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中国农学通报 ›› 2019, Vol. 35 ›› Issue (35): 67-72.doi: 10.11924/j.issn.1000-6850.casb18090046

• 资源 环境 生态 土壤 气象 • 上一篇    下一篇

虚拟水视角下三江平原地区水-土-作物优化配置研究

邹小娇1, 张郁1, 栾福超2   

  1. 1.东北师范大学地理科学学院 长春;2.吉林省国土资源调查规划研究院 长春
  • 收稿日期:2018-09-10 修回日期:2019-11-16 接受日期:2019-05-08 出版日期:2019-12-16 发布日期:2019-12-16
  • 通讯作者: 张郁
  • 基金资助:
    国家自然科学基金资助项目“东北地区粮食生产格局与水土资源配置的耦合效应研究”(41571115)。

Water-Land-Crop in Sanjiang Plain: Optimal Allocation Based on Virtual Water

  • Received:2018-09-10 Revised:2019-11-16 Accepted:2019-05-08 Online:2019-12-16 Published:2019-12-16

摘要: 三江平原地区是我国重要的商品粮基地,近年来,伴随着全球气候变暖,受政策调控及经济利益的驱动,该地区粮食种植结构发生了明显变化,未来其水-土-作物配置仍有进一步优化的空间。现有的水-土-作物优化配置研究,水资源约束条件中大多基于传统的灌溉用水量等农业用水指标。本文从雨养-灌溉兼具的三江平原地区农业生产实际出发,构建含水约束条件为广义农业水资源(即蓝水和绿水)的线性规划模型,并利用软件LINGO17.0,求解出目标函数以及相应的水稻、玉米、大豆种植面积。研究表明,基于2015年现状以及三江连通工程实施后的种植结构优化结果,均呈现出水稻种植面积增加的趋势,玉米种植面积大幅度减少,大豆种植面积有增有减。三江连通工程为实现该区域的水-土-作物优化配置以及水旱种植结构调整提供了重要的设施保障。不断优化种植结构,促进水-土-作物优化配置,对进一步提高三江平原地区粮食产能具有重要意义。

关键词: 北苍术, 北苍术, 组织培养, 快速繁殖, 外植体, 丛生芽

Abstract: The paper aims to promote grain production and increase agricultural income, realize the optimal allocation of water-soil-crop in Sanjiang plain. We established a linear programming model with generalized agricultural water resources (i.e. blue water and green water) as constraints based on the actual condition of agricultural production with both rain-fed and irrigation practice by using the software LINGO 17.0 to solve the objective function and the corresponding planting area of rice, corn, soybean. The results showed that: based on the situation of 2015 and the optimization results of planting structure after the implementation of the Sanjiang Connected Project, the rice planting area increased, the corn planting area reduced significantly, and the soybean planting area had both increase and decrease. The Sanjiang Connected Project provides important facilities for the realization of water-soil-crop optimal allocation and the planting structural adjustment of rainfed and irrigated agriculture in the region. Continuous optimization of planting structure and promotion of water-soil-crop optimal allocation are of great significance for further improving the grain production capacity in Sanjiang plain.

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