航空学报 > 1984, Vol. 5 Issue (4): 384-392

起动期圆盘尾流的氢泡法观测

连淇祥   

  1. 北京航空学院
  • 收稿日期:1984-03-31 修回日期:1900-01-01 出版日期:1984-12-25 发布日期:1984-12-25

OBSERVATIONS ON WAKE OF A CIRCULAR DISKS DURING STARTING

Lian Qixiang   

  1. Beijing Institute of Aeronautics and Astronautics
  • Received:1984-03-31 Revised:1900-01-01 Online:1984-12-25 Published:1984-12-25

摘要: 本文综述了氢泡法观测的起动期圆盘尾流区的流动现象。圆盘垂直于来流,流动从静止状态开始以等加速度作加速运动,在起动过程中圆盘后形成一个对称的涡环,涡环逐渐扩大并往下游移动,通过观测得到了涡环的尺寸与位置随时间变化的关系,以及它与尾流中倒流参数的关系。在起动后期涡环脱落并破裂,破裂前尾流中倒流流速达最大值,约为自由流流速的1.3倍,破裂时尾流可能出现大幅度摆动。

Abstract: The wake of a circular disk in a water channel during starting was observed by hydrogen bubble method with two different disks while the accelerations of the free stream were approximately constant during the starting stage.In the starting stage the vortex sheet separated from the disk edge rolled up into a helical vortex ring named starting vortex as shown in Fig. (a ) to ( f ). Both its diameter dv and abscissa xv increased linearly (Figs 5 and 6 ). Induced by the starting vortex, the flow in the center of the wake reversed (Fig. 8 ). But the abscissa of the rear stagnation point x, also increased linearly (Fig. 7 ). The back velocity peaked at the point the starting vortex was passing through (Fig. 9 ) and attained its extreme while the intensity of the starting vortex reached its maximum at the end of the, starting stage. This extreme(1.3U )far exceeded the maximum hack flow speed of the, wake in steady flow. Therefore, it may be of great value to the drag and virtual mass of the disk.In the transition stage the vortex sheet no longer rolled up into the starting vortex and the starting vortex became, unsymmetric and broke up as shown in Fig. 3 (g ) to ( i). In the, meantime the wake was able to swing rather far from its centerline (Fig. 12) and the flow appeared very chaotic and violent.After the transition stage, the flow became quasi-steady and the flow inside the, wake was turbulent. There only occurred small vortices around the wake and they were no longer converged into a large vortex like the starting vortex (Fig. 11). The profile of the wake approached to symmetric.