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Erschienen in: Environmental Earth Sciences 2/2016

01.01.2016 | Original Article

Flow and dispersion analysis of shallow water problems with Froude number variation

verfasst von: Inhwan Park, Il Won Seo, Young Do Kim, Chang Geun Song

Erschienen in: Environmental Earth Sciences | Ausgabe 2/2016

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Abstract

A shallow water flow model and a pollutant transport model were developed, and this study highlighted the practical applications of the coupled flow and dispersion models in terms of general properties. The flow model used the Petrov–Galerkin method in which the test functions are deformed by the current direction to introduce balancing diffusion only in the flow direction. The developed flow model was coupled to the pollutant transport model with a spatially varied dispersion tensor to demonstrate soluble constituent mixing. Three applications were considered to test the model performance under various Fr numbers. In the first application, the flow passing through a flume with an abrupt sidewall expansion was considered, and the model prediction was verified by experimental values, focusing on recirculation and the pollutant cloud trap. In the second and the third applications, the trans-critical and super-critical flow regimes evolved in non-uniform channels with an expanding or converging sidewall were reproduced, and pollutant mixing by a spatially varied dispersion tensor was investigated.

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Literatur
Zurück zum Zitat Alavian V (1986) Dispersion tensor in rotating flows. J Hydraul Eng 112:771–777CrossRef Alavian V (1986) Dispersion tensor in rotating flows. J Hydraul Eng 112:771–777CrossRef
Zurück zum Zitat Aliabadi S, Johnson A, Zellars B (2002) Parallel simulation of flows in open channels. Future Gen Comput syst 18:627–637CrossRef Aliabadi S, Johnson A, Zellars B (2002) Parallel simulation of flows in open channels. Future Gen Comput syst 18:627–637CrossRef
Zurück zum Zitat Brooks AN, Hughes TJR (1982) Streamline upwind/Petrov–Galerkin formulations for convection dominated flows with particular emphasis on the incompressible Navier–Stokes equations. Comput Methods Appl Mech 32:199–259CrossRef Brooks AN, Hughes TJR (1982) Streamline upwind/Petrov–Galerkin formulations for convection dominated flows with particular emphasis on the incompressible Navier–Stokes equations. Comput Methods Appl Mech 32:199–259CrossRef
Zurück zum Zitat Causon DM, Mingham CG, Ingram DM (1999) Advances in calculation methods for supercritical flow in spillway channels. J Hydraul Eng 125:1039–1050CrossRef Causon DM, Mingham CG, Ingram DM (1999) Advances in calculation methods for supercritical flow in spillway channels. J Hydraul Eng 125:1039–1050CrossRef
Zurück zum Zitat Duan JG (2004) Simulation of flow and mass dispersion in meandering channels. J Hydraul Eng 130:964–976CrossRef Duan JG (2004) Simulation of flow and mass dispersion in meandering channels. J Hydraul Eng 130:964–976CrossRef
Zurück zum Zitat Elder JW (1959) The dispersion of marked fluid in turbulent shear flow. J Fluid Mech 5:544–560CrossRef Elder JW (1959) The dispersion of marked fluid in turbulent shear flow. J Fluid Mech 5:544–560CrossRef
Zurück zum Zitat Fischer HB, List EJ, Koh RCY, Imberger J, Brooks NH (1979) Mixing in inland and coastal waters. Academic Press, London Fischer HB, List EJ, Koh RCY, Imberger J, Brooks NH (1979) Mixing in inland and coastal waters. Academic Press, London
