Nonlinear free-surface flow due to an impulsively started submerged point sink

被引:31
作者
Xue, M [1 ]
Yue, DKP [1 ]
机构
[1] MIT, Dept Ocean Engn, Cambridge, MA 02139 USA
关键词
D O I
10.1017/S0022112098001335
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The unsteady fully nonlinear free-surface flow due to an impulsively started submerged point sink is studied in the context of incompressible potential flow. For a fixed (initial) submergence h of the point sink in otherwise unbounded fluid, the problem is governed by a single non-dimensional physical parameter, the Froude number, F = Q/4 pi(gh(5))(1/2), where Q is the (constant) volume flux rate and g the gravitational acceleration. We assume axisymmetry and perform a numerical study using a mixed-Eulerian-Lagrangian boundary-integral-equation scheme. We conduct systematic simulations varying the parameter F to obtain a complete quantification of the solution of the problem. Depending on F, there are three distinct flow regimes: (i) F < F-1 approximate to 0.1924 - a 'sub-critical' regime marked by a damped wavelike behaviour of the free surface which reaches an asymptotic steady state; (ii) F-1 < F < F-2 approximate to 0.1930 - the 'trans-critical' regime characterized by a reversal of the downward motion of the free surface above the sink, eventually developing into a sharp upward jet; (iii) F > F-2 - a 'super-critical' regime marked by the cusp-like collapse of the free surface towards the sink. Mechanisms behind such flow behaviour are discussed and hydrodynamic quantities such as pressure, power and force are obtained in each case. This investigation resolves the question of validity of a steady-state assumption for this problem and also shows that a small-time expansion may be inadequate for predicting the eventual behaviour of the flow.
引用
收藏
页码:325 / 347
页数:23
相关论文
共 50 条
[41]   STRUCTURE OF THE FREE-SURFACE FLOW IN THE LEE OF AN OBSTACLE SUBMERGED AT THE BOTTOM OF A CHANNEL [J].
BOUHADEF, M ;
BAUCHE, B ;
PEUBE, J ;
PEUBE, JL .
COMPTES RENDUS DE L ACADEMIE DES SCIENCES SERIE II, 1981, 292 (21) :1421-1423
[42]   Characterizing free-surface expressions of flow instabilities by tracking submerged features [J].
Mandel, Tracy L. ;
Rosenzweig, Itay ;
Chung, Hayoon ;
Ouellette, Nicholas T. ;
Koseff, Jeffrey R. .
EXPERIMENTS IN FLUIDS, 2017, 58 (11)
[43]   Numerical Analysis of Free-Surface Flow around Submerged Rectangular Cylinder [J].
Chu, Chia-Ren ;
Chung, Chun-Hsuan ;
Wu, Tso-Ren ;
Huang, Chih-Jung ;
Wang, Chung-Yue .
PROCEEDINGS OF THE 35TH IAHR WORLD CONGRESS, VOLS III AND IV, 2013,
[44]   Characterizing free-surface expressions of flow instabilities by tracking submerged features [J].
Tracy L. Mandel ;
Itay Rosenzweig ;
Hayoon Chung ;
Nicholas T. Ouellette ;
Jeffrey R. Koseff .
Experiments in Fluids, 2017, 58
[45]   Unsteady boundary layer flow due to an impulsively started moving plate [J].
Mehmood, A. ;
Ali, A. .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2007, 221 (G3) :385-390
[46]   MHD FLOW PAST AN IMPULSIVELY STARTED INFINITE VERTICAL PLATE WITH HEAT SOURCE/SINK [J].
Garg, B. P. ;
Shipra .
JOURNAL OF RAJASTHAN ACADEMY OF PHYSICAL SCIENCES, 2018, 17 (3-4) :151-164
[47]   Unsteady free-surface waves due to a submerged body moving in a viscous fluid [J].
Lu, DQ ;
Chwang, AT .
PHYSICAL REVIEW E, 2005, 71 (06)
[48]   A NOTE ON STEADY FLOW INTO A SUBMERGED POINT SINK [J].
Hocking, G. C. ;
Forbes, L. K. ;
Stokes, T. E. .
ANZIAM JOURNAL, 2014, 56 (02) :150-159
[50]   NONLINEAR PERTURBATIONS ON A FREE-SURFACE INDUCED BY A SUBMERGED BODY - A BOUNDARY INTEGRAL APPROACH [J].
DASILVA, AFT ;
PEREGRINE, DH .
ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 1990, 7 (04) :214-222