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Erschienen in: Hydrogeology Journal 2/2017

05.11.2016 | Paper

Modelling the effects of porous media deformation on the propagation of water-table waves in a sandy unconfined aquifer

verfasst von: Seyed Mohammad Hossein Jazayeri Shoushtari, Nick Cartwright

Erschienen in: Hydrogeology Journal | Ausgabe 2/2017

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Abstract

This paper examines the influence of porous media deformation on water-table wave dispersion in an unconfined aquifer using a numerical model which couples Richards’ equation to the poro-elastic model. The study was motivated by the findings of Shoushtari et al. (J Hydrol 533:412–440, 2016) who were unable to reproduce the observed wave dispersion in their sand flume data with either numerical Richards’ equation models (assuming rigid porous media) or existing analytic solutions. The water-table wave dispersion is quantified via the complex wave number extracted from the predicted amplitude and phase profiles. A sensitivity analysis was performed to establish the influence of the main parameters in the poro-elastic model, namely Young’s modulus (E) and Poisson’s ratio (ν). For a short oscillation period (T = 16.4 s), the phase lag increase rate (k i) is sensitive to the chosen values of E and ν, demonstrating an inverse relationship with both parameters. Changes in the amplitude decay rate (k r), however, were negligible. For a longer oscillation period (T = 908.6 s), variations in the values of E and ν resulted in only small changes in both k r and k i. In both the short and long period cases, the poro-elastic model is unable to reproduce the observed wave dispersion in the existing laboratory data. Hence porous media deformation cannot explain the additional energy dissipation in the laboratory data. Shoushtari SMH, Cartwright N, Perrochet P, Nielsen P (2016) The effects of oscillation period on groundwater wave dispersion in a sandy unconfined aquifer: sand flume experiments and modelling. J Hydrol 533:412–440.

