河北水利电力学院学报 ›› 2025, Vol. 35 ›› Issue (2): 1-5.DOI: 10.16046/j.cnki.issn2096-5680.2025.02.001

• 生态水文与水资源 •    下一篇

地下水灌溉取水系统动力学分析

魏亮1, 孙雪峰1, 王二英1, 吕旺1, 孙春峰2   

  1. 1.河北省水资源研究与水利技术试验推广中心,河北省石家庄市新华区石清路69号 050061;
    2.石家庄市农林科学研究院,河北省石家庄市正定新区综合商务中心 050041
  • 收稿日期:2024-09-04 修回日期:2024-10-01 出版日期:2025-06-30 发布日期:2025-07-04
  • 通讯作者: 孙雪峰(1965-),男,河北赵县人,正高级工程师,主要从事节水技术研究工作,研究方向为社会节水。E-mail:sunxuefeng65@126.com
  • 作者简介:魏 亮(1966-),男,内蒙古自治区乌兰察布市人,正高级工程师,主要从事水资源管理与节水研究工作。E-mail:weiliang@126.com
  • 基金资助:
    河北省水利科技计划项目(2020-34)

System Dynamics Analysis of Water Intake for Groundwater Irrigation

WEI Liang1, SUN Xuefeng1, WANG Erying1, LV Wang1, SUN Chunfeng2   

  1. 1. Hebei Water Resources Research and Water Conservancy Technology Experimental Extension Center, 050061, Shijiazhuang, Hebei, China;
    2. Shijiazhuang Academy of Agriculture and Forestry Science, 050041, Shijiazhuang, Hebei, China
  • Received:2024-09-04 Revised:2024-10-01 Online:2025-06-30 Published:2025-07-04

摘要: 为完善地下水超采治理技术体系,利用系统动力学原理,构建地下水灌溉取水系统的地下水水源子系统、动力取水子系统、灌溉用水子系统和管理子系统,通过分析子系统独立功能及其相互作用,阐述了各子系统正常运行的环境条件及其变化造成其他子系统异常时,支持其运行的环境条件就会变成约束条件。经过管理子系统及时反馈信息,管理部门需要采取技术措施控制正常运行中的潜在危害,使各子系统的环境条件和约束条件保持在合理范围,以保证整个系统正常运行。

关键词: 水资源, 系统动力学, 地下水, 灌溉用水

Abstract: To enhance the technical system for treating groundwater overextraction, four subsystems of the groundwater irrigation intake system, namely the water source system, intake system, water use system, and management system, are established by applying the principle of system dynamics. Through the analysis of the independent functions of the subsystems and their interactions, it is elucidated that the environmental conditions supporting the forward operation of each subsystem will transform into constraint conditions when the operation of each subsystem leads to the abnormal running of other systems. After the prompt feedback of the information system, the management department is required to adopt technical measures to manage and control the potential hazards during normal operation, ensuring that the environmental conditions and constraints of each subsