Evaluation of the VegSyst model with muskmelon to simulate crop growth, nitrogen uptake and evapotranspiration

被引:41
作者
Gallardo, M.
Gimenez, C. [2 ]
Martinez-Gaitan, C.
Stoeckle, C. O. [3 ]
Thompson, R. B. [1 ]
Granados, M. R. [4 ]
机构
[1] Univ Almeria, Dept Prod Vegetal, Escuela Super Ingn, La Canada De San Urbano 04120, Almeria, Spain
[2] Univ Cordoba, Dept Agron, E-14071 Cordoba, Spain
[3] Washington State Univ, Dept Biol Syst Engn, Pullman, WA 99164 USA
[4] Fdn Cajamar, Estn Expt, Almeria, Spain
关键词
Crop growth; Model; Greenhouse; Nitrogen uptake; Evapotranspiration; Melon; RADIATION-USE EFFICIENCY; WATER;
D O I
10.1016/j.agwat.2011.09.008
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Like many intensive vegetable production systems, the greenhouse-based system on the south-eastern (SE) Mediterranean coast of Spain is associated with considerable NO3- contamination of groundwater. Drip irrigation and sophisticated fertigation systems provide the technical capacity for precise nutrient and irrigation management of soil-grown crops which would reduce NO3- leaching loss. The VegSyst crop simulation model was developed to simulate daily crop biomass production, N uptake and crop evapotranspiration (ETc). VegSyst is driven by thermal time and consequently is adaptable to different planting dates, different greenhouse cooling practices and differences in greenhouse design. It will be subsequently incorporated into a practical on-farm decision support system to enable growers to more effectively use the advanced technical capacity of this horticultural system for optimal N and irrigation management. VegSyst was calibrated and validated for muskmelon grown in Mediterranean plastic greenhouse in SE Spain using data of four melon crops, two grown in 2005 and two in 2006 using two management strategies of water and N management in each year. VegSyst very accurately simulated crop biomass production and accurately simulated crop N uptake over time. Model performance in simulating dry matter production (DMP) over time was better using a double radiation use efficiency (RUE) approach (5.0 and 3.2 g MJ(-1) PAR for vegetative and reproductive growth phases) compared to a single RUE approach (4.3 g MJ(-1) PAR). The simulation of ETc over time, was very accurate in the two 2006 muskmelon crops and somewhat less so in the two 2005 crops. The error in the simulated final values, expressed as a percentage of final measured values was -1 to 6% for DMP, 2-11% for crop N uptake, and -11 to 6% for ETc. VegSyst provided effective simulation of DMP, N uptake and ETc for crops with different planting dates. This model can be readily adapted to other crops. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:107 / 117
页数:11
相关论文
共 41 条
[11]   Nitrogen critical dilution curve for the muskmelon crop [J].
de Freitas Fogaca, Marco Aurelio ;
Andriolo, Jeronimo Luiz ;
Godoi, Rodrigo dos Santos ;
Peixoto de Barros, Claudia Alessandra ;
Janisch, Dieimi Isabel ;
Braz Vaz, Marcos Andre .
CIENCIA RURAL, 2008, 38 (02) :345-350
[12]  
Doorenbos J., 1977, Food and Agriculture Organization Irrigation and Drainage Paper, Guidelines for predicting crop water requirements
[13]   Measurement and estimation of plastic greenhouse reference evapotranspiration in a Mediterranean climate (vol 28, pg 497, 2010) [J].
Fernandez, M. D. ;
Bonachela, S. ;
Orgaz, F. ;
Thompson, R. B. ;
Lopez, J. C. ;
Granados, M. R. ;
Gallardo, M. ;
Fereres, E. .
IRRIGATION SCIENCE, 2011, 29 (01) :91-92
[14]   Measurement and estimation of plastic greenhouse reference evapotranspiration in a Mediterranean climate [J].
Fernandez, M. D. ;
Bonachela, S. ;
Orgaz, F. ;
Thompson, R. ;
Lopez, J. C. ;
Granados, M. R. ;
Gallardo, M. ;
Fereres, E. .
IRRIGATION SCIENCE, 2010, 28 (06) :497-509
[15]  
Fernandez MD, 2001, PROGRAMACION RIEGO C
[16]  
Granados MR, 2007, BETTER EFFICIENCY N, P373
[17]  
Grattan S. R., 1998, California Agriculture, V52, P16, DOI 10.3733/ca.v052n01p16
[18]   DECLINE IN PERCENTAGE N OF C3 AND C4 CROPS WITH INCREASING PLANT MASS [J].
GREENWOOD, DJ ;
LEMAIRE, G ;
GOSSE, G ;
CRUZ, P ;
DRAYCOTT, A ;
NEETESON, JJ .
ANNALS OF BOTANY, 1990, 66 (04) :425-436
[19]  
Jones JW, 1998, SYST APPR S, V7, P157
[20]   Influence of covering material and shading on the spectral distribution of light in greenhouses [J].
Kittas, C ;
Baille, A ;
Giaglaras, P .
JOURNAL OF AGRICULTURAL ENGINEERING RESEARCH, 1999, 73 (04) :341-351