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A Model-Based Estimate of Regional Wheat Yield Gaps and Water Use Efficiency in Main Winter Wheat Production Regions of China

机译:基于模型的区域小麦产量差距和中国主要冬小麦生产区用水效率

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摘要

Abstract Wheat production is of great importance for national food security and is greatly influenced by the spatial variation of climatic variables, soils, cultivars, etc. This study used WheatGrow and CERES-Wheat models integrated with a GIS to estimate winter wheat productivity, yield gap and water use in the main wheat production regions of China. The results showed that the potential wheat yield gradually increased from south to north and from west to east, with a spatial distribution consistent with the accumulated hours of sunshine. The gap between potential and actual yield varied from 382 to 7515 kg ha−1, with the highest values in Shanxi, Gansu and Shaanxi provinces and the lowest values in Sichuan province. The rainfed yield decreased gradually from south to north, roughly following the pattern of the ratio of accumulated precipitation to accumulated potential evapotranspiration. Under the scenario of autoirrigation, relatively high irrigation water use efficiency was found in western Shandong and southern Sichuan, as well as in northern Henan, Shanxi and Shaanxi. Furthermore, the limiting factors were analysed, and effective measures were suggested for improving regional winter wheat productivity. These results can be helpful for national policy making and water redistribution for agricultural production in China.
机译:摘要小麦产量为国家粮食安全的高度重视和气候变量,土壤,品种,等等。本研究采用WheatGrow和CERES小麦模型与GIS集成估计冬小麦生产力的空间变化的影响较大,收益率差距在中国的小麦主产区的用水。结果表明,潜在的小麦产量逐渐由南上升到北,从西到东,与阳光的累积时间相一致的空间分布。潜在和实际产量之间的间隙变化,从382到7515公斤HA-1,用四川省山西,甘肃,陕西最高值和最低值。旱地产量逐渐下降从南到北,大致以下积累沉淀累积潜在蒸散的比率的图案。在autoirrigation的情况下,相对较高的灌溉水利用效率,山东西部和川南,以及在河南北部,山西,陕西被发现。此外,限制因素进行了分析,并提出了改善区域冬小麦生产效率的有效措施。这些结果可以为国家决策和水再分配对中国农业生产有帮助的。

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