Journal article

Scale-dependency of effective hydraulic conductivity on fire-affected hillslopes

C Langhans, PNJ Lane, P Nyman, PJ Noske, JG Cawson, A Oono, GJ Sheridan

Water Resources Research | AMER GEOPHYSICAL UNION | Published : 2016

Abstract

Effective hydraulic conductivity (Ke) for Hortonian overland flow modeling has been defined as a function of rainfall intensity and runon infiltration assuming a distribution of saturated hydraulic conductivities (Ks). But surface boundary condition during infiltration and its interactions with the distribution of Ks are not well represented in models. As a result, the mean value of the Ks distribution ((Formula presented.)), which is the central parameter for Ke, varies between scales. Here we quantify this discrepancy with a large infiltration data set comprising four different methods and scales from fire-affected hillslopes in SE Australia using a relatively simple yet widely used concep..

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Grants

Funding Acknowledgements

For accessing the data, please contact the corresponding author at: christoph.langhans@unimelb.edu.au. The authors would like to thank Melbourne Water for providing research funding and Shea Burns from the USDA-ARS for advice with running KINEROS2 in batch mode.