Wang Zhenqing, Shi Mingfang, Tang Xiaojun, Lv Hongqing, Xu Lidan
College of Aerospace and Civil Engineering, Harbin Engineering University, Harbin 150001, China.
Beijing Spacecrafts, China Academy of Space Technology, Beijing 100094, China.
Entropy (Basel). 2018 May 24;20(6):404. doi: 10.3390/e20060404.
A high-order finite difference method was used to simulate the hypersonic flow field over a blunt cone with different height roughness elements. The unsteady flow field induced by pulse disturbances was analyzed and compared with that under continuous disturbances. The temporal and spatial evolution characteristics of disturbances in the boundary layer were investigated and the propagation of different disturbance modes in the boundary layer was researched through the fast Fourier transform (FFT) method. The effect of the roughness element on the receptivity characteristic of the hypersonic boundary layer under pulse entropy disturbances was explored. The results showed that the different mode disturbances near roughness in the boundary layer were enlarged in the upstream half of the roughness element and suppressed in the downstream half. However, the effect of roughness weakened gradually as the disturbance frequency increased in the boundary layer. A phenomenon of mode competition in the downstream region of the roughness element exited. As the disturbances propagated downstream, the fundamental mode gradually became the dominant mode. A certain promotion effect on the mode competition was induced by the roughness element and the effect was enhanced with the increase in the roughness element height.
采用高阶有限差分法模拟了带有不同高度粗糙度元件的钝锥高超声速流场。分析了脉冲扰动诱导的非定常流场,并与连续扰动下的流场进行了比较。研究了边界层中扰动的时空演化特性,并通过快速傅里叶变换(FFT)方法研究了不同扰动模式在边界层中的传播。探讨了粗糙度元件对脉冲熵扰动下高超声速边界层感受性特性的影响。结果表明,边界层中靠近粗糙度处的不同模式扰动在上游半个粗糙度元件中被放大,而在下游半个元件中被抑制。然而,随着边界层中扰动频率的增加,粗糙度的影响逐渐减弱。在粗糙度元件的下游区域存在模式竞争现象。随着扰动向下游传播,基模逐渐成为主导模式。粗糙度元件对模式竞争有一定的促进作用,且随着粗糙度元件高度的增加,这种作用增强。