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Modeling Wheat and Maize Productivity as Affected by Climate Variation and Irrigation Supply in North China Plain

机译:华北平原气候变化和灌溉供给影响下的小麦和玉米生产力模拟

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A modeling approach was used to analyze the response of crop productivity to irrigation in the North China Plain (NCP), where excessive use of water for irrigation has caused rapid decline in groundwater table. We calibrated and evaluated the farming systems model APSIM with data from three sites (Luancheng, Yucheng and Fengqiu). The calibrated model was applied to simulate the response of crop yield to climate variation and irrigation. The results show that the APSIM model was able to simulate growth and yield of wheat and maize in a double cropping system. Root mean squared error (RMSE) of yield and biomass simulations were 0.83 and 1.40 t ha(-1) for wheat, 1.07 and 1.70 t ha(-1) for maize, respectively. Soil water and ET were also reasonably predicted, with RMSE of 24.33 mm 1.49 mm d(-1), respectively. The simulated rainfed yield range was 0 similar to 6.1 t ha(-1) for wheat and 0-9.7 t ha(-1) for maize in the double cropping system. Each 60 mm additional irrigation increased crop yield by 1.2 t ha(-1) and 540 mm irrigation would be required to achieve the yield potential of 7.1 t ha(-1) for wheat and 8.3 t ha(-1) for maize. If >180 mm irrigation water was available, partition it to wheat and maize would lead to higher total yield than applying it only to wheat. Changing to a single crop system would lead to significantly lower annual total crop yield, although yield of the single crop could be increased due to increased stored soil moisture.
机译:在华北平原(NCP)中,采用建模方法来分析农作物生产力对灌溉的响应,那里过度灌溉用水导致地下水位快速下降。我们使用来自三个站点(栾城,禹城和封丘)的数据对农业系统模型APSIM进行了校准和评估。校准后的模型用于模拟农作物产量对气候变化和灌溉的响应。结果表明,APSIM模型能够在双季种植系统中模拟小麦和玉米的生长和产量。产量和生物量模拟的均方根误差(RMSE)分别为小麦0.83和1.40 t ha(-1),玉米分别为1.07和1.70 t ha(-1)。还合理地预测了土壤水和ET,RMSE分别为24.33 mm 1.49 mm d(-1)。在双作系统中,模拟的雨养单产范围为0,类似于小麦的6.1 t ha(-1),而玉米为0-9.7 t ha(-1)。每增加60 mm的灌溉量,作物产量就增加1.2 t ha(-1),将需要540 mm的灌溉量才能使小麦的潜在产量达到7.1 t ha(-1),对玉米的潜在产量达到8.3 t ha(-1)。如果可用的灌溉水量大于180毫米,则将其分配给小麦和玉米的总产量将高于仅将其应用于小麦的总产量。改用单一作物系统将导致每年的总作物产量大大降低,尽管由于储存的土壤水分增加,单一作物的产量可能会增加。

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