Zurück zum Zitat Heinrich JC, Pepper DW (1999) Intermediate finite element method—fluid flow and heat transfer applications. Taylor & Francis, London, p 238 Heinrich JC, Pepper DW (1999) Intermediate finite element method—fluid flow and heat transfer applications. Taylor & Francis, London, p 238
Zurück zum Zitat Hervouet JM (2007) Hydrodynamics of free surface flows: modelling with the finite element method. Wiley, New YorkCrossRef Hervouet JM (2007) Hydrodynamics of free surface flows: modelling with the finite element method. Wiley, New YorkCrossRef
Zurück zum Zitat Hughes TJR (1987) Recent progress in the development and understanding of SU/PG methods with special reference to the compressible Euler and Navier–Stokes equations. Int J Numer Methods Fluid 7:1261–1275CrossRef Hughes TJR (1987) Recent progress in the development and understanding of SU/PG methods with special reference to the compressible Euler and Navier–Stokes equations. Int J Numer Methods Fluid 7:1261–1275CrossRef
Zurück zum Zitat Ippen AT, Dawson JH (1951) High velocity flow in open channels: design of channel contractions. Trans ASCE 116:326–346 Ippen AT, Dawson JH (1951) High velocity flow in open channels: design of channel contractions. Trans ASCE 116:326–346
Zurück zum Zitat Khalifa A (1980) Theoretical and experimental study of the radial hydraulic jump. Ph. D. dissertation, University of Windsor, Windsor, Ontario Khalifa A (1980) Theoretical and experimental study of the radial hydraulic jump. Ph. D. dissertation, University of Windsor, Windsor, Ontario
Zurück zum Zitat Lee ME, Seo IW (2010) 2D finite element pollutant transport model for accidental mass release in rivers. J Civil Eng 14:77–86 Lee ME, Seo IW (2010) 2D finite element pollutant transport model for accidental mass release in rivers. J Civil Eng 14:77–86
Zurück zum Zitat Letter JV, Donnel BP (2005) Users guide for RMA4 version 4.5. Engineer Research and Development Center, US Army Letter JV, Donnel BP (2005) Users guide for RMA4 version 4.5. Engineer Research and Development Center, US Army
Zurück zum Zitat Liang D, Lin B, Falconer RA (2007) A boundary-fitted numerical model for flood routing with shock-capturing capability. J Hydrol 332:477–486CrossRef Liang D, Lin B, Falconer RA (2007) A boundary-fitted numerical model for flood routing with shock-capturing capability. J Hydrol 332:477–486CrossRef
Zurück zum Zitat Rutherford JC (1994) River mixing. Wiley, Chichester Rutherford JC (1994) River mixing. Wiley, Chichester
Zurück zum Zitat Sabbagh-Yazdi SR, Jamshidi M (2013) Depth-averaged hydrodynamic model for gradual breaching of embankment dams attributable to overtopping considering suspended sediment transport. J Hydraul Eng 139:580–592CrossRef Sabbagh-Yazdi SR, Jamshidi M (2013) Depth-averaged hydrodynamic model for gradual breaching of embankment dams attributable to overtopping considering suspended sediment transport. J Hydraul Eng 139:580–592CrossRef
Zurück zum Zitat Scott, JA (2004) A state-of-the-art frontal solver for finite-element application. Technical report RAL-TR-2004-026, Rutherford Appleton Laboratory Scott, JA (2004) A state-of-the-art frontal solver for finite-element application. Technical report RAL-TR-2004-026, Rutherford Appleton Laboratory
Zurück zum Zitat Seo IW, Lee ME (2006) Development of 2D advection-dispersion model with dispersion tensor considering velocity field. KSCE 26:171–178 (in Korean) Seo IW, Lee ME (2006) Development of 2D advection-dispersion model with dispersion tensor considering velocity field. KSCE 26:171–178 (in Korean)
Zurück zum Zitat Seo IW, Song CG (2010) Specification of wall boundary conditions and transverse velocity profile conditions in finite element modeling. J Hydrodyn 22:633–638CrossRef Seo IW, Song CG (2010) Specification of wall boundary conditions and transverse velocity profile conditions in finite element modeling. J Hydrodyn 22:633–638CrossRef
