NITRATE LEACHING AND SOIL-MOISTURE PREDICTION WITH THE LEACHM MODEL

被引:40
作者
RAMOS, C
CARBONELL, EA
机构
[1] Instituto Valenciano de Investigaciones Agrarias, Moncada, 46113, Apdo. Oficial
来源
FERTILIZER RESEARCH | 1991年 / 27卷 / 2-3期
关键词
NITRATE LEACHING; SOIL MOISTURE; SOIL MINERAL NITROGEN; MODELS;
D O I
10.1007/BF01051125
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The LEACHM model developed by Wagenet and Hutson [1989] was used to predict the mineral nitrogen and water content in the soil under a winter wheat crop from February to April in two years and three locations. The model grossly overestimated soil water content, probably due to the bad fitting of the assumed water retentivity function to the experimental data at high water contents, and to the presence of a relatively shallow water table (1.0-1.5 m). Measured soil hydraulic conductivity varied with water content in a different manner than predicted by the model. By assuming a sandy or gravelly soil layer between the bottom of the measured soil profile and the water table, prediction of soil water content improved considerably. Simulation showed that, under the experimental conditions studied, soil mineral nitrogen varied mainly due to the fertilizer additions, mineralization and denitrification. Nitrogen uptake by plants and leaching were small. Low values of nitrate leaching were predicted by the model because of low drainage. Large differences between predicted and observed values in the mineral nitrogen in the soil occurred in some cases, both in the total amount and its profile distribution.
引用
收藏
页码:171 / 180
页数:10
相关论文
共 31 条
[1]  
Addiscott T.M., Wagenet R.J., Concepts of solute leaching in soils: a review of modeling approaches, J Soil Sci, 36, pp. 411-424, (1985)
[2]  
Addiscott T.M., Whitmore A.P., Computer simulation of changes in soil mineral nitrogen and crop nitrogen during autumn, winter and spring, J Agric Sci, 109, pp. 141-157, (1987)
[3]  
Barber S.A., Soil Nutrient Bioavailability, (1984)
[4]  
Beese F., Wierenga P.J., The variability of the apparent diffusion coefficient in undisturbed soil columns, Zeitschrift für Pflanzenernährung und Bodenkunde, 146, pp. 302-315, (1983)
[5]  
Campbell G., A simple method for determining unsaturated conductivity from moisture retention data, Soil Science, 117, pp. 311-314, (1974)
[6]  
Doorenbos J., Pruitt W.O., Crop water requirements, FAO Irrig & Drain Paper No. 24, (1984)
[7]  
Frevert D.K., Hill R.W., Braaten B.C., Estimation of FAO evapotranspiration coefficients, J Irrig Drain Eng, 109, pp. 265-270, (1983)
[8]  
Groot J.J.R., Verberne E.L.J., Response of wheat to nitrogen fertilisation, a data set to validate simulation models for nitrogen dynamics in crop and soil, Fert Res, 27, pp. 349-383, (1991)
[9]  
Hagin J., Welte E., Nitrogen Dynamics Model Verification and Practical Application, (1984)
[10]  
Hutson J.L., Cass A., A retentivity function for use in soil-water simulation models, J Soil Sci, 38, pp. 105-113, (1987)