MODELING WATER-FLOW, NITROGEN UPTAKE AND PRODUCTION FOR WHEAT

被引:70
|
作者
ECKERSTEN, H
JANSSON, PE
机构
[1] Department of Soil Sciences, Swedish University of Agricultural Sciences, Uppsala, S-75007
来源
FERTILIZER RESEARCH | 1991年 / 27卷 / 2-3期
关键词
ALLOCATION; BYPASS FLOW; WATER TABLE DEPTH; MACROPORES; SOIL PROCESSES; VALIDATION;
D O I
10.1007/BF01051137
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Soil water and temperature conditions were simulated for three years at three sites in the Netherlands, using a model named SOIL. Observed water table depths from one site with a sandy loam soil indicated bypass flow in macropores. Nitrogen turnover was simulated using the output of SOIL as input to a nitrogen model. To improve the nitrogen model, a crop-growth submodel was introduced, and simulations were compared with measured data for two seasons and three fertilizer treatments at the three sites. Mineral-N in the soil after application of fertilizer was substantially higher in the simulation than indicated by measurements in 4 out of 18 simulations. Regression analyses showed that simulated mineral-N content in the uppermost metre explained 64% of the observed variation. The corresponding values for nitrogen content (N(ta)) and biomass (W(ta)) of aboveground tissues were 86 and 93%, respectively. With a few exceptions annual values of W(ta) and N(ta) were simulated with an accuracy of approximately 20%. A sensitivity test showed that growth parameters and especially the light use efficiency parameter strongly influenced biomass production for fertilized treatments whereas the control of nitrogen uptake from soil was most important for non-fertilized treatments.
引用
收藏
页码:313 / 329
页数:17
相关论文
共 50 条
  • [1] MODELING WATER-FLOW, NITROGEN TRANSPORT AND ROOT UPTAKE INCLUDING PHYSICAL NONEQUILIBRIUM AND OPTIMIZATION OF THE ROOT WATER POTENTIAL
    LAFOLIE, F
    FERTILIZER RESEARCH, 1991, 27 (2-3): : 215 - 231
  • [2] MODELING WATER-FLOW IN CROPPED SOILS - WATER-UPTAKE BY PLANT-ROOTS
    JANZ, TC
    STONIER, RJ
    ENVIRONMENT INTERNATIONAL, 1995, 21 (05) : 705 - 709
  • [3] RESISTANCE TO WATER-FLOW IN THE INTRACOLEOPTILE INTERNODE OF WHEAT
    CORNISH, PS
    PLANT AND SOIL, 1981, 59 (01) : 119 - 125
  • [4] RESISTANCE TO WATER-FLOW IN THE SEMINAL ROOTS OF WHEAT
    MEYER, WS
    GREACEN, EL
    ALSTON, AM
    JOURNAL OF EXPERIMENTAL BOTANY, 1978, 29 (113) : 1451 - 1461
  • [5] CENTRIFUGAL MODELING OF TRANSIENT WATER-FLOW
    CARGILL, KW
    KO, HY
    JOURNAL OF GEOTECHNICAL ENGINEERING-ASCE, 1983, 109 (04): : 536 - 555
  • [6] WATER-FLOW IN WHEAT SEEDLINGS AFTER SMALL WATER DEFICITS
    NORDIN, A
    PHYSIOLOGIA PLANTARUM, 1976, 37 (02) : 157 - 162
  • [7] MODELING WATER-FLOW THROUGH ARTERIAL TISSUE
    KLANCHAR, M
    TARBELL, JM
    BULLETIN OF MATHEMATICAL BIOLOGY, 1987, 49 (06) : 651 - 669
  • [8] MODELING WATER-FLOW FROM SUBIRRIGATION WITH DRAINAGE
    KIRKHAM, D
    HORTON, R
    SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1993, 57 (06) : 1451 - 1457
  • [9] Modeling plant nitrogen uptake and grain nitrogen accumulation in wheat
    Pan, J
    Zhu, Y
    Jiang, D
    Dai, TB
    Li, YX
    Cao, WX
    FIELD CROPS RESEARCH, 2006, 97 (2-3) : 322 - 336
  • [10] AN IMPLICIT METHOD FOR WATER-FLOW MODELING IN CHANNELS AND PIPES
    GARCIANAVARRO, P
    ALCRUDO, F
    PRIESTLEY, A
    JOURNAL OF HYDRAULIC RESEARCH, 1994, 32 (05) : 721 - 742