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Cited article:

Improved partitioning between matrix and macropore flow: Novel bimodal lognormal functions for water retention and hydraulic conductivity in pumice and non-pumice soils

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Derivation of physically based soil hydraulic parameters in New Zealand by combining soil physics and hydropedology

J. A. P. Pollacco, J. Fernández‐Gálvez, T. Webb, S. Vickers, B. Robertson, S. McNeill, L. Lilburne, C. Rajanayaka and H. W. Chau
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Sensitivity analysis of land and water productivities predicted with an empirical and a process-based root water uptake function

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https://doi.org/10.1016/j.jhydrol.2023.130241

Bimodal unsaturated hydraulic conductivity derived from water retention parameters by accounting for clay-water interactions: Deriving a plausible set of hydraulic parameters

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HyPix: 1D physically based hydrological model with novel adaptive time-stepping management and smoothing dynamic criterion for controlling Newton–Raphson step

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Environmental Modelling & Software 153 105386 (2022)
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Multistep optimization of HyPix model for flexible vertical scaling of soil hydraulic parameters

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Deriving physical and unique bimodal soil Kosugi hydraulic parameters from inverse modelling

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Advances in Water Resources 153 103933 (2021)
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Saturated hydraulic conductivity model computed from bimodal water retention curves for a range of New Zealand soils

Joseph Alexander Paul Pollacco, Trevor Webb, Stephen McNeill, et al.
Hydrology and Earth System Sciences 21 (6) 2725 (2017)
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Weighted objective function selector algorithm for parameter estimation of SVAT models with remote sensing data

Joseph A. P. Pollacco, Binayak P. Mohanty and Andreas Efstratiadis
Water Resources Research 49 (10) 6959 (2013)
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Uncertainties of Water Fluxes in Soil–Vegetation–Atmosphere Transfer Models: Inverting Surface Soil Moisture and Evapotranspiration Retrieved from Remote Sensing

Joseph A.P. Pollacco and Binayak P. Mohanty
Vadose Zone Journal 11 (3) (2012)
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A Linking Test that investigates the feasibility of inverse modelling: application to a simple rainfall interception model for Mt Gambier, southeast South Australia

J. A. P. Pollacco and R. Angulo‐Jaramilo
Hydrological Processes 23 (14) 2023 (2009)
https://doi.org/10.1002/hyp.7329