Abrams, D. M., A. E. Lobkovsky, A. P. Petroff, K. M. Straub, B. McElroy, D. C. Mohrig, A. Kudrolli, and D. H. Rothman (2009), Growth laws for channel networks incised by groundwater flow, Nat. Geosci., 2(3), 193–196.
Batelaan, O., F. De Smedt, and L. Triest (2003), Regional groundwater discharge: Phreatophyte mapping, groundwater modelling and impact analysis of land-use change, J. Hydrol., 275(1–2), 86–108.
Beven, K. J., and M. J. Kirkby (1979), A physically based, variable contributing area model of basin hydrology, Hydrol. Sci. Bull., 24(1), 43–69.
Bresciani, E., P. Davy, and J.-R. de Dreuzy (2014), Is the Dupuit assumption suitable for predicting the groundwater seepage area in hillslopes?, Water Resour. Res., 50, 2394–2406, doi:10.1002/2013WR014284.
Bresciani, E., T. Gleeson, P. Goderniaux, J. R. de Dreuzy, A. D. Werner, A. Wörman, W. Zijl, and O. Batelaan (2016), Groundwater flow systems theory: Research challenges beyond the specified-head top boundary condition, Hydrogeol. J., 24(5), 1087–1090.
Cardenas, M. B. (2007), Potential contribution of topography-driven regional groundwater flow to fractal stream chemistry: Residence time distribution analysis of Tóth flow, Geophys. Res. Lett., 34, L05403, doi:10.1029/2006GL029126.
Cardenas, M. B., and X.-W. Jiang (2010), Groundwater flow, transport, and residence times through topography-driven basins with exponentially decreasing permeability and porosity, Water Resour. Res., 46, W11538, doi:10.1029/2010WR009370.
Cohen, D., et al. (2006), Groundwater-supported evapotranspiration within glaciated watersheds under conditions of climate change, J. Hydrol., 320(3–4), 484–500.
Condon, L. E., and R. M. Maxwell (2015), Evaluating the relationship between topography and groundwater using outputs from a continental-scale integrated hydrology model, Water Resour. Res., 51, 6602–6621, doi:10.1002/2014WR016774.
Dagan, G. (1964), Spacing of drains by an approximate method, J. Irrig. Drain. Div., 90(1), 41–46.
de Graaf, I. E. M., E. H. Sutanudjaja, L. P. H. van Beek, and M. F. P. Bierkens (2015), A high-resolution global-scale groundwater model, Hydrol. Earth Syst. Sci., 19(2), 823–837.
de Vries, J. J. (1994), Dynamics of the interface between streams and groundwater systems in lowland areas, with reference to stream net evolution, J. Hydrol., 155(1), 39–56.
de Vries, J. J. (1995), Seasonal expansion and contraction of stream networks in shallow groundwater systems, J. Hydrol., 170(1–4), 15–26.
Dupuit, J. (1863), Études théoriques et pratiques sur le mouvement des eaux dans les canaux découverts et à travers les terrains perméables, 2nd ed., Dunod, Paris.
Eamus, D., and R. Froend (2006), Groundwater-dependent ecosystems: The where, what and why of GDEs, Aust. J. Botany, 54(2), 91–96.
Ernst, L. F. (1962), Grondwaterstromingen in de verzadigde zone en hun berekening bij aanwezigheid van horizontale evenwijdige open leidingen, PhD thesis, Univ. of Utrecht.
Ernst, L. F. (1978), Second and third degree equations for the determination of the spacings between parallel drainage channels, paper presented at Proceedings of the International Drainage Workshop, Wageningen, Netherlands.
Forchheimer, P. (1886), Über die Ergiebigkeit von Brunnen-Anlagen und Sickerschlitzen, Zeitschrift des Architecten und Ingenieurs Vereins zu Hannover, 32, 539–564.
Forster, C., and L. Smith (1988), Groundwater-flow systems in mountainous terrain: 2. Controlling factors, Water Resour. Res., 24, 1011–1023, doi:10.1029/WR024i007p01011.
