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挠力河流域水土资源平衡及耕地合理利用规模特征
引用本文:周浩, 夏卫生, 雷国平. 挠力河流域水土资源平衡及耕地合理利用规模特征[J]. 农业工程学报, 2021, 37(2): 278-287. DOI: 10.11975/j.issn.1002-6819.2021.2.032
作者姓名:周浩  夏卫生  雷国平
作者单位:1.湖南师范大学资源与环境科学学院,长沙 410081;2.东北大学土地管理研究所,沈阳 110169
基金项目:国家自然科学基金项目(41671520)
摘    要:水土资源平衡是耕地合理开发与利用的前提,为定量评估粮食主产区水土资源平衡关系,促进耕地可持续利用,该研究提出以水定地的耕地配置模式,并以三江平原腹地的挠力河流域为研究区,在多源水土信息数据支持下,依据农田土壤水分平衡原理构建水土资源平衡模型,以评估水土资源平衡态势,进而揭示该流域耕地合理利用规模特征.结果表明:1)...

关 键 词:土地利用  耕地  水田  格局  水土资源平衡  挠力河流域
收稿时间:2020-10-28
修稿时间:2021-01-12

Balance between land use and water resources for cultivated land and its appropriate scale in Naoli River Basin
Zhou Hao, Xia Weisheng, Lei Guoping. Balance between land use and water resources for cultivated land and its appropriate scale in Naoli River Basin[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2021, 37(2): 278-287. DOI: 10.11975/j.issn.1002-6819.2021.2.032
Authors:Zhou Hao  Xia Weisheng  Lei Guoping
Affiliation:1.College of Resources and Environment Sciences, Hunan Normal University, Changsha 410081, China;2.Land Management Institute, Northeastern University, Shenyang 110169, China
Abstract:Abstract: Utilization of water resources in the Sanjiang Plain depends largely on the agricultural structure, where most dry land crops has changed into rice since 2000. It is necessary to explore the balance of soil and water resources, thereby to obtain an optimal utilization scale of cultivated land for the sustainable development in China. In this study, the Naoli River Basin was taken as the research area, which was an important commodity grain production base in China. Most datasets were related to water and soil resources, including the remote sensing information, meteorological station, and spatial distribution of cultivated lands. A balance model of soil and water in a farmland was established according the fundamental principle. An evaluation was made to clarify the allocation status of water and soil resources in Naoli River Basin. A quantitative investigation was carried out to obtain an optimal scale on cultivated land suitable for development and utilization, combined with crop irrigation data. The results showed that: 1) The current reclamation rate of Naoli River Basin was 62.61%, and its paddy field coefficient was 37.33%, which was in the middle stage of paddy fields. Evapotranspiration under water stress was the same for dry land and paddy field. The river basin also showed that the water deficit for paddy field was significantly higher than that for dry land; 2) The supply of irrigation water in Naoli River Basin was from 21.23 mm to 211.91 mm, where the demand of irrigation water in paddy field was higher than that in dry land. Water resources in Fujin City, Youyi and Jixian County were in the overload state, where there were more land resources and less water resources for the paddy fields. The current water resources supply conditions cannot meet the demand of cultivated land water; 3) Besides, water resources in Qitaihe City, Shuangyashan City, Raohe and Baoqing County were in the overload state, showing the obvious characteristics of less land resources and more water resources. A suggestion can be that the expandable paddy field area of Naoli River Basin cannot exceed to 1 101.80 km2 in the future, where the coefficient of paddy field was controlled below 44.76%. The scale of paddy fields can be appropriately reduced in Fujin City, Youyi and Jixian County. In Baoqing County, the key dry land can be converted into paddy fields. The findings can be used as a sound references for the cultivated land management in the Naoli River Basin and the Sanjiang Plain.
Keywords:land use   cultivated land   paddy land   pattern   balance between land use and water resources   Naoli River Basin
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