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Research on Hydraulics and River Dynamics



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Author: Hrissanthou Vlassios View person
Title: Research on Hydraulics and River Dynamics View cluster
Publisher: Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Physical description: 1 electronic resource (186 p.)
Topical subject: Technology: general issues
History of engineering & technology
Uncontrolled subject: bed roughness
open-channel flow
OpenFOAM
Reynolds-averaged Navier-Stokes model
turbulence model
two-dimensional dune
60° bend
bed shear stress
turbulent kinetic energy
Reynolds shear stress
log-law
continuous bend
transition section
correlation of flow movement
width/depth ratio
circulation structure
circulation intensity
numerical simulation
local scour
spur dike
angle of repose
river sediment transport modeling
alluvial channels
hydraulic riverbed resistance
mathematical modeling
van Rijn sediment transport formula
local scouring
bridge pile group
material harvesting pit
hydrodynamic bridge pier
flow pattern
FLOW-3D
bed load transport
random forests
Gaussian processes regression
Meyer-Peter and Müller formula
sediment transport
incision
meandering
bedrock
curved channel
bed configurations
annular flume
cover lid rotation speed
developing flow
fully-developed flow
Reynolds stress anisotropy tensor
seepage flow
turbulence intensity
Person (second resp.): HrissanthouVlassios
Summary, etc: This Special Issue includes nine original contributions focused on river hydraulics. Four of these resulted from cooperation between universities from different countries: (a) Russia and Poland , (b) Taiwan and the USA , (c) Iran and Italy, and (d) India and Italy . The other contributions resulted from research carried out in universities from South Korea [5], Greece [6], China , and Japan .
Preferred title for the work: Research on Hydraulics and River Dynamics  View cluster
ISBN: 3-0365-5598-6
Format: Language material
Bibliographic level Monograph
Language: English
Record Nr.: 9910639988803321
You will find it: Univ. Federico II
Opac: Check copies here