Hysteresis of soil moisture spatial heterogeneity and the “homogenizing” effect of vegetation

Ivanov VY, Fatichi S, Jenerette GD, Espeleta JF, Troch PA, Huxman TE. 2010. Hysteresis of soil moisture spatial heterogeneity and the “homogenizing” effect of vegetation. Water Resources Research. 46(9), W09521.

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Author
Ivanov, Valeriy Y.; Fatichi, SimoneISTA; Jenerette, G. Darrel; Espeleta, Javier F.; Troch, Peter A.; Huxman, Travis E.
Abstract
<jats:p>By partitioning mass and energy fluxes, soil moisture exerts a fundamental control on basin hydrological response. Using the design characteristics of the Biosphere 2 hillslope experiment, this study investigates aspects of soil moisture spatial and temporal variability in a zero‐order catchment of a semiarid climate. The hydrological response of the domain exhibits a particular structure, which depends on whether topography‐induced subsurface stormflow is triggered. The occurrence of the latter is conditioned by topography, soil depth, and pre‐storm spatial distribution of moisture. As a result, a non‐unique behavior of soil moisture spatial heterogeneity emerges, manifested through a hysteretic dependence of variability metrics on mean water content. Further, it is argued that vegetation dynamics impose a “homogenizing” effect on pre‐storm moisture states, decreasing the likelihood that a rainfall event will result in topographic redistribution of soil water. Consequently, post‐rainfall soil moisture dynamics associated with the effect of topography that could lead to the enhancement of spatial heterogeneity are suppressed; a potential “attractor” of catchment states emerges. The study thus proposes several hypotheses that will be testable within the framework of long‐term hillslope experiments.</jats:p>
Publishing Year
Date Published
2010-09-01
Journal Title
Water Resources Research
Publisher
American Geophysical Union
Volume
46
Issue
9
Article Number
W09521
ISSN
eISSN
IST-REx-ID

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Ivanov VY, Fatichi S, Jenerette GD, Espeleta JF, Troch PA, Huxman TE. Hysteresis of soil moisture spatial heterogeneity and the “homogenizing” effect of vegetation. Water Resources Research. 2010;46(9). doi:10.1029/2009wr008611
Ivanov, V. Y., Fatichi, S., Jenerette, G. D., Espeleta, J. F., Troch, P. A., & Huxman, T. E. (2010). Hysteresis of soil moisture spatial heterogeneity and the “homogenizing” effect of vegetation. Water Resources Research. American Geophysical Union. https://doi.org/10.1029/2009wr008611
Ivanov, Valeriy Y., Simone Fatichi, G. Darrel Jenerette, Javier F. Espeleta, Peter A. Troch, and Travis E. Huxman. “Hysteresis of Soil Moisture Spatial Heterogeneity and the ‘Homogenizing’ Effect of Vegetation.” Water Resources Research. American Geophysical Union, 2010. https://doi.org/10.1029/2009wr008611.
V. Y. Ivanov, S. Fatichi, G. D. Jenerette, J. F. Espeleta, P. A. Troch, and T. E. Huxman, “Hysteresis of soil moisture spatial heterogeneity and the ‘homogenizing’ effect of vegetation,” Water Resources Research, vol. 46, no. 9. American Geophysical Union, 2010.
Ivanov VY, Fatichi S, Jenerette GD, Espeleta JF, Troch PA, Huxman TE. 2010. Hysteresis of soil moisture spatial heterogeneity and the “homogenizing” effect of vegetation. Water Resources Research. 46(9), W09521.
Ivanov, Valeriy Y., et al. “Hysteresis of Soil Moisture Spatial Heterogeneity and the ‘Homogenizing’ Effect of Vegetation.” Water Resources Research, vol. 46, no. 9, W09521, American Geophysical Union, 2010, doi:10.1029/2009wr008611.
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