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首页> 外文期刊>Agronomy Journal >DSSAT Nitrogen Cycle Simulation of Cover Crop-Maize Rotations under Irrigated Mediterranean Conditions
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DSSAT Nitrogen Cycle Simulation of Cover Crop-Maize Rotations under Irrigated Mediterranean Conditions

机译:地中海灌溉条件下覆盖作物玉米轮作的DSSAT氮循环模拟

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The accurate simulation of N cycle in winter cover crop-maize rotations can help to study management practices aimed at reducing N leaching. A lysimeter and field experiment were used to calibrate and test the model under irrigated Mediterranean conditions. Thereafter, the model was used to evaluate the impact of cover crop-maize rotations on N leaching for a range of soil types and irrigation managements during a 14 yr rotation in La Violada watershed, Spain. The Decision Support System for Agrotechnology Transfer (DSSAT) v4.5.0.51 soil temperature subroutine overpredicted soil temperature, but this was improved when using a new EPIC-based soil temperature subroutine that will be available in DSSAT v4.6. The model was accurate simulating total maize N content in maize after fallow and after different cover crops (root mean square error [RMSE] = 25 kg N ha(-1)), adequately simulated N leaching reductions with cover crops, and was less efficient simulating soil inorganic N. Overall, the DSSAT-CENTURY model proved appropriate to simulate N cycle. DSSAT-CERES-Maize did not adequately simulate the observed yield reduction under N limitation in our high yielding conditions. Simulations in La Violada watershed indicate that N leaching in maize would still be high (44-98 kg N ha(-1) yr(-1)) under an optimized water and N management. Cover crop-maize rotations could reduce N leaching by 31% while supplying similar N availability to maize than fallow-maize rotations. The model was useful to study several management scenarios that would be difficult to investigate under field conditions
机译:冬季作物玉米轮作中氮循环的精确模拟可以帮助研究旨在减少氮淋失的管理实践。使用溶渗仪和现场实验在地中海灌溉条件下校准和测试模型。此后,该模型用于评估西班牙La Violada流域14年轮作期间,一系列土壤类型和灌溉管理方式下,农作物-玉米轮作对氮淋失的影响。农业技术转移决策支持系统(DSSAT)v4.5.0.51土壤温度子程序高估了土壤温度,但是当使用新的基于EPIC的土壤温度子程序(DSSAT v4.6中可用)时,此功能得到了改进。该模型可以准确模拟休耕后和不同覆盖作物后玉米中的玉米总氮含量(均方根误差[RMSE] = 25 kg N ha(-1)),充分模拟了覆盖作物的氮淋失减少量,效率较低模拟土壤无机氮。总的来说,DSSAT-CENTURY模型适合模拟氮循环。在我们的高产条件下,DSSAT-CERES-玉米没有充分模拟在氮限制下观察到的减产。 La Violada流域的模拟表明,在优化的水和氮管理下,玉米中的氮淋失仍然很高(44-98 kg N ha(-1)yr(-1))。覆盖玉米轮作可以使氮的淋失减少31%,同时向玉米提供与休耕轮作相似的氮素利用率。该模型对于研究在野外条件下难以研究的几种管理方案很有用

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