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首页> 外文期刊>European Journal of Agronomy >Performance and application of the APSIM Nwheat model in the Netherlands.
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Performance and application of the APSIM Nwheat model in the Netherlands.

机译:APSIM Nwheat模型在荷兰的性能和应用。

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摘要

APSIM Nwheat is a crop system simulation model, consisting of modules that incorporate aspects of soil water, nitrogen (N), crop residues, and crop growth and development. The model was applied to simulate above- and below-ground growth. grain yield, water and N uptake, and soil water and soil N of wheat crops in the Netherlands. Model outputs were compared with detailed measurements of field experiments from three locations with two different soil types. The experiments covered two seasons and a range of N-fertilizer applications. The overall APSIM Nwheat model simulations of soil mineral N, N uptake, shoot growth, phenology, kernels m-2, specific grain weight and grain N were acceptable. Grain yields (dry weight) and grain protein concentrationswere well simulated with a root mean square deviation (RMSD) of 0.8 t ha-1 and 1.6 protein%, respectively. Additionally, the model simulations were compared with grain yields from a long-term winter wheat experiment with different N applications, two additional N experiments and regional grain yield records. The model reproduced the general effects of N treatments on yields. Simulations showed a good consistency with the higher yields of the long-term experiment, but overpredicted the lower yields. Simulations and earlier regional yields differed, but they showed uniformity for the last decade. In a simulation experiment, the APSIM Nwheat model was used with historical weather data to study the relationship between rate and timing of N fertilizer andgrain yield, grain protein and soil residual N. A median grain yield of 4.5 t ha-1 was achieved without applying fertilizer, utilizing mineral soil N from previous seasons, from mineralization and N deposition. Application of N fertilizer in February toincrease soil mineral N to 140 kg N ha-1 improved the median yield to 7.8 t ha-1 but had little effect on grain protein concentration with a range of 8-10%. Nitrogen applications at tillering and the beginning of stem elongation further increased grain yield and in particular grain protein, but did not affect soil residual N, except in a year with low rainfall during stem elongation. A late N application at flag leaf stage increased grain protein content by several per cent. This increase had only a small effect on grain yield and did not increase soil residual N with up to 40 kg N ha-1 applied, except when N uptake was limited by low rainfall in the period after the flag leaf stage. The economic and environmental optima in winter wheat were identifiedwith up to 140 kg N ha-1 in February, 90 kg N ha-1 between tillering and beginning of stem elongation and 40 kg N ha-1 at flag leaf stage resulting in a median of 8.5 t ha-1 grain yield, 14.0% grain protein and 13 kg N ha-1 soil residual N after the harvest. The maximum simulated yield with maximum N input from two locations in the Netherlands was 9.9 t ha-1.
机译:APSIM Nwheat是一种作物系统模拟模型,由包含土壤水,氮(N),作物残渣以及作物生长与发育等方面的模块组成。该模型用于模拟地上和地下的生长。荷兰小麦的谷物产量,水分和氮素吸收量以及土壤水和土壤氮素。将模型输出与来自两种不同土壤类型的三个位置的现场实验的详细测量结果进行了比较。实验涵盖了两个季节和一系列氮肥的应用。可接受的土壤土壤氮素,氮素吸收,枝条生长,物候学,籽粒m-2,比重和氮素的APSIM Nwheat总体模型模拟是可以接受的。对谷物的产量(干重)和蛋白质浓度进行了很好的模拟,均方根偏差(RMSD)分别为0.8 t ha-1和1.6%。另外,将模型模拟与长期冬小麦试验(不同氮肥施用量),两次额外的氮肥试验和区域谷物产量记录的谷物产量进行了比较。该模型再现了氮肥处理对产量的一般影响。模拟显示与长期实验的较高收率具有良好的一致性,但高估了较低的收率。模拟和较早的区域收益率有所不同,但在过去十年中显示出均一性。在模拟实验中,APSIM Nwheat模型与历史天气数据一起使用,研究了氮肥的施肥速率和时间与谷物产量,谷物蛋白和土壤残留氮之间的关系。在不施肥的情况下,谷物平均产量为4.5 t ha-1肥料,利用以前季节的矿化土壤N,矿化作用和N沉积。 2月份施用氮肥将土壤矿质氮增加至140 kg N ha-1,使平均产量提高至7.8 t ha-1,但对谷物蛋白浓度的影响很小,范围为8-10%。在分and和茎伸长开始时施用氮肥可进一步提高谷物产量,特别是籽粒蛋白质含量,但不影响土壤残留氮,除非茎伸长期间降雨少。在旗叶阶段晚施氮肥可将谷物蛋白质含量提高百分之几。这种增加仅对谷物产量有很小的影响,并且当施用最高40 kg N ha-1时,不会增加土壤残留的N,除非在旗叶期后的低降雨限制了N的吸收。确定了冬小麦的经济和环境最佳状态,其中2月份最高为140 kg N ha-1,分of和茎伸长开始之间为90 kg N ha-1,旗叶期为40 kg N ha-1,中位数为收获后,籽粒产量为8.5 t ha-1,籽粒蛋白质为14.0%,N ha-1土壤残留N为13 kg。来自荷兰两个地方的最大氮输入下的最大模拟产量为9.9 t ha-1。

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