CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway

Comprehensive rehabilitation projects of dam spillways are made in Sweden, due to stricter dam safety guidelines for their discharge capacity. The Piano Key Weir (PKW) is an innovative design which has proven effective through several renovation projects made in many countries including France. In t...

Full description

Bibliographic Details
Main Authors: Sjösten, William, Vadling, Victor
Format: Others
Language:English
Published: Uppsala universitet, Elektricitetslära 2020
Subjects:
CFD
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-414861
id ndltd-UPSALLA1-oai-DiVA.org-uu-414861
record_format oai_dc
spelling ndltd-UPSALLA1-oai-DiVA.org-uu-4148612020-07-01T04:26:50ZCFD Simulations of Flow Characteristics of a Piano Key Weir SpillwayengSjösten, WilliamVadling, VictorUppsala universitet, ElektricitetsläraUppsala universitet, Elektricitetslära2020Piano Key WeirAnsys FluentMultiphase FlowSpillwayFlow CharacteristicsCFDRealizable k-epsilonVolume of FluidRenolds-averaged Navier-StokesEngineering and TechnologyTeknik och teknologierComprehensive rehabilitation projects of dam spillways are made in Sweden, due to stricter dam safety guidelines for their discharge capacity. The Piano Key Weir (PKW) is an innovative design which has proven effective through several renovation projects made in many countries including France. In this study we investigate the flow patterns around a prototype PKW, located in Escouloubre dam in southern France, with numerical simulations through three different flow cases in Ansys Fluent. A computational domain containing the PKW is created in the CAD software Ansys SpaceClaim for the simulations. Three polyhexcore meshes are further generated using Ansys Fluent Meshing. The three flow cases are then simulated with a Reynolds-averaged Navier-Stokes (RANS) model, coupled with realizable k-epsilon and volume of fluid models. Through an assessment of the discretization error between three meshes, a relative error of one percent is obtained for the discharge rate. The numerical results are qualitatively compared with results from previously conducted physical experiments on this PKW. The RANS model does not capture the water surface undulations (due to turbulence) around the PKW. The effects from under modelled surface undulations are alleviated by inserting an air vent to the PKW, which results in a flow behaviour in good agreement with the physical experiments. Through this alteration, water discharge rates are computed with a maximum discrepancy of five percent compared with the corresponding experimental values. A large eddy simulation should be conducted in the future, to bring further light on air exchange and water interaction phenomena present in the PKW flow pattern. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-414861UPTEC F, 1401-5757 ; 20036application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Piano Key Weir
Ansys Fluent
Multiphase Flow
Spillway
Flow Characteristics
CFD
Realizable k-epsilon
Volume of Fluid
Renolds-averaged Navier-Stokes
Engineering and Technology
Teknik och teknologier
spellingShingle Piano Key Weir
Ansys Fluent
Multiphase Flow
Spillway
Flow Characteristics
CFD
Realizable k-epsilon
Volume of Fluid
Renolds-averaged Navier-Stokes
Engineering and Technology
Teknik och teknologier
Sjösten, William
Vadling, Victor
CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway
description Comprehensive rehabilitation projects of dam spillways are made in Sweden, due to stricter dam safety guidelines for their discharge capacity. The Piano Key Weir (PKW) is an innovative design which has proven effective through several renovation projects made in many countries including France. In this study we investigate the flow patterns around a prototype PKW, located in Escouloubre dam in southern France, with numerical simulations through three different flow cases in Ansys Fluent. A computational domain containing the PKW is created in the CAD software Ansys SpaceClaim for the simulations. Three polyhexcore meshes are further generated using Ansys Fluent Meshing. The three flow cases are then simulated with a Reynolds-averaged Navier-Stokes (RANS) model, coupled with realizable k-epsilon and volume of fluid models. Through an assessment of the discretization error between three meshes, a relative error of one percent is obtained for the discharge rate. The numerical results are qualitatively compared with results from previously conducted physical experiments on this PKW. The RANS model does not capture the water surface undulations (due to turbulence) around the PKW. The effects from under modelled surface undulations are alleviated by inserting an air vent to the PKW, which results in a flow behaviour in good agreement with the physical experiments. Through this alteration, water discharge rates are computed with a maximum discrepancy of five percent compared with the corresponding experimental values. A large eddy simulation should be conducted in the future, to bring further light on air exchange and water interaction phenomena present in the PKW flow pattern.
author Sjösten, William
Vadling, Victor
author_facet Sjösten, William
Vadling, Victor
author_sort Sjösten, William
title CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway
title_short CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway
title_full CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway
title_fullStr CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway
title_full_unstemmed CFD Simulations of Flow Characteristics of a Piano Key Weir Spillway
title_sort cfd simulations of flow characteristics of a piano key weir spillway
publisher Uppsala universitet, Elektricitetslära
publishDate 2020
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-414861
work_keys_str_mv AT sjostenwilliam cfdsimulationsofflowcharacteristicsofapianokeyweirspillway
AT vadlingvictor cfdsimulationsofflowcharacteristicsofapianokeyweirspillway
_version_ 1719324733970841600