Arid
DOI10.1016/j.ecolmodel.2008.06.015
A model for Evaporation and Drainage investigations at Ground of Ordinary Rainfed-areas
Aydin, Mehmet
通讯作者Aydin, Mehmet
来源期刊ECOLOGICAL MODELLING
ISSN0304-3800
EISSN1872-7026
出版年2008
卷号217期号:1-2页码:148-156
英文摘要

Quantification of water losses through evaporation and drainage from bare soils in and and semi-arid regions is very important for an effective management strategy to conserve soil water. In this study, a model for Evaporation and Drainage investigations at Ground of Ordinary Rainfed-areas (hereafter E-DiGOR) is presented. Daily potential evaporation (E-p) from bare soils was calculated using the Penman-Monteith equation with a surface resistance of zero. Actual soil evaporation (E,,) was computed according to Aydin et al. [Aydin, M., Yang, S.L., Kurt, N., Yano, T., 2005. Test of a simple model for estimating evaporation from bare soils in different environments. Ecol. Model. 182 (1), 91-105; Aydin, M., Yano, T, Evrendilek, F., Uygur, V, 2008. Implications of climate change for evaporation from bare soils in a Mediterranean environment. Environ. Monit. Assess. 140,123-130]. Deep drainage (D) was simply calculated by the mass balance, taking field capacity into account. In order to test the performance of the model mainly for drainage estimations, a micro-lysimer experiment was carried out under field conditions. The experimental terrain was nearly flat, with no appreciable slope. Estimated and measured water balance components such as actual evaporation (R-2 = 91.4%; P < 0.01.), drainage (R-2 = 88.5%; P < 0.01) and soil water storage (R-2 = 89.7%; P < 0.01) were in agreement. This agreement supported the model hypothesis, thus rendering the model useful in estimating soil evaporation, drainage and water storage in an interactive way with a few parameters.


Once the estimated and measured data from the experiment had been compared for validation, simulations were carried out continuously for the period of 1994-2006 in a semi-arid environment of Turkey. Ep rates were lower during the winter season because of the lesser evaporative demand of the atmosphere. However, Ea rates were mainly found to be functions of the rainfall pattern, and presumably soil wetness in addition to atmospheric evaporative demand. D volumes below 120 cm soil depth were high during rainy months, with a peak in January. Annual E-P varied between 850.6 and 909.8 mm during the period of 13 years. E. ranged from 248.0 to 392.9 mm with a mean annual value of 302.5 mm. D substantially varied inter-annually (150.5-757.4 mm) depending on the intensity and frequency of rainfall events and especially antecedent soil wetness. The next logical step in model development would be the inclusion of runoff for sloping lands. (C) 2008 Elsevier B.V. All rights reserved.


英文关键词arid environment rainfed-areas soil evaporation drainage modelling
类型Article
语种英语
国家Turkey
收录类别SCI-E
WOS记录号WOS:000258811600013
WOS关键词BARE SOIL EVAPORATION ; WATER-BALANCE ; MEDITERRANEAN ENVIRONMENT ; PREDICTING EVAPORATION ; SOUTHERN TURKEY ; CLIMATE-CHANGE ; CLAY SOIL ; SIMULATION ; CROP ; TEMPERATURE
WOS类目Ecology
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/157070
作者单位(1)Mustafa Kemal Univ, Fac Agr, Dept Soil Sci, TR-31040 Antakya, Turkey
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Aydin, Mehmet. A model for Evaporation and Drainage investigations at Ground of Ordinary Rainfed-areas[J],2008,217(1-2):148-156.
APA Aydin, Mehmet.(2008).A model for Evaporation and Drainage investigations at Ground of Ordinary Rainfed-areas.ECOLOGICAL MODELLING,217(1-2),148-156.
MLA Aydin, Mehmet."A model for Evaporation and Drainage investigations at Ground of Ordinary Rainfed-areas".ECOLOGICAL MODELLING 217.1-2(2008):148-156.
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