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基于GIS的马尾皂灌区供水保障研究

付建军1,2(), 李云起1,2, 袁理3, 陈鹏3, 龚柔艳1,2()   

  1. 1.湖南农业大学 水利与土木工程学院 长沙 410128
    2.湖南农业大学 湖南省灌区精准控灌工程技术研究中心 长沙 410128
    3.湖南省水利厅 水利工程管理局,长沙 410007
  • 收稿日期:2024-02-23 修回日期:2024-04-24 出版日期:2024-05-23
  • 通信作者: 龚柔艳(1992-),女,讲师,主要从事灌区水资源研究。E-mail:gongry@hunau.edu.cn
  • 作者简介:付建军(1983-),男,教授,主要从事水利工程技术服务及信息化研究。E-mail:664865581@qq.com
  • 基金资助:
    湖南省水利厅重大课题(XSKJ2022068-29);湖南省水利厅一般项目(XSKJ2023059-07)

Study on water supply guarantee of Maweizao irrigation area based on GIS

FU Jian-jun1,2(), LI Yun-qi1,2, YUAN Li3, CHEN Peng3, GONG Rou-yan1,2()   

  1. 1. College of Water Resources and Civil Engineering,Hunan Agricultural University,Changsha 410128,China
    2. Hunan Provincial Irrigation Area Precision Control Irrigation Engineering Technology Research Center, Hunan Agricultural University,Changsha 410128,China
    3. Water Conservancy Engineering Management Bureau of Hunan Provincial Department of Water Resources, Changsha 410007,China
  • Received:2024-02-23 Revised:2024-04-24 Published:2024-05-23

摘要: 为探究南方丘陵型灌区水稻的供水保障及粮食安全,收集马尾皂灌区长时间序列的逐日气象数据,以水稻生长期季内降雨量为对象,分析确定各典型年及其特征值;基于FAO Penman-Monteith方法、水量平衡法计算水稻作物需水量及田间净灌溉需水量;采用GIS技术分析灌区田块可供净灌溉用水量及供水保障空间特征;结合土壤含水率、作物测产试验,获得可供净灌溉用水量、土壤含水率及水稻产量相关关系。结果表明,以晚稻为例,平水年、中等干旱年、枯水年的田间净灌溉需水量值分别为415mm、455mm、560mm,枯水年可供净灌溉用水量与田间净灌溉需水量的比值在40%以下、40%~60%、60%~80%、80%以上面积分别占灌区总面积26.11%、10.16%、13.33%、50.4%,粮食产量分别为0~200 kg/亩、200~300 kg/亩、200~300 kg/亩、400~500kg/亩。研究成果将为大中型灌区农业用水权确权及农业用水总量提供参考及借鉴。

关键词: 季内降雨量, 田间净灌溉需水量, 可供净灌溉用水量, 供水保障

Abstract:

In order to explore the water supply guarantee and food security of rice in the hilly irrigation area of southern China, the daily meteorological data of long time series in Maweizao irrigation area were collected, and the rainfall in the growing season of rice was taken as the object to analyze and determine the typical years and their characteristic values. Subsequently, based on the FAO Penman-Monteith method and the water balance method, the water requirement of rice crops and the net irrigation water requirement in the field were calculated. Then, the GIS technology was used to analyze the net irrigation water supply and the spatial characteristics of water supply guarantee in the irrigation area. Combined with soil moisture content and crop yield test, the correlation between net irrigation water supply, soil moisture content and rice yield were obtained. The results showed that, taking late rice as an example, the net irrigation water requirements of the field in normal year, medium drought year and dry year were 415mm, 455mm and 560mm respectively. In dry year, the ratio of net irrigation water to net irrigation water in the field was less than 40 %, 40 % ~60 %, 60~80 % and more than 80 %, respectively, accounting for 26.11 %, 10.16 %, 13.33 % and 50.4 % of the total area of the irrigation area, and the grain yield was 0~200,200~300,200~300 and 400~500 kg / mu, respectively. The research results will provide reference for the confirmation of agricultural water rights and the total amount of agricultural water use in large and medium-sized irrigation areas.

Key words: intraseasonal rainfall, net irrigation water requirement in the field, net irrigation water available, water supply security

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