首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Application of the Cropping System Model (CSM)-CROPGRO-Soybean for Determining Optimum Management Strategies for Soybean in Tropical Environments
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Application of the Cropping System Model (CSM)-CROPGRO-Soybean for Determining Optimum Management Strategies for Soybean in Tropical Environments

机译:种植系统模型(CSM)-CROPGRO-大豆在确定热带环境下大豆最佳管理策略中的应用

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The determination of optimum crop management practices for increasing soybean production can provide valuable information for strategic planning in the tropics. However, this process is time consuming and expensive. The use of a dynamic crop simulation model can be an alternative option to help estimate yield levels under various growing conditions. The objectives of this study were to evaluate the performance of the Cropping System Model (CSM)-CROPGRO-Soybean and to determine optimum management practices for soybean for growing conditions in the Phu Pha Man district, Thailand. Data from two soybean experiments that were conducted in 1991 at Chiang Mai University and in 2003 at Khon Kaen University were used to determine the cultivar coefficients for the cultivars CM 60 and SJ 5. The CSM-CROPGRO-Soybean model was evaluated with data from two experiments that were conducted at Chiang Mai University. The observed data sets from farmers' fields located in the Phu Pha Man district were also used for model evaluation. Simulations for different management scenarios were conducted with soil property information for seven different soil series and historical weather data for the period 1972-2003 to predict the optimum crop management practices for soybean production in the Phu Pha Man district. The results of this study indicated that the cultivar coefficients of the two soybean cultivars resulted in simulated growth and development parameters that were in good agreement with almost all observed parameters. Model evaluation showed a good agreement between simulated and observed data for phenology and growth of soybean, and demonstrated the potential of the CSM-CROPGRO-Soybean model to simulate growth and yield for local environments, including farmers' fields, in Thailand. The CSM-CROPGRO-Soybean simulations indicated that the optimum planting dates from June 15 to July 15 produced maximum soybean yield in a rainfed environment. However, the planting date December 15 produced the highest yield under quality irrigation. Soybean yield was slightly improved by applying nitrogen at a rate of 30 kg N ha-1 at planting. Soybean yield also improved when the plant density was increased from 20 to 40 plants m-2. The results from this study suggest that the CSM-CROPGRO-Soybean model can be a valuable tool in assisting with determining optimum management practices for soybean cropping systems in the Phu Pha Man district and might be applicable to other agricultural production areas in Thailand and southeast Asia.
机译:确定增加大豆产量的最佳作物管理方法可以为热带地区的战略规划提供有价值的信息。但是,该过程既耗时又昂贵。动态作物模拟模型的使用可以作为替代选择,以帮助估计各种生长条件下的单产水平。这项研究的目的是评估泰国Phu Pha Man地区种植系统模型(CSM)-CROPGRO-大豆的性能,并确定针对生长条件的大豆最佳管理方法。分别从1991年在清迈大学和2003年在孔敬大学进行的两次大豆试验获得的数据用于确定CM 60和SJ 5品种的栽培品种系数。CSM-CROPGRO-Soybean模型使用来自两个在清迈大学进行的实验。来自位于Phu Pha Man地区的农民田地的观测数据集也用于模型评估。针对不同管理方案进行了模拟,使用了七个不同土壤系列的土壤属性信息和1972-2003年的历史天气数据,以预测Pha Pha Man地区大豆生产的最佳作物管理方法。这项研究的结果表明,两个大豆品种的栽培系数导致模拟的生长和发育参数与几乎所有观察到的参数吻合良好。模型评估表明,模拟和观察到的大豆物候和生长数据之间有很好的一致性,并证明了CSM-CROPGRO-大豆模型在模拟泰国当地环境(包括农民田地)的生长和产量方面的潜力。 CSM-CROPGRO-大豆模拟表明,最佳的播种日期为6月15日至7月15日,在雨育环境下大豆产量最高。但是,在优质灌溉条件下,播种日期12月15日产量最高。在播种时以30 kg N ha-1的比例施氮可略微提高大豆产量。当植物密度从20株增加到40株m-2时,大豆的产量也提高了。这项研究的结果表明,CSM-CROPGRO-大豆模型可以作为帮助确定Phu Pha Man地区大豆种植系统最佳管理方法的有价值的工具,并且可能适用于泰国和东南亚的其他农业生产地区。 。

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