TY - JOUR
T1 - Growing Process and Structure of Axisymmetric Vortex Breakdown (1st Report, an Inviscid Linear Model of the Growing Process of the Biubble)
AU - Suematsu, Yoshikazu
AU - Ito, Tadaya
AU - Hayase, Toshiyuki
AU - Kato, Norihiko
PY - 1985
Y1 - 1985
N2 - This paper treats the vortex breakdown of the axisymmetric type in a swirling pipe flow, in order to clarify the growing process of the bubble. The unsteady flow field is investigated based on the inviscid linear theory of the internal wave (inertia wave). The expression of the time dependent flow field with the internal wave propagation which satisfies the condition of arbitrary velocity change at the upstream boundary of the circular pipe, is derived. Using this expression, the transition of the flow field, the streamlines and the streaklines calculated by computer, are examined. The unsteady flow field, as the result of a sudden azimuthal velocity change at the upstream boundary, clearly shows the birth of the bubble and the growing process into a stationary state. The theoretical results are compared with the experimental growing process of the bubble in an actual swirling pipe flow obtained by the visualization technique. Both results agree with each other fairly well concerning the bubble structure during the growing period. The behaviour of the fluid elements which are entrained into the bubble is also mentioned from of calculated pathlines. the results.
AB - This paper treats the vortex breakdown of the axisymmetric type in a swirling pipe flow, in order to clarify the growing process of the bubble. The unsteady flow field is investigated based on the inviscid linear theory of the internal wave (inertia wave). The expression of the time dependent flow field with the internal wave propagation which satisfies the condition of arbitrary velocity change at the upstream boundary of the circular pipe, is derived. Using this expression, the transition of the flow field, the streamlines and the streaklines calculated by computer, are examined. The unsteady flow field, as the result of a sudden azimuthal velocity change at the upstream boundary, clearly shows the birth of the bubble and the growing process into a stationary state. The theoretical results are compared with the experimental growing process of the bubble in an actual swirling pipe flow obtained by the visualization technique. Both results agree with each other fairly well concerning the bubble structure during the growing period. The behaviour of the fluid elements which are entrained into the bubble is also mentioned from of calculated pathlines. the results.
KW - Flow visualization
KW - Fluid Vibration
KW - Internal Wave
KW - Swirling Flow
KW - Unsteady Flow
KW - Vortex Breakdown
UR - http://www.scopus.com/inward/record.url?scp=0022096559&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=0022096559&partnerID=8YFLogxK
U2 - 10.1299/kikaib.51.2288
DO - 10.1299/kikaib.51.2288
M3 - Article
AN - SCOPUS:0022096559
SN - 0387-5016
VL - 51
SP - 2288
EP - 2296
JO - Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B
JF - Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B
IS - 467
ER -