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Spatial and Temporal Variation in Water Productivity and Grain Water Utilization Assessment of Heilongjiang Province,Northeast China
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作者 Fu Qiang Sun Meng-xin +3 位作者 Li Tian-xiao Cui Song Liu Dong Yan Pei-ru 《Journal of Northeast Agricultural University(English Edition)》 CAS 2018年第1期70-84,共15页
Improving crop water productivity is necessary for ensuring food security. To quantify the water utilization in grain production from multiple perspectives, gross inflow water productivity(WPg), generalized agricultur... Improving crop water productivity is necessary for ensuring food security. To quantify the water utilization in grain production from multiple perspectives, gross inflow water productivity(WPg), generalized agricultural water productivity(WPa), evapotranspiration water productivity(WPET) and irrigation water productivity(WPI) were examined in this study. This paper calculated and analyzed the temporal and spatial variation in these water productivity(WP) indices in the irrigated land of Heilongjiang Province. The results showed that almost all of the municipal WP indices increased from 2007 to 2015. The four indices showed large differences in scientific connotation and numerical performance, and their degrees of spatial variation were ranked as WPI>WPa>WPg>WPET. The spatial patterns of WP indices in different years were similar; the central and southern regions on the Songnen Plain and the eastern region had high WP values, while those of the northern region were low. Each WP index was used to evaluate the relationship between the input of water resources and the output of grain between different regions. Most cities had the potential to improve WP by reducing the input of irrigation water. Furthermore, the results provided recommendations to decision makers to plan for efficient use of water resources in different cities. 展开更多
关键词 water productivity indice spatial and temporal variation irrigation grain water use
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考虑灌溉用水时间规律的流域分布式二元水循环模拟方法研究
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作者 姚鑫铭 周祖昊 +8 位作者 余根坚 刘佳嘉 于新哲 王坤 唐明 王钦钊 温天福 吴碧琼 曹辉 《水文》 北大核心 2025年第5期110-118,共9页
灌溉用水在人类用水中占比较大,考虑灌溉用水的流域分布式二元水循环模型在水资源管理中的应用具有重要意义,但以往的模型研究中,较少关注灌溉用水时间分布规律对模拟效果的影响。基于作物系数法与田间水量平衡原理,考虑各区域主要作物... 灌溉用水在人类用水中占比较大,考虑灌溉用水的流域分布式二元水循环模型在水资源管理中的应用具有重要意义,但以往的模型研究中,较少关注灌溉用水时间分布规律对模拟效果的影响。基于作物系数法与田间水量平衡原理,考虑各区域主要作物种植结构,构建区域灌溉用水模型,将其与分布式二元水循环模型WEP-L结合,对流域水循环过程进行模拟。将该方法应用于鄱阳湖流域,结果表明:(1)鄱阳湖流域农业灌溉用水主要分布在5—10月,其中7—9月最多,均占25%以上。(2)考虑灌溉用水规律的水循环模型在鄱阳湖流域具有较好的模拟效果,对于1980—2021年系列,率定和验证期7个代表水文站逐月流量模拟的NSE均达到0.8以上,RE在±5%以内。(3)与不考虑灌溉用水规律的模型相比,本文方法提升了模拟精度,且对干旱年份模拟精度的提升效果更好;鄱阳湖流域代表水文站点径流频率P>75%年份主要灌溉期NSE平均提升0.09以上,RE绝对值平均减少5.3%以上,赣、抚、信、饶、修五流域中,饶修两流域效果提升最大。研究表明,在流域水循环模拟中,须考虑灌溉用水时间分布规律。 展开更多
关键词 流域二元水循环模拟 灌溉用水时间规律 WEP-L模型 鄱阳湖流域
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