English

Threshold amplitudes for transition to turbulence in a pipe

Fluid Dynamics 2007-05-23 v2

Abstract

Threshold amplitude of disturbance for transition to turbulence in a pipe Poiseuille flow is investigated. Based on the energy gradient theory, we argued that the transition to turbulence depends on magnitudes of the energy gradient of mean flow and the disturbance energy. Furthermore, the threshold disturbance energy required for turbulence transition is expressed as a function of the complementary angle to the energy angle which also characterizes the behaviour of the energy gradient of mean flow. With some mathematical treatments, the variation of the threshold energy of disturbance versus the Reynolds number is obtained. Then, it is found for a fixed disturbance frequency that the normalized amplitude of disturbance is scaled by Re with an exponent of -3/2 for the transition occurrence in a pipe. This value of exponent agrees well with several recent results reported in the literature. Finally, the mechanism of transition to turbulence is suggested for different disturbance levels.

Keywords

Cite

@article{arxiv.physics/0502099,
  title  = {Threshold amplitudes for transition to turbulence in a pipe},
  author = {Hua-Shu Dou and Boo Cheong Khoo and Khoon Seng Yeo},
  journal= {arXiv preprint arXiv:physics/0502099},
  year   = {2007}
}

Comments

19 pages; 6 figures. This paper has been presented at the 7th China National Conference on Turbulence & Flow Instability, Aug.10-13, 2004, Beijing, China

R2 v1 2026-07-22T19:02:52.894Z