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Literatur
Zurück zum Zitat Barry DA, Barry SJ, Parlange J-Y (1996) Capillarity correction to periodic solutions of the shallow flow approximation. In: Pattiaratchi CB (ed) Mixing in estuaries and coastal seas, coastal and estuarine studies. AGU, Washington, DC, pp 496–510CrossRef Barry DA, Barry SJ, Parlange J-Y (1996) Capillarity correction to periodic solutions of the shallow flow approximation. In: Pattiaratchi CB (ed) Mixing in estuaries and coastal seas, coastal and estuarine studies. AGU, Washington, DC, pp 496–510CrossRef
Zurück zum Zitat Biot MA (1941) General theory of three-dimensional consolidation. J Appl Phys 26(2):155–164CrossRef Biot MA (1941) General theory of three-dimensional consolidation. J Appl Phys 26(2):155–164CrossRef
Zurück zum Zitat Biot MA (1955) Theory of elasticity and consolidation for a porous anisotropic solid. J Appl Phys 26:182–185CrossRef Biot MA (1955) Theory of elasticity and consolidation for a porous anisotropic solid. J Appl Phys 26:182–185CrossRef
Zurück zum Zitat Biot MA (1962) Mechanics of deformation and acoustic propagation in porous media. J Appl Phys 33:1482–1498CrossRef Biot MA (1962) Mechanics of deformation and acoustic propagation in porous media. J Appl Phys 33:1482–1498CrossRef
Zurück zum Zitat Cartwright N, Nielsen P, Dunn SL (2003) Water table waves in an unconfined aquifer: experiments and modeling. Water Resour Res 39:1330–1342CrossRef Cartwright N, Nielsen P, Dunn SL (2003) Water table waves in an unconfined aquifer: experiments and modeling. Water Resour Res 39:1330–1342CrossRef
Zurück zum Zitat Cha DH, Jeng D-S, Rahman MS, Sekiguchi H, Zen K, Yamazaki H (2002) Effects of dynamic soil behavior on the wave-induced seabed response. Int J Ocean Eng Technol 16(5):21–33 Cha DH, Jeng D-S, Rahman MS, Sekiguchi H, Zen K, Yamazaki H (2002) Effects of dynamic soil behavior on the wave-induced seabed response. Int J Ocean Eng Technol 16(5):21–33
Zurück zum Zitat Chui TFM, Freyberg DL (2009) Implementing hydrologic boundary conditions in a multiphysics model. Hydrol Eng 14(12):1374–1377CrossRef Chui TFM, Freyberg DL (2009) Implementing hydrologic boundary conditions in a multiphysics model. Hydrol Eng 14(12):1374–1377CrossRef
Zurück zum Zitat COMSOL (2013) COMSOL multiphysics reference manual version 4.3b. COSMOL, Burlington, MA, 1664 pp COMSOL (2013) COMSOL multiphysics reference manual version 4.3b. COSMOL, Burlington, MA, 1664 pp
Zurück zum Zitat Elfrink B, Baldock TE (2002) Hydrodynamics and sediment transport in the swash zone: a review and perspectives. Coast Eng 45(3):149–167CrossRef Elfrink B, Baldock TE (2002) Hydrodynamics and sediment transport in the swash zone: a review and perspectives. Coast Eng 45(3):149–167CrossRef
Zurück zum Zitat Jeng D-S (2003) Wave-induced seafloor dynamics. Appl Mech Rev 56(4):407–429CrossRef Jeng D-S (2003) Wave-induced seafloor dynamics. Appl Mech Rev 56(4):407–429CrossRef
Zurück zum Zitat Jeng D-S, Cha DH (2003) Effects of dynamic soil behavior and wave nonlinearity on the wave induced pore pressure and effective stresses in porous seabed. Ocean Eng 30:2065–2089CrossRef Jeng D-S, Cha DH (2003) Effects of dynamic soil behavior and wave nonlinearity on the wave induced pore pressure and effective stresses in porous seabed. Ocean Eng 30:2065–2089CrossRef
Zurück zum Zitat Jeng D-S, Hsu JRC (1996) Wave-induced soil response in a nearly saturated seabed of finite thickness. Geotechnique 46:427–440CrossRef Jeng D-S, Hsu JRC (1996) Wave-induced soil response in a nearly saturated seabed of finite thickness. Geotechnique 46:427–440CrossRef
Zurück zum Zitat Jeng D-S, Lin YS (1996) Finite element modelling for water waves–soil interaction. Soil Dyn Earthq Eng 15(5):283–300CrossRef Jeng D-S, Lin YS (1996) Finite element modelling for water waves–soil interaction. Soil Dyn Earthq Eng 15(5):283–300CrossRef
Zurück zum Zitat Jeng D-S, Lin YS (1997) Non-linear wave-induced response of porous seabed: a finite element analysis. Int J Numer Anal Methods Geomech 21(1):15–42CrossRef Jeng D-S, Lin YS (1997) Non-linear wave-induced response of porous seabed: a finite element analysis. Int J Numer Anal Methods Geomech 21(1):15–42CrossRef