Fox, G. A., and G. V. Wilson (2010), The role of subsurface flow in Hillslope and Stream Bank Erosion: A review, Soil Sci. Soc. Am. J., 74(3), 717–733.
Gleeson, T., and A. H. Manning (2008), Regional groundwater flow in mountainous terrain: Three-dimensional simulations of topographic and hydrogeologic controls, Water Resour. Res., 44, W10403, doi:10.1029/2008WR006848.
Gleeson, T., L. Marklund, L. Smith, and A. H. Manning (2011), Classifying the water table at regional to continental scales, Geophys. Res. Lett., 38, L05401, doi:10.1029/2010GL046427.
Goderniaux, P., P. Davy, E. Bresciani, J.-R. de Dreuzy, and T. Le Borgne (2013), Partitioning a regional groundwater flow system into shallow local and deep regional flow compartments, Water Resour. Res., 49, 2274–2286, doi:10.1002/wrcr.20186.
Godsey, S. E., and J. W. Kirchner (2014), Dynamic, discontinuous stream networks: Hydrologically driven variations in active drainage density, flowing channels and stream order, Hydrol. Process., 28(23), 5791–5803.
Goudie, A. (2013), Encyclopedia of Geomorphology, Routledge, London and New York.
Haitjema, H. M. (2006), The role of hand calculations in ground water flow modeling, Ground Water, 44(6), 786–791.
Haitjema, H. M., and S. Mitchell-Bruker (2005), Are water tables a subdued replica of the topography?, Ground Water, 43(6), 781–786.
Harbaugh, A. W. (2005), MODFLOW-2005, The U.S. Geological Survey modular ground-water model—The ground-water flow process, U.S. Geol. Surv., Reston, Va.
Hooghoudt, S. B. (1940), Algemeene beschouwing van het probleem van de detailontwatering en de infiltratie door middel van parallel loopende drains, greppels, slooten en kanalen, Bodemkundig Instituut te Groningen, Versl. Landbouwk. Onderz.
Horton, R. E. (1945), Erosional development of streams and their drainage basins: Hydrophysical approach to quantitative morphology, Geol. Soc. Am. Bull., 56, 275–370.
Hunt, R. J., and D. T. Feinstein (2012), MODFLOW-NWT: Robust handling of dry cells using a Newton formulation of MODFLOW-2005, Ground Water, 50(5), 659–663.
Kirkham, D. (1967), Explanation of paradoxes in Dupuit-Forchheimer seepage theory, Water Resour. Res., 3, 609–622, doi:10.1029/WR003i002p00609.
Krakauer, N. Y., H. Li, and Y. Fan (2014), Groundwater flow across spatial scales: Importance for climate modeling, Environ. Res. Lett., 9(3), 034003.
Lovell, C. J., and E. G. Youngs (1984), A comparison of steady-state land-drainage equations, Agric. Water Manage., 9(1), 1–21.
Luo, W., and D. T. Pederson (2012), Hydraulic conductivity of the High Plains Aquifer re-evaluated using surface drainage patterns, Geophys. Res. Lett., 39, L02402, doi:10.1029/2011GL050200.
Luo, W., B. P. Grudzinski, and D. Pederson (2010), Estimating hydraulic conductivity from drainage patterns—A case study in the Oregon Cascades, Geology, 38(4), 335–338.
Luo, W., B. Grudzinski, and D. Pederson (2011), Estimating hydraulic conductivity for the Martian subsurface based on drainage patterns—A case study in the Mare Tyrrhenum Quadrangle, Geomorphology, 125(3), 414–420.
Maxwell, R. M., and S. J. Kollet (2008), Interdependence of groundwater dynamics and land-energy feedbacks under climate change, Nat. Geosci., 1(10), 665–669.
Maxwell, R. M., F. K. Chow, and S. J. Kollet (2007), The groundwater–land-surface–atmosphere connection: Soil moisture effects on the atmospheric boundary layer in fully-coupled simulations, Adv. Water Resour., 30(12), 2447–2466.
