Effect of bed roughness on 1-D entropy velocity distribution in open channel flow
Author(s) -
Michele Greco
Publication year - 2013
Publication title -
hydrology research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.665
H-Index - 48
eISSN - 1996-9694
pISSN - 0029-1277
DOI - 10.2166/nh.2013.122
Subject(s) - open channel flow , surface finish , hydraulic roughness , mechanics , logarithm , entropy (arrow of time) , shear velocity , roughness length , flow velocity , flow (mathematics) , surface roughness , geometry , materials science , mathematics , physics , thermodynamics , mathematical analysis , turbulence , composite material , wind profile power law , turbine
A theoretic-analytical formulation, based on entropy velocity profile law and classical relationships for uniform flow and friction factor, is proposed enlightening the general logarithmic relationship existing between the parameter Φ(M), defined as mean cross section velocity over maximum velocity, and the ratio water depth/bed roughness (D/d). The relationship Φ(M)-D/d has been applied to a relevant set of experimental velocity measurement data collected both in laboratory and in field, showing different behaviour between small scale and large-intermediate roughness flows. In particular, the roughness influence becomes remarkable whenever shallow water flow conditions occur, that is when the ratio between the flow depth and the roughness height is less than 4, while Φ(M) tends to be constant as the value of D/d increases
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