自由流脉冲波作用下钝楔型高超声速流动的稳定性特性

Xiaojun Tang, H. Lv, X. Meng, Zhenqing Wang, Q. Lv
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引用次数: 8

摘要

为了研究在自由流脉冲波作用下高超声速流动的稳定性特性,采用高阶有限差分法对含自由流慢声波的8°半楔角钝楔进行了方向数值模拟。比较了脉冲波和连续波作用下边界层扰动波模态的演化,讨论了壁面温度对脉冲波扰动下高超声速边界层稳定性的影响。结果表明,无论是脉冲波还是自由流中的连续波,鼻型边界层内的扰动波都以基波为主;脉冲波的边界层压力扰动模式的傅里叶幅值远小于连续波,且前者的频带频率比后者宽。在机头边界层中,所有扰动模态沿流方向迅速衰减。在非鼻型边界层中,主模由基模转变为二次谐波。脉冲波的主导模态变换比连续波的主导模态变换出现得早得多。不同频率扰动模态在边界层沿流线方向呈现不同的变化,沿流线方向在二次谐波模态周围的频带变窄。边界层中不同模式之间存在着激烈的竞争和能量转换。壁面温度改变了高超声速边界层的稳定性特征,对基本模态的发展影响不大,冷却壁面可以加速高频模态的生长和主导模态的转变。
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Stability characteristic of hypersonic flow over a blunt wedge under freestream pulse wave
To investigate the stability characteristic of hypersonic flow under the action of a freestream pulse wave, a high-order finite difference method was employed to do direction numerical simulation (DNS) of hypersonic unsteady flow over an 8° half-wedge-angle blunt wedge with freestream slow acoustic wave. The evolution of disturbance wave modes in the boundary layer under a pulse wave and a continuous wave are compared, and the wall temperature effect on the hypersonic boundary layer stability for a pulse wave disturbance is discussed. Results show that, both for a pulse wave and a continuous wave in freestream, the disturbance waves inside the nose boundary layer are mainly a fundamental mode; the Fourier amplitude of pressure disturbance mode in the boundary layer for a pulse wave is far less than that for a continuous wave, and the band frequency of the former is wider than that of the latter. All disturbance modes decay rapidly along the streamwise in the nose boundary layer. In the non-nose boundary layer, the dominant mode is transferred from fundamental mode into second harmonic. The transformation of dominant mode for a pulse wave appears much earlier than that for a continuous wave. Different frequency disturbance modes present different changes along streamline in the boundary layer, and the frequency band narrows around the second harmonic mode along the streamwise. Keen competition and the transformation of energy exist among different modes in the boundary layer. Wall temperature modifies the stability characteristic of the hypersonic boundary layer, which presents little effect on the development of fundamental modes and cooling wall could accelerates the growth of the high frequency mode as well as the dominant mode transformation.
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Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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