Author:
ZHU DAVID Z.,LAWRENCE GREGORY A.
Abstract
This paper develops a one-dimensional extension to
classical layered hydraulics that
incorporates non-hydrostatic effects. General results for a
homogeneous layer in a
multi-layer steady flow are applied to single- and two-layer
flow over a two-dimensional sill. The equation obtained for
single-layer flows is the same as that
obtained by Naghdi & Vongsarnpigoon (1986) using the
direct theory of constrained
fluid sheets, and compares very well with the laboratory
measurements of Sivakumaran
et al. (1983). The new equation derived for
two-layer flows provides excellent
agreement with the laboratory measurements of Lawrence
(1993). Accurate solutions
are obtained for a regime of two-layer flow whose behaviour
cannot be explained, even
qualitatively, using classical hydraulic theory.
Publisher
Cambridge University Press (CUP)
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Cited by
42 articles.
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