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Evapotranspiration of tomato simulated with the CRITERIA model

机译:CRITERIA模型模拟的番茄蒸散

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The CRITERIA model simulates crop development and water dynamics in agricultural soils at different spatial scales. The objective of this paper was to test CRITERIA in order to evaluate the suitability of the model as a tool for scheduling irrigationat field scale. The first step of the work was to validate this hypothesis, by means of calibration and validation of CRITERIA on processing tomato in two experimental sites in Southern Italy (Rutigliano and Foggia) for the years 2007 and 2008 under different irrigation regimes. The irrigation treatments were: i) absence of plant water stress (the control treatments set up for both years and sites), ii) moderately stressed (applied in Rutigliano for 2007), and iii) severely stressed (applied in Foggia for 2008). The second step consisted in the evaluation of the expected impact of different irrigation regimes on daily actual evapotranspiration. For model calibration, the 2007 data of the control treatment was used, whereas in the validation process ofactual evapotranspiration, the other part of the dataset was used. The observed data were crop evapotranspiration, agrometeorological data, leaf area index, physical-chemical and hydro-logical characteristics of soil, phenological stages and irrigation management. In order to evaluate model performance we used three statistical indicators to compare simulated and measured values of actualevapotranspiration: the normalised differences of seasonal values are less than 10% for all treatments; the model efficiency index on the typical period between two irrigations (4 days) was positive for all treatments, with the best values in the Foggiasite, for both the irrigated and the severely stressed experiments; the relative root mean square error (RRMSE) was smaller than 20% in both the control treatments, but higher than 30% for the stressed treatments. The increase in RRMSE for the stressed experiments is due to CRITERIA simulating a crop in good soil water conditions and, as a consequence, with a larger evapotranspiration demand with respect to water stressed crop.Therefore, we can consider CRITERIA as a suitable tool to manage irrigations of processed tomato, especially for the full irrigation regime; an improvement can be reached by simulating the impact of water stress conditions on the eco-physiological parameters of the crop, in order to use the model also under deficit irrigation regimes.
机译:CRITERIA模型模拟了不同空间尺度下农业土壤中的作物生长和水分动态。本文的目的是测试CRITERIA,以评估该模型作为田间灌溉计划的工具的适用性。这项工作的第一步是通过对意大利南部两个实验点(Rutigliano和Foggia)在2007年和2008年不同灌溉方式下加工番茄的CRITERIA进行校准和验证,验证这一假设。灌溉处理措施有:i)没有植物水分胁迫(针对年份和地点均设置了对照处理),ii)中度胁迫(Rutigliano于2007年应用),iii)重度胁迫(于2008年在福贾应用)。第二步包括评估不同灌溉方式对日实际蒸散量的预期影响。对于模型校准,使用了2007年的对照处理数据,而在实际蒸散量的验证过程中,使用了数据集的另一部分。观测数据包括作物蒸散量,农业气象数据,叶面积指数,土壤的物理化学和水文特征,物候期和灌溉管理。为了评估模型性能,我们使用了三个统计指标来比较实际蒸散的模拟值和实测值:所有处理的季节性值的标准化差异均小于10%;在两次灌溉之间的典型时间段(4天),模型效率指数在所有处理中均为阳性,在灌溉和重压实验中,Foggiasite的值均最佳。在两种对照处理中,相对均方根误差(RRMSE)均小于20%,但在压力处理中均高于30%。压力试验的RRMSE的增加是由于CRITERIA在良好的土壤水分条件下模拟了作物,因此对水分胁迫的作物的蒸散需求更大,因此,我们可以认为CRITERIA是管理水分的合适工具。加工番茄的灌溉,特别是在完全灌溉制度下;通过模拟水分胁迫条件对作物生态生理参数的影响,可以实现改善,以便在缺水灌溉制度下也可以使用该模型。

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