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Modeling the spatial distribution of crop cultivated areas at a large regional scale combining system dynamics and a modified Dyna-CLUE: A case from Iran

机译:结合系统动力学和改进的Dyna-CLUE,在较大区域尺度上对农作物耕地的空间分布进行建模:以伊朗为例

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Agricultural land use pattern is affected by many factors at different scales and effects that are separated by time and space. This will lead to simulation models that optimize or project the cropping pattern changes and incorporate complexities in terms of details and dynamics. Combining System Dynamics (SD) and a modified Conversion of Land Use and its Effects (CLUE) modelling framework, this paper suggests a new dynamic approach for assessing the demand of different crops at country-level and for predicting the spatial distribution of cultivated areas at provincial scale. As example, a case study is presented for Iran, where we have simulated a scenario of future cropping pattern changes during 2015–2040.The results indicated a change in the spatial distribution of cultivated areas during the next years. An increase in the proportion of rice is expected in northern Iran, whereas the proportion of wheat is increasing in the mountainous western areas. Wheat and barley crops are expected to become dominant within the cropping system throughout the country regions.
机译:农业土地利用方式受到时间和空间分开的不同规模和影响的许多因素的影响。这将导致仿真模型优化或预测种植模式的变化,并在细节和动态方面纳入复杂性。结合系统动力学(SD)和改良的土地利用及其影响转换(CLUE)模型框架,本文提出了一种新的动态方法,用于评估国家/地区级不同作物的需求并预测该地区耕地的空间分布省级规模。例如,以伊朗为例,我们模拟了2015-2040年间未来种植方式变化的情景。结果表明,未来几年耕地的空间分布将发生变化。预计伊朗北部大米的比例将增加,而西部山区的小麦比例将增加。预计在整个国家地区,小麦和大麦作物将在作物系统中占主导地位。

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