Zurück zum Zitat Seo IW, Song CG (2012) Numerical simulation of laminar flow past a circular cylinder with slip conditions. Int J Numer Methods Fluid 68:1538–1560CrossRef Seo IW, Song CG (2012) Numerical simulation of laminar flow past a circular cylinder with slip conditions. Int J Numer Methods Fluid 68:1538–1560CrossRef
Zurück zum Zitat Seo IW, Lee ME, Baek KO (2008) 2D modeling of heterogeneous dispersion in meandering channels. J Hydraul Eng 134:196–204CrossRef Seo IW, Lee ME, Baek KO (2008) 2D modeling of heterogeneous dispersion in meandering channels. J Hydraul Eng 134:196–204CrossRef
Zurück zum Zitat Song CG, Seo IW, Kim YD (2012) Analysis of secondary current effect in the modeling of shallow flow in open channels. Adv Water Resour 41:29–48CrossRef Song CG, Seo IW, Kim YD (2012) Analysis of secondary current effect in the modeling of shallow flow in open channels. Adv Water Resour 41:29–48CrossRef
Zurück zum Zitat Steffler PM, Blackburn J (2002) Introduction to depth averaged modeling and user’s manual. River2D Two-dimensional depth averaged model of river hydrodynamics and fish habitat, University of Alberta, 76 Steffler PM, Blackburn J (2002) Introduction to depth averaged modeling and user’s manual. River2D Two-dimensional depth averaged model of river hydrodynamics and fish habitat, University of Alberta, 76
Zurück zum Zitat Takase S, Kashiyama K, Tanaka S, Tezduyar TE (2010) Space–time SUPG formulation of the shallow-water equations. Int J Numer Methods Fluid 64:1379–1394CrossRef Takase S, Kashiyama K, Tanaka S, Tezduyar TE (2010) Space–time SUPG formulation of the shallow-water equations. Int J Numer Methods Fluid 64:1379–1394CrossRef
Zurück zum Zitat Vreugdenhil CB (1994) Numerical methods for shallow-water flow. Kluwer Academic Publishers, AmsterdamCrossRef Vreugdenhil CB (1994) Numerical methods for shallow-water flow. Kluwer Academic Publishers, AmsterdamCrossRef
Zurück zum Zitat Weiyan T (1992) Shallow water hydrodynamics-mathematical theory and numerical solution for a two-dimensional system of shallow water equations. Elsevier, Amsterdam Weiyan T (1992) Shallow water hydrodynamics-mathematical theory and numerical solution for a two-dimensional system of shallow water equations. Elsevier, Amsterdam
Zurück zum Zitat Xie BL (1996) Experiment on flow in a sudden-expanded channel, technical report. Wuhan University of Hydraulic and Electric Engineering, China Xie BL (1996) Experiment on flow in a sudden-expanded channel, technical report. Wuhan University of Hydraulic and Electric Engineering, China
Zurück zum Zitat Younus M, Chaudhry MH (1994) A depth-averaged turbulence model for the computation of free-surface flow. J Hydraul Res 32:415–444CrossRef Younus M, Chaudhry MH (1994) A depth-averaged turbulence model for the computation of free-surface flow. J Hydraul Res 32:415–444CrossRef
Zurück zum Zitat Zounemat-Kermani M, Sabbagh-Yazdi SR (2010) Coupling of two- and three-dimensional hydrodynamic numerical models for simulating wind-induced currents in deep basins. Comput Fluids 39:994–1011CrossRef Zounemat-Kermani M, Sabbagh-Yazdi SR (2010) Coupling of two- and three-dimensional hydrodynamic numerical models for simulating wind-induced currents in deep basins. Comput Fluids 39:994–1011CrossRef
Metadaten
Titel
Flow and dispersion analysis of shallow water problems with Froude number variation
verfasst von
Inhwan Park
Il Won Seo
Young Do Kim
Chang Geun Song
Publikationsdatum
01.01.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 2/2016
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-015-4928-z

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