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A soil moisture accounting-procedure with a Richards' equation-based soil texture-dependent parameterization

Mathias, S.A.; Skaggs, T.H.; Quinn, S.A.; Egan, N.C.; Finch, L.E.; Oldham, C.D.

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Authors

T.H. Skaggs

S.A. Quinn

N.C. Egan

L.E. Finch

C.D. Oldham



Abstract

Given a time-series of potential evapotranspiration and rainfall data, there are at least two approaches for estimating vertical percolation rates. One approach involves solving Richards' equation (RE) with a plant uptake model. An alternative approach involves applying a simple soil moisture accounting procedure (SMAP) based on a set of conceptual stores and conditional statements. It is often desirable to parameterize distributed vertical percolation models using regional soil texture maps. This can be achieved using pedotransfer functions when applying RE. However, robust soil texture based parameterizations for more simple SMAPs have not previously been available. This article presents a new SMAP designed to emulate the response of a one-dimensional homogenous RE model. Model parameters for 231 different soil textures are obtained by calibrating the SMAP model to 20 year time-series from equivalent RE model simulations. The results are then validated by comparing to an additional 13 years of simulated RE model data. The resulting work provides a new simple two parameter (% sand and % silt) SMAP, which provides consistent vertical percolation data as compared to RE based models. Results from the 231 numerical simulations are also found to be qualitatively consistent with intuitive ideas concerning soil texture and soil moisture dynamics. Vertical percolation rates are found to be highest in sandy soils. Sandy soils are found to provide less water for evapotranspiration. Surface runoff is found to be more important in soils with high clay content.

Citation

Mathias, S., Skaggs, T., Quinn, S., Egan, N., Finch, L., & Oldham, C. (2015). A soil moisture accounting-procedure with a Richards' equation-based soil texture-dependent parameterization. Water Resources Research, 51(1), 506-523. https://doi.org/10.1002/2014wr016144

Journal Article Type Article
Acceptance Date Nov 26, 2014
Online Publication Date Dec 5, 2014
Publication Date Jan 23, 2015
Deposit Date Dec 17, 2014
Publicly Available Date Feb 18, 2015
Journal Water Resources Research
Print ISSN 0043-1397
Electronic ISSN 1944-7973
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 51
Issue 1
Pages 506-523
DOI https://doi.org/10.1002/2014wr016144
Keywords Soil texture, Unsaturated flow, Recharge, Richards' equation, Zero flux plane, Plant uptake.

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Copyright Statement
Mathias, S. A., T. H. Skaggs, S. A. Quinn, S. N. C. Egan, L. E. Finch, and C. D. Oldham (2015), A soil moisture accounting-procedure with a Richards' equation-based soil texture-dependent parameterization, Water resources research, 51, 506-523, 10.1002/2014WR016144. To view the published open abstract, go to http://dx.doi.org and enter the DOI.




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