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Evapotranspiration simulated by CRITERIA and AquaCrop models in stony soils

机译:用CRITERIA和AquaCrop模型模拟石质土壤中的蒸散量

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The performance of a water balance model is also based on the ability to correctly perform simulations in heterogeneous soils. The objective of this paper is to test CRITERIA and AquaCrop models in order to evaluate their suitability in estimating evapotranspiration at the field scale in two types of soil in the Mediterranean region: non-stony and stony soil. The first step of the work was to calibrate both models under the non-stony conditions. The models were calibrated by using observations on wheat crop (leaf area index or canopy cover, and phenological stages as a function of degree days) and pedo-climatic measurements. The second step consisted in the analysing the impact of the soil type on the models performances by comparing simulated and measured values. The outputs retained in the analysis were soil water content (at the daily scale) and crop evapotranspiration (at two time scales: daily and crop season). The model performances were evaluated through four statistical tests: normalised difference (D%) at the seasonal time scale; and relative root mean square error (RRMSE), efficiency index (EF), coefficient of determination (r 2 ) at the daily scale. At the seasonal scale, values of D% were less than 15% in stony and on-stony soils, indicating a good performance attained by both models. At the daily scale, the RRMSE values (<30%) indicate that the evapotranspiration simulated by CRITERIA is acceptable in both soil types. In the stony soil conditions, 3 out 4 statistical tests (RRMSE, EF, r 2 ) indicate the inadequacy of AquaCrop to simulate correctly daily evapotranspiration. The higher performance of CRITERIA model to simulate daily evapotranspiration in stony soils, is due to the soil submodel, which requires the percentage skeleton as an input, while AquaCrop model takes into account the presence of skeleton by reducing the soil volume.
机译:水平衡模型的性能还基于在异质土壤中正确执行模拟的能力。本文的目的是测试CRITERIA和AquaCrop模型,以评估它们在田间尺度上估算地中海地区两类土壤(非石质土壤和石质土壤)中蒸散量的适用性。工作的第一步是在非稳态条件下校准两个模型。通过使用对小麦作物的观测值(叶面积指数或冠层覆盖度以及物候阶段随天数变化的函数)和土壤气候测量值对模型进行校准。第二步是通过比较模拟值和测量值来分析土壤类型对模型性能的影响。分析中保留的输出是土壤含水量(按日计算)和作物蒸散量(按两个时间尺度:每天和作物季节)。通过四个统计检验对模型的性能进行了评估:季节性时标的归一化差异(D%);相对的均方根误差(RRMSE),效率指数(EF),日尺度下的确定系数(r 2)。在季节尺度上,石质土壤和矿质土壤中D%的值均小于15%,表明两种模型均具有良好的性能。在日尺度上,RRMSE值(<30%)表明,由CRITERIA模拟的蒸散量在两种土壤类型中均可接受。在石质土壤条件下,四分之三的统计测试(RRMSE,EF,r 2)表明,AquaCrop不足以正确模拟每日蒸散量。 CRITERIA模型在模拟石质土壤中的日蒸散量方面具有较高的性能,这是由于土壤子模型需要输入一定百分比的骨架,而AquaCrop模型则通过减少土壤体积来考虑骨架的存在。

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