Bertram C D
J Biomech. 1986;19(1):61-9. doi: 10.1016/0021-9290(86)90109-0.
Thick-walled silicone rubber tube connected to rigid pipes upstream and downstream was externally pressurised (pe) to cause collapse while aqueous fluid flowed through propelled by a constant upstream head. Three types of equilibrium were found: stable equilibria (steady flow) at high downstream flow resistance R2, self-excited oscillations at low R2, and 'unattainable' (by varying external pressure) or exponentially unstable equilibria at intermediate R2. The self-excited oscillations were highly non-linear and appeared in four, apparently discrete, frequency bands: 2.7 Hz, 3.8-5.0 Hz, 12-16 Hz and 60-63 Hz, suggesting that the possible oscillation modes may be harmonically related. Stable, intermediate 'two-in-every-three-beats' oscillation was also observed, with a repetition frequency in the 3.8-5.0 Hz band. As pe was increased, self-excited oscillations were eventually suppressed, leaving internal fluid pressure varying with no single dominant frequency as a result of turbulent jet dissipation at the downstream rigid pipe connection. Comparison of pressure-wave velocity calculated from the local pressure-area relation for the tube with fluid velocity indicated that supercritical velocities were attained in the course of the self-excited oscillations.
连接到上游和下游刚性管道的厚壁硅橡胶管在外部施加压力(pe)以使其塌陷,同时水流在恒定的上游水头推动下流过。发现了三种平衡状态:在下游高流动阻力R2时的稳定平衡(稳定流动),在低R2时的自激振荡,以及在中间R2时“无法达到”(通过改变外部压力)或指数不稳定平衡。自激振荡高度非线性,出现在四个明显不同的频带中:2.7 Hz、3.8 - 5.0 Hz、12 - 16 Hz和60 - 63 Hz,这表明可能的振荡模式可能是谐波相关的。还观察到稳定的、中间的“每三拍两次”振荡,其重复频率在3.8 - 5.0 Hz频带内。随着pe的增加,自激振荡最终被抑制,由于下游刚性管道连接处的湍流射流耗散,内部流体压力变化没有单一主导频率。根据管的局部压力 - 面积关系计算的压力波速度与流体速度的比较表明,在自激振荡过程中达到了超临界速度。