Jensen O E
Department of Applied Mathematics and Theoretical Physics, University of Cambridge, UK.
J Biomech Eng. 1992 Feb;114(1):55-9. doi: 10.1115/1.2895450.
A steady flow through a segment of externally pressurized, collapsible tube can become unstable to a wide variety of self-excited oscillations of the internal flow and tube walls. A simple, one-dimensional model of the conventional laboratory apparatus, which has been shown previously to predict steady flows and multiple modes of oscillation, is investigated numerically here. Large amplitude oscillations are shown to have a relaxation structure, and the nonlinear interaction between different modes is shown to give rise to quasiperiodic and apparently aperiodic behavior. These predictions are shown to compare favorably with experimental observations.
在一段外部受压的可塌陷管道中,稳定流动可能会对内部流动和管壁的各种自激振荡变得不稳定。本文对传统实验室设备的一个简单一维模型进行了数值研究,该模型先前已被证明能够预测稳定流动和多种振荡模式。结果表明,大振幅振荡具有弛豫结构,不同模式之间的非线性相互作用会导致准周期和明显的非周期行为。这些预测结果与实验观测结果吻合良好。