Zurück zum Zitat Kong J, Shen C-J, Xin P, Song Z, Li L, Barry DA, Jeng DS, Stagnitti F, Lockington DA, Parlange J-Y (2013) Capillary effect on water table fluctuations in unconfined aquifers. Water Resour Res 49(5):3064–3069. doi:10.1002/wrcr.20237 CrossRef Kong J, Shen C-J, Xin P, Song Z, Li L, Barry DA, Jeng DS, Stagnitti F, Lockington DA, Parlange J-Y (2013) Capillary effect on water table fluctuations in unconfined aquifers. Water Resour Res 49(5):3064–3069. doi:10.​1002/​wrcr.​20237 CrossRef
Zurück zum Zitat Li L, Barry DA, Stagnitti F, Parlange J-Y (1999) Submarine groundwater discharge and associated chemical input to a coastal sea. Water Resour Res 35:3253–3259CrossRef Li L, Barry DA, Stagnitti F, Parlange J-Y (1999) Submarine groundwater discharge and associated chemical input to a coastal sea. Water Resour Res 35:3253–3259CrossRef
Zurück zum Zitat Li L, Barry DA, Stagnitti F, Parlange J-Y (2000) Groundwater waves in a coastal aquifer: a new governing equation including vertical effects and capillarity. Water Resour Res 36(2):411–420CrossRef Li L, Barry DA, Stagnitti F, Parlange J-Y (2000) Groundwater waves in a coastal aquifer: a new governing equation including vertical effects and capillarity. Water Resour Res 36(2):411–420CrossRef
Zurück zum Zitat Madsen OS (1978) Wave-induced pore pressure and effective stresses in porous bed. Geotechnique 28(4):377–393CrossRef Madsen OS (1978) Wave-induced pore pressure and effective stresses in porous bed. Geotechnique 28(4):377–393CrossRef
Zurück zum Zitat Mei CC, Foda MA (1981) Wave-induced responses in a fluid-filled poro-elastic solid with a free surface: a boundary layer theory. Geophys J R Astro Soc 66:591–637CrossRef Mei CC, Foda MA (1981) Wave-induced responses in a fluid-filled poro-elastic solid with a free surface: a boundary layer theory. Geophys J R Astro Soc 66:591–637CrossRef
Zurück zum Zitat Nielsen P (1990) Tidal dynamics of the water table in beaches. Water Resour Res 26(9):2127–2134 Nielsen P (1990) Tidal dynamics of the water table in beaches. Water Resour Res 26(9):2127–2134
Zurück zum Zitat Nielsen P, Perrochet P (2000a) Watertable dynamics under capillary fringes: experiments and modelling. Adv Water Resour 23(5):503–515CrossRef Nielsen P, Perrochet P (2000a) Watertable dynamics under capillary fringes: experiments and modelling. Adv Water Resour 23(5):503–515CrossRef
Zurück zum Zitat Nielsen P, Perrochet P (2000b) ERRATA: watertable dynamics under capillary fringes: experiments and modelling [Advances in Water Resources 23 (2000) 503–515]. Adv Water Resour 23(8):907–908CrossRef Nielsen P, Perrochet P (2000b) ERRATA: watertable dynamics under capillary fringes: experiments and modelling [Advances in Water Resources 23 (2000) 503–515]. Adv Water Resour 23(8):907–908CrossRef
Zurück zum Zitat Nielsen P, Aseervatham AM, Fenton JD, Perrochet P (1997) Groundwater waves in aquifers of intermediate depths. Adv Water Resour 20(1):37–43CrossRef Nielsen P, Aseervatham AM, Fenton JD, Perrochet P (1997) Groundwater waves in aquifers of intermediate depths. Adv Water Resour 20(1):37–43CrossRef
Zurück zum Zitat Okusa S (1985) Wave-induced stresses in unsaturated submarine sediments. Geotechnique 35(4):517–532CrossRef Okusa S (1985) Wave-induced stresses in unsaturated submarine sediments. Geotechnique 35(4):517–532CrossRef
Zurück zum Zitat Rahman MS, El-Zahaby K, Booker J (1994) A semi-analytical method for the wave induced seabed response. Int J Numer Anal Methods Geomech 18:213–236CrossRef Rahman MS, El-Zahaby K, Booker J (1994) A semi-analytical method for the wave induced seabed response. Int J Numer Anal Methods Geomech 18:213–236CrossRef
Zurück zum Zitat Richards LA (1931) Capillary conduction of liquids through porous mediums. Physics 1(5):318–333CrossRef Richards LA (1931) Capillary conduction of liquids through porous mediums. Physics 1(5):318–333CrossRef
Zurück zum Zitat Robinson C, Gibbes B, Li L (2006) Driving mechanisms for groundwater flow and salt transport in a subterranean estuary. Geophys Res Lett 33(L03402). doi:10.1029/2005GL025247 Robinson C, Gibbes B, Li L (2006) Driving mechanisms for groundwater flow and salt transport in a subterranean estuary. Geophys Res Lett 33(L03402). doi:10.​1029/​2005GL025247
Zurück zum Zitat Shabani B, Jeng D-S, Small J (2009) Wave-associated seabed behaviour near submarine buried pipelines. Nova, New York, pp 3–109 Shabani B, Jeng D-S, Small J (2009) Wave-associated seabed behaviour near submarine buried pipelines. Nova, New York, pp 3–109
