The 'School of de Wit' crop growth simulation models: A pedigree and historical overview

被引:241
作者
Bouman, BAM [1 ]
vanKeulen, H [1 ]
vanLaar, HH [1 ]
Rabbinge, R [1 ]
机构
[1] UNIV AGR, DEPT THEORET PROD ECOL, WAGENINGEN, NETHERLANDS
关键词
D O I
10.1016/0308-521X(96)00011-X
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
In this paper, a pedigree of the crop growth simulation models by the 'School of de Wit' is presented. The origins and philosophy of this school are traced from de Wit's classical publication on modelling photosynthesis of leaf canopies in 1965. It is shown how changing research goals and priorities over the years have resulted in the evolution of a pedigree of models that are similar in philosophy but differ in level of complexity, the processes addressed and their functionality. In the beginning, modelling was motivated by the quest for scientific insight and the wish to quantify and integrate biophysical processes to explain the observed variation in crop growth. Later, the emphasis of, and funding for, agricultural research shifted towards putting acquired insights to practical and operational use. Model development became led by a demand for tactical and strategic decision support, yield forecasting, land zonation and explorative scenario studies. Modelling developments for different production situations are illustrated using the models the authors consider most important, i.e. BACROS, SUCROS, WOFOST, MACROS and LINTUL, but reference is also made to other models. Finally, comments are made about the usefulness and applicability of these models after nearly 30 years of development, and some future courses of action are suggested. Copyright (C) 1996 Published by Elsevier Science Ltd
引用
收藏
页码:171 / 198
页数:28
相关论文
共 113 条
[51]   A PROCEDURE TO REDUCE PARAMETER UNCERTAINTY FOR COMPLEX-MODELS BY COMPARISON WITH REAL SYSTEM OUTPUT ILLUSTRATED ON A POTATO GROWTH-MODEL [J].
KLEPPER, O ;
ROUSE, DI .
AGRICULTURAL SYSTEMS, 1991, 36 (04) :375-395
[52]  
Kropff M. J., 1995, Eco-regional approaches for sustainable land use and food production. Proceedings of a symposium, 12-16 December 1994, ISNAR, The Hague, Netherlands., P417
[53]   SYSTEMS APPROACHES TO QUANTIFY CROP-WEED INTERACTIONS AND THEIR APPLICATION IN WEED MANAGEMENT [J].
KROPFF, MJ ;
LOTZ, LAP .
AGRICULTURAL SYSTEMS, 1992, 40 (1-3) :265-282
[54]  
Kropff MJ, 1994, SARP RES P AB DLO WA
[55]  
KROPFF MJ., 1993, Modelling Crop-Weed Interactions
[56]   EXPLANATORY MODELS IN CROP PHYSIOLOGY [J].
LOOMIS, RS ;
RABBINGE, R ;
NG, E .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1979, 30 :339-367
[57]  
MATTHEWS RB, 1995, MODELLING IMPACT CLI
[58]   APSIM: A novel software system for model development, model testing and simulation in agricultural systems research [J].
McCown, RL ;
Hammer, GL ;
Hargreaves, JNG ;
Holzworth, DP ;
Freebairn, DM .
AGRICULTURAL SYSTEMS, 1996, 50 (03) :255-271
[59]  
MEYYERROUX J, 1994, P C MARS PROJ OV PER, P33
[60]  
Monteith J.L., 1969, PHYSL ASPECTS CROP Y, P89, DOI DOI 10.2135/1969.PHYSIOLOGICALASPECTS.C9