Author:
McCUE SCOTT W.,FORBES LAWRENCE K.
Abstract
The free-surface flow past a semi-infinite horizontal plate in a finite-depth fluid is
considered. It is assumed that the fluid is incompressible and inviscid and that the
flow approaches a uniform shear flow downstream. Exact relations are derived using
conservation of mass and momentum for the case where the downstream free surface
is flat. The complete nonlinear problem is solved numerically using a boundary-integral
method and these waveless solutions are shown to exist only when the height
of the plate above the bottom is greater than the height of the uniform shear flow.
Interesting results are found for various values of the constant vorticity. Solutions
with downstream surface waves are also considered, and nonlinear results of this type
are compared with linear results found previously. These solutions can be used to
model the flow near the stern of a (two-dimensional) ship.
Publisher
Cambridge University Press (CUP)
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Cited by
15 articles.
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