ACCELERATED AND DECELERATED FLOWS IN A CIRCULAR PIPE (2ND REPORT, TRANSITION OF AN ACCELERATED FLOW).

被引:0
|
作者
Kurokawa, Junichi
Takagi, Akira
机构
关键词
FLUID MECHANICS;
D O I
暂无
中图分类号
学科分类号
摘要
In a preceding paper, it was made clear that there exists two types of flow transition from laminar to turbulent in an accelerated flow depending on the degree of acceleration. In order to determine the mechanism of these types of transition the Present measurements were performed and the change of the velocity profile at each time step was compared at two different stations. The results show that in the case of relatively large acceleration (ro/UstT greater than 10** minus **1), flow transition takes place simultaneously over the whole area in a pipe due to the flow instability. On the contrary, in the case of relatively small acceleration (ro/UstT greater than 10** minus **3), flow transition takes place near the pipe inlet and forms a discontinuous surface (transition surface) propagating to the downstream with a velocity larger than the mean flow velocity. In this case the velocity profile changes smoothly from laminar to turbulent in the upstream but becomes peculiar in the downstream due to the development of the transition region.
引用
收藏
页码:302 / 307
相关论文
共 50 条
  • [31] Late stage of transition in a circular pipe flow
    Han, G
    Tumin, A
    Wygnanski, I
    LAMINAR-TURBULENT TRANSITION, 2000, : 559 - 564
  • [32] On an analytical explanation of the phenomena observed in accelerated turbulent pipe flow
    Garcia Garcia, F. Javier
    Farinas Alvarino, Pablo
    JOURNAL OF FLUID MECHANICS, 2019, 881 : 420 - 461
  • [33] NUMERICAL SIMULATION OF LAMINAR-TURBULENT TRANSITION IN ACCELERATED FLOWS
    Furst, J.
    Prihoda, J.
    TOPICAL PROBLEMS OF FLUID MECHANICS 2017, 2017, : 131 - 138
  • [34] SCHEME FOR ACCELERATED TRIP FOR FAULTS IN THE 2ND ZONE OF PROTECTION OF A TRANSMISSION-LINE
    CHEN, DS
    LIU, P
    PENG, H
    HOPE, GS
    MALIK, OP
    IEEE TRANSACTIONS ON POWER DELIVERY, 1989, 4 (02) : 942 - 948
  • [35] Hardware Accelerated Algorithm for 2nd Level Trigger of Very Forward Detectors at LHC
    Quinto, M.
    Cafagna, F. S.
    Fiergolski, A.
    Radicioni, E.
    2014 19TH IEEE-NPSS REAL TIME CONFERENCE (RT), 2014,
  • [36] Influence of flow velocity and temperature on flow accelerated corrosion rate at an elbow pipe
    Utanohara, Y.
    Murase, M.
    NUCLEAR ENGINEERING AND DESIGN, 2019, 342 : 20 - 28
  • [37] EXPERIMENTAL INVESTIGATION OF TRANSITION IN PLANE POISEUILLE FLOW (2ND REPORT, DILUTE POLYMER SOLUTIONS).
    Mizunuma, Hiroshi
    Kato, Hiroshi
    Nippon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B, 1987, 53 (492): : 2303 - 2312
  • [38] Complex flow morphologies in shock-accelerated gaseous flows
    Kumar, S.
    Vorobieff, P.
    Orlicz, G.
    Palekar, A.
    Tomkins, C.
    Goodenough, C.
    Marr-Lyon, M.
    Prestridge, K. P.
    Benjamin, R. F.
    PHYSICA D-NONLINEAR PHENOMENA, 2007, 235 (1-2) : 21 - 28
  • [40] SYMMETRICAL FLOW PAST A UNIFORMLY ACCELERATED CIRCULAR-CYLINDER
    COLLINS, WM
    DENNIS, SCR
    JOURNAL OF FLUID MECHANICS, 1974, 65 (SEP16) : 461 - 480