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contributor authorOscar Castro-Orgaz
contributor authorWilli H. Hager
contributor authorFrancisco N. Cantero-Chinchilla
date accessioned2022-05-07T21:23:51Z
date available2022-05-07T21:23:51Z
date issued2021-10-27
identifier other(ASCE)HY.1943-7900.0001954.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4283678
description abstractThe Serre–Green–Naghdi (SGN) theory is used widely in maritime hydraulics for the computation of water waves from shallow to intermediate water depths. However, it has been largely ignored in problems of open-channel hydraulics. This research applies the SGN theory to compute shallow flows over curved beds, focusing on round-crested control structures. A systematic and complete analysis is presented, including the solution of both the unsteady and steady versions of the SGN theory. A new steady SGN solver is presented, allowing for automatic computation of the rating curves of the structures, thereby avoiding tedious trial and error iterations. The SGN theory is applied to a wide portfolio of obstacle shapes used in practice, resulting in agreement with experimental evidence within the shallowness limit determined. A higher-order approach is discussed, pointing to a possible path to increase the validity of SGN-type solvers in high overflow problems.
publisherASCE
titleShallow Flows over Curved Beds: Application of the Serre–Green–Naghdi Theory to Weir Flow
typeJournal Paper
journal volume148
journal issue1
journal titleJournal of Hydraulic Engineering
identifier doi10.1061/(ASCE)HY.1943-7900.0001954
journal fristpage04021053
journal lastpage04021053-9
page9
treeJournal of Hydraulic Engineering:;2021:;Volume ( 148 ):;issue: 001
contenttypeFulltext


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