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首页> 外文期刊>Australian Journal of Agricultural Research >Assessing the sustainability of wheat-based cropping systems using APSIM: model parameterisation and evaluation.
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Assessing the sustainability of wheat-based cropping systems using APSIM: model parameterisation and evaluation.

机译:使用APSIM评估基于小麦的种植系统的可持续性:模型参数化和评估。

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Assessing the sustainability of crop and soil management practices in wheat-based rotations requires a well-tested model with the demonstrated ability to sensibly predict crop productivity and changes in the soil resource. The Agricultural Production Systems Simulator (APSIM) suite of models was parameterised and subsequently used to predict biomass production, yield, crop water and nitrogen (N) use, as well as long-term soil water and organic matter dynamics in wheat/chickpea systems at Tel Hadya, north-western Syria. The model satisfactorily simulated the productivity and water and N use of wheat and chickpea crops grown under different N and/or water supply levels in the 1998-99 and 1999-2000 experimental seasons. Analysis of soil-water dynamics showed that the 2-stage soil evaporation model in APSIM's cascading water-balance module did not sufficiently explain the actual soil drying following crop harvest under conditions where unused water remained in the soil profile. This might have been related to evaporation from soil cracks in the montmorillonitic clay soil, a process not explicitly simulated by APSIM. Soil-water dynamics in wheat-fallow and wheat-chickpea rotations (1987-98) were nevertheless well simulated when the soil water content in 0-0.45 m soil depth was set to 'air dry' at the end of the growing season each year. The model satisfactorily simulated the amounts of NO3-N in the soil, whereas it underestimated the amounts of NH4-N. Ammonium fixation might be part of the soil mineral-N dynamics at the study site because montmorillonite is the major clay mineral. This process is not simulated by APSIM's nitrogen module. APSIM was capable of predicting long-term trends (1985-98) in soil organic matter in wheat-fallow and wheat-chickpea rotations at Tel Hadya as reported in literature. Overall, results showed that the model is generic and mature enough to be extended to this set of environmental conditions and can therefore be applied to assess the sustainability of wheat-chickpea rotations at Tel Hadya..
机译:在基于小麦的轮作中评估作物和土壤管理实践的可持续性需要一个经过充分测试的模型,该模型应具有能够合理地预测作物生产力和土壤资源变化的能力。对农业生产系统模拟器(APSIM)模型套件进行了参数设置,随后用于预测小麦/鹰嘴豆系统中的生物量生产,产量,作物水和氮(N)的使用以及长期土壤水和有机质动态。叙利亚西北部的Tel Hadya。该模型令人满意地模拟了1998-99年和1999-2000年试验季节在不同氮和/或水供应水平下生长的小麦和鹰嘴豆作物的生产力以及水和氮的使用。对土壤水动力学的分析表明,APSIM的级联水平衡模块中的两阶段土壤蒸发模型无法充分解释作物收获后在土壤剖面中仍有未用水的情况下的实际土壤干燥情况。这可能与蒙脱土中土壤裂缝的蒸发有关,APSIM没有明确模拟这一过程。然而,当每年生长季节结束时将0-0.45 m土壤深度的土壤水分设置为“风干”时,可以很好地模拟小麦小叶和小麦鹰嘴豆轮作(1987-98)中的土壤水动力学。 。该模型令人满意地模拟了土壤中NO3-N的含量,但低估了NH4-N的含量。由于蒙脱土是主要的粘土矿物,因此铵固定可能是研究地点土壤矿质氮动态的一部分。 APSIM的氮气模块不会模拟此过程。正如文献报道的那样,APSIM能够预测特拉哈迪(Tal Hadya)小麦小叶和小麦-鹰嘴豆轮作中土壤有机质的长期趋势(1985-98)。总体而言,结果表明该模型具有通用性和成熟度,可以扩展到这种环境条件,因此可以用于评估Tel Hadya的小麦-鹰嘴豆轮作的可持续性。

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