Zurück zum Zitat Shoushtari SMH, Cartwright N, Perrochet P, Nielsen P (2016) The effects of oscillation period on groundwater wave dispersion in a sandy unconfined aquifer: sand flume experiments and modelling. J Hydrol 533:412–440. doi:10.1016/j.jhydrol.2015.12.032 CrossRef Shoushtari SMH, Cartwright N, Perrochet P, Nielsen P (2016) The effects of oscillation period on groundwater wave dispersion in a sandy unconfined aquifer: sand flume experiments and modelling. J Hydrol 533:412–440. doi:10.​1016/​j.​jhydrol.​2015.​12.​032 CrossRef
Zurück zum Zitat Thomas SD (1989) A finite element model for the analysis of wave induced stresses, displacements and pore pressure in an unsaturated seabed, I: theory. Comput Geotech 8(1):1–38CrossRef Thomas SD (1989) A finite element model for the analysis of wave induced stresses, displacements and pore pressure in an unsaturated seabed, I: theory. Comput Geotech 8(1):1–38CrossRef
Zurück zum Zitat Thomas SD (1995) A finite element model for the analysis of wave induced stresses, displacements and pore pressure in an unsaturated seabed, II: model verification. Comput Geotech 17(1):107–132CrossRef Thomas SD (1995) A finite element model for the analysis of wave induced stresses, displacements and pore pressure in an unsaturated seabed, II: model verification. Comput Geotech 17(1):107–132CrossRef
Zurück zum Zitat van Genuchten MT (1980) A closed form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Sci Soc Am J 44:892–898CrossRef van Genuchten MT (1980) A closed form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Sci Soc Am J 44:892–898CrossRef
Zurück zum Zitat Xin P, Robinson C, Li L, Barry DA, Bakhtyar R (2010) Effects of wave forcing on a subterranean estuary. Water Resour Res 46(W12505). doi:10.1029/2010WR009632 Xin P, Robinson C, Li L, Barry DA, Bakhtyar R (2010) Effects of wave forcing on a subterranean estuary. Water Resour Res 46(W12505). doi:10.​1029/​2010WR009632
Zurück zum Zitat Yamamoto T (1981) Wave-induced pore pressure and effective stresses in homogeneous seabed foundations. J Ocean Eng 8:1–16CrossRef Yamamoto T (1981) Wave-induced pore pressure and effective stresses in homogeneous seabed foundations. J Ocean Eng 8:1–16CrossRef
Zurück zum Zitat Yamamoto T, Schuckman B (1984) Experiments and theory of wave–soil interactions. J Eng Mech ASCE 110(1):95–112CrossRef Yamamoto T, Schuckman B (1984) Experiments and theory of wave–soil interactions. J Eng Mech ASCE 110(1):95–112CrossRef
Zurück zum Zitat Yamamotom T, Koning HL, Sellmeijer H, von Hijum E (1978) On the response of a poro-elastic bed to water waves. J Fluid Mech 87(1):193–206CrossRef Yamamotom T, Koning HL, Sellmeijer H, von Hijum E (1978) On the response of a poro-elastic bed to water waves. J Fluid Mech 87(1):193–206CrossRef
Zurück zum Zitat Zhang X, Jeng D-S, Luan MT (2011a) Dynamic response of a porous seabed around pipeline under three-dimensional wave loading. Soil Dyn Earthq Eng 31(5–6):785–791CrossRef Zhang X, Jeng D-S, Luan MT (2011a) Dynamic response of a porous seabed around pipeline under three-dimensional wave loading. Soil Dyn Earthq Eng 31(5–6):785–791CrossRef
Zurück zum Zitat Zhang J-S, Jeng D-S, Liu PL-F (2011b) Numerical study for waves propagating over a porous seabed around a submerged permeable breakwater PORO-WSSI II model. Ocean Eng 38(7):954–966CrossRef Zhang J-S, Jeng D-S, Liu PL-F (2011b) Numerical study for waves propagating over a porous seabed around a submerged permeable breakwater PORO-WSSI II model. Ocean Eng 38(7):954–966CrossRef
Zurück zum Zitat Zienkiewicz OC, Chang CT, Bettess P (1980) Drained, undrained, consolidating and dynamic behavior assumptions in soils. Geotechnique 30(4):385–395CrossRef Zienkiewicz OC, Chang CT, Bettess P (1980) Drained, undrained, consolidating and dynamic behavior assumptions in soils. Geotechnique 30(4):385–395CrossRef
Metadaten
Titel
Modelling the effects of porous media deformation on the propagation of water-table waves in a sandy unconfined aquifer
verfasst von
Seyed Mohammad Hossein Jazayeri Shoushtari
Nick Cartwright
Publikationsdatum
05.11.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Hydrogeology Journal / Ausgabe 2/2017
Print ISSN: 1431-2174
Elektronische ISSN: 1435-0157
DOI
https://doi.org/10.1007/s10040-016-1487-7

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