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- W2896020580 abstract "Bare soils and grasslands in arid and semi-arid conditions constitute a large portion of the earth surface. Evaporation, which is the main component of the water balance in these conditions, often takes place through a dry soil layer (DSL). There is no scientific agreement yet on the DSL effects on evaporation rates. The implementations of three conceptual models of DSL-evaporation were tested for the simulation of evaporation rates in a semi-arid study area in Central Spain: (i) the daily-average model, based on the assumption that the daily average vapour transport in a DSL can be represented in analogy to isothermal liquid flow; (ii) the numerical model solving the Richards equation, in this case HYDRUS1D was used; and (iii) the pore-scale model, based on soil column experiments in laboratory conditions. The evaporation rates estimated by the three conceptual models for semi-arid field conditions were compared with the evaporation rates measured by an eddy covariance tower in the same area. The results indicate that the daily-average conceptual model assumption, in which the DSL has no effects on evaporation, does not hold in very dry conditions. The numerical model solving the Richards equation was not able to simulate the effects of the DSL on evaporation rates. The evaporation estimates obtained by the pore-scale conceptual model were closest to the eddy covariance measurements during the dry season, however this model was applicable only to the relatively steady evaporation conditions during afternoons and only assuming spatially constant DSL thickness." @default.
- W2896020580 created "2018-10-26" @default.
- W2896020580 creator A5001239478 @default.
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- W2896020580 date "2018-12-01" @default.
- W2896020580 modified "2023-10-16" @default.
- W2896020580 title "Testing three approaches to estimate soil evaporation through a dry soil layer in a semi-arid area" @default.
- W2896020580 cites W1513937821 @default.
- W2896020580 cites W1536248313 @default.
- W2896020580 cites W1572484790 @default.
- W2896020580 cites W1603608242 @default.
- W2896020580 cites W1649035385 @default.
- W2896020580 cites W1660144379 @default.
- W2896020580 cites W1671971540 @default.
- W2896020580 cites W1713138839 @default.
- W2896020580 cites W1977667593 @default.
- W2896020580 cites W1978497942 @default.
- W2896020580 cites W1982448001 @default.
- W2896020580 cites W1987132746 @default.
- W2896020580 cites W1987672876 @default.
- W2896020580 cites W1987673088 @default.
- W2896020580 cites W1988413253 @default.
- W2896020580 cites W1991382281 @default.
- W2896020580 cites W1992908444 @default.
- W2896020580 cites W1999096283 @default.
- W2896020580 cites W2002362565 @default.
- W2896020580 cites W2010366769 @default.
- W2896020580 cites W2013579785 @default.
- W2896020580 cites W2017403142 @default.
- W2896020580 cites W2018800870 @default.
- W2896020580 cites W2025587693 @default.
- W2896020580 cites W2037781106 @default.
- W2896020580 cites W2038387128 @default.
- W2896020580 cites W2044466876 @default.
- W2896020580 cites W2048344104 @default.
- W2896020580 cites W2051503145 @default.
- W2896020580 cites W2058151826 @default.
- W2896020580 cites W2058301841 @default.
- W2896020580 cites W2061815522 @default.
- W2896020580 cites W2064996123 @default.
- W2896020580 cites W2073083714 @default.
- W2896020580 cites W2074376240 @default.
- W2896020580 cites W2074427868 @default.
- W2896020580 cites W2074769503 @default.
- W2896020580 cites W2081688537 @default.
- W2896020580 cites W2081930285 @default.
- W2896020580 cites W2085229746 @default.
- W2896020580 cites W2086417158 @default.
- W2896020580 cites W2090803960 @default.
- W2896020580 cites W2098787944 @default.
- W2896020580 cites W2101108516 @default.
- W2896020580 cites W2102847508 @default.
- W2896020580 cites W2107860705 @default.
- W2896020580 cites W2108467950 @default.
- W2896020580 cites W2112330072 @default.
- W2896020580 cites W2112691520 @default.
- W2896020580 cites W2114346806 @default.
- W2896020580 cites W2115771358 @default.
- W2896020580 cites W2116444803 @default.
- W2896020580 cites W2123716696 @default.
- W2896020580 cites W2125888368 @default.
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- W2896020580 cites W2130518714 @default.
- W2896020580 cites W2139250825 @default.
- W2896020580 cites W2147167482 @default.
- W2896020580 cites W2148678813 @default.
- W2896020580 cites W2149541905 @default.
- W2896020580 cites W2156718575 @default.
- W2896020580 cites W2159567924 @default.
- W2896020580 cites W2160988225 @default.
- W2896020580 cites W2162604832 @default.
- W2896020580 cites W2169791497 @default.
- W2896020580 cites W2173068755 @default.
- W2896020580 cites W2342397437 @default.
- W2896020580 cites W2487385493 @default.
- W2896020580 cites W2580694467 @default.
- W2896020580 cites W2584583936 @default.
- W2896020580 cites W2591366999 @default.
- W2896020580 cites W2774659396 @default.
- W2896020580 cites W4232913354 @default.
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- W2896020580 doi "https://doi.org/10.1016/j.jhydrol.2018.10.018" @default.
- W2896020580 hasPublicationYear "2018" @default.
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