Montgomery, D. R., and W. E. Dietrich (1989), Source areas, drainage density, and channel initiation, Water Resour. Res., 25, 1907–1918, doi:10.1029/WR025i008p01907.
Niswonger, R. G., S. Panday, and M. Ibaraki (2011), MODFLOW-NWT: A Newton formulation for MODFLOW-2005, U.S. Geological Survey Techniques and Methods 6-A37, 44 p.
O'Loughlin, E. M. (1981), Saturation regions in catchments and their relations to soil and topographic properties, J. Hydrol., 53(3–4), 229–246.
Olsthoorn, T. N. (2013), User Guide for mfLab, Delft Univ. of Technology, Waternet.
Ritzema, H. P. (1994), Subsurface flow to drains, in Drainage Principles and Applications, edited by H. P. Ritzema, Int. Institute for Land Reclamation and Improvement (ILRI), Wageningen, Netherlands.
Salvucci, G. D., and D. Entekhabi (1995), Hillslope and climatic controls on hydrologic fluxes, Water Resour. Res., 31, 1725–1739, doi:10.1029/95WR00057.
Schaller, M. F., and Y. Fan (2009), River basins as groundwater exporters and importers: Implications for water cycle and climate modeling, J. Geophys. Res., 114, D04103, doi:10.1029/2008JD010636.
Tóth, J. (1963), A theoretical analysis of groundwater flow in small drainage basins, J. Geophys. Res., 68, 4795–4812, doi:10.1029/JZ068i016p04795.
van Beers, W. F. J. (1976), Computing Drain Spacings: A Generalized Method With Special Reference to Sensitivity Analysis and Geo-hydrological Investigations, International Institute for Land Reclamation and Improvement (ILRI) Bulletin 15, Wageningen, Netherlands.
van der Molen, W. H., and J. Wesseling (1991), A solution in closed form and a series solution to replace the tables for the thickness of the equivalent layer in Hooghoudt's drain spacing formula, Agric. Water Manage., 19(1), 1–16.
van der Molen, W. H., J. M. Beltrán, and W. J. Ochs (2007), Guidelines and Computer Programs for the Planning and Design of Land Drainage Systems, Food and Agric. Org. of the U. N, Rome.
Wang, D., and L. Wu (2013), Similarity of climate control on base flow and perennial stream density in the Budyko framework, Hydrol. Earth Syst. Sci., 17(1), 315–324.
Winter, T. C. (1999), Relation of streams, lakes, and wetlands to groundwater flow systems, Hydrogeol. J., 7(1), 28–45.
Winter, T. C. (2001), The concept of hydrologic landscapes, J. Am. Water Resour. Assoc., 37(2), 335–349.
Winter, T. C., J. W. Harvey, O. L. Franke, and W. M. Alley (1998), Ground Water and Surface Water—A Single Resource, U.S. Geol. Surv., Circular 1139 Denver, Colo.
Wörman, A., A. I. Packman, L. Marklund, J. W. Harvey, and S. H. Stone (2006), Exact three-dimensional spectral solution to surface-groundwater interactions with arbitrary surface topography, Geophys. Res. Lett., 33, L07402, doi:10.1029/2006GL025747.
Wörman, A., A. I. Packman, L. Marklund, J. W. Harvey, and S. H. Stone (2007), Fractal topography and subsurface water flows from fluvial bedforms to the continental shield, Geophys. Res. Lett., 34, L07402, doi:10.1029/2007GL029426.
York, J. P., M. Person, W. J. Gutowski, and T. C. Winter (2002), Putting aquifers into atmospheric simulation models: An example from the Mill Creek Watershed, northeastern Kansas, Adv. Water Resour., 25(2), 221–238.
Zech, A., B. Zehner, O. Kolditz, and S. Attinger (2016), Impact of heterogeneous permeability distribution on the groundwater flow systems of a small sedimentary basin, J. Hydrol., 532, 90–101.
Zijl, W. (1999), Scale aspects of groundwater flow and transport systems, Hydrogeol. J., 7(1), 139–150.