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Evaluation of Agricultural Water Use Efficiency and Regional Irrigation Strategies in China Based on GIS

机译:基于GIS的中国农业用水效率评价与区域灌溉策略。

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摘要

Enhancing agricultural water use efficiency (AWUE) is the key way for water saving in China. In this paper, the evaluation method for AWUE was established based on the concept of agricultural standard yield and total consumed agricultural water. Through taking province as analysis unit, the relationship between AWUE and irrigation intensity (irrigation amount per acre), irrigation extent (ratio of effective irrigation area), standard yield and cropping index was analyzed. It was found that the difference of AWUE was great and changed from 1.70 kg/hm2·mm to 7.40 kg/hm2·mm in the different provinces of China in 2007. There was a significantly negative correlation between irrigation intensity and AWUE. A positive correlation between irrigation extent, standard yield and AWUE was also observed, but the correlation coefficient did not reach significant level, and no correlation between cropping index and AWUE was observed. According to the distribution of AWUE in China, three different types of regions were divided, the first type regions (AWUE≤3.0kg/hm2·mm) were located at Gansu, Ningxia, Yunnan, Guizhou, Hainan, Fujian, Guangdong and Guangxi. Second type regions (3.0 kg/hm2·mm≤AWUE≤5.0kg/hm2·mm) included Shanghai city, Heilongjiang, Jiangxi, Qinghai, Xinjiang, Shaanxi, Tibet, Hubei, Hunan, Anhui, Jiangsu, Zhejiang, Sichuan and Shanxi, and third type regions (5.0 kg/hm2·mm≤AWUE≤7.5 kg/hm2·mm) mainly included Chongqing city, Tianjin city, Beijing city, Liaoning, Jilin, Shandong, Hebei, Henan and Inner Mongolia. Lastly, different regional irrigation strategies were put forward.
机译:提高农业用水效率(AWUE)是中国节水的关键途径。本文基于农业标准产量和农业用水总量的概念,建立了AWUE评价方法。以省为分析单位,分析了AWUE与灌溉强度(每英亩灌溉量),灌溉程度(有效灌溉面积比),标准产量和种植指数之间的关系。结果表明,2007年中国不同省份的AWUE差异很大,从1.70 kg / hm2·mm变化为7.40 kg / hm2·mm。灌溉强度与AWUE之间存在显着的负相关。灌水程度,标准产量与AWUE之间也呈正相关,但相关系数未达到显着水平,种植指数与AWUE之间也没有相关性。根据AWUE在中国的分布情况,将其划分为三种类型的区域,第一类区域(AWUE≤3.0kg/ hm2·mm)位于甘肃,宁夏,云南,贵州,海南,福建,广东和广西。第二类地区(3.0 kg / hm2·mm≤AWUE≤5.0kg/ hm2·mm)包括上海,黑龙江,江西,青海,新疆,陕西,西藏,湖北,湖南,安徽,江苏,浙江,四川和山西,第三类地区(5.0 kg / hm2·mm≤AWUE≤7.5kg / hm2·mm)主要包括重庆市,天津市,北京市,辽宁,吉林,山东,河北,河南和内蒙古。最后,提出了不同的区域灌溉策略。

著录项

  • 来源
  • 会议地点 Shenzhen(CN);Shenzhen(CN)
  • 作者单位

    Key Laboratory of Crop Nutrition Fertilization, MOA Institute of Agro-resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing, 100081, China;

    Key Laboratory of Crop Nutrition Fertilization, MOA Institute of Agro-resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing, 100081, China;

    Institute of Agro-resources and Regional Planning, Chinese Academy of Agricultural Sciences,Beijing, 100081, China;

    Institute of Agro-resources and Regional Planning, Chinese Academy of Agricultural Sciences,Beijing, 100081, China;

    Institute of Agro-resources and Regional Planning, Chinese Academy of Agricultural Sciences,Beijing, 100081, China;

    Institute of Agro-resources and Regional Planning, Chinese Academy of Agricultural Sciences,Beijing, 100081, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计算机软件;
  • 关键词

    standard yield; irrigation intensity; irrigation extent; cropping index;

    机译:标准产量灌溉强度灌溉程度种植指数;

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