1时,新颖的钝化方法分别退化为“还原材料方法”和“添加材料方法”。通过数值模拟研究了新参数对空气动力学特性和体积的影响。结果表明,随着固定钝半径下的参数的增加,但同时增加载荷也会增加体积,提升和升力比率增加。因此,考虑到呼吸超声波飞机的不同要求,用于平衡推力和阻力,提升和重量,可以选择合适的钝性参数来实现平衡。该研究可以为超音波骑士车辆设计提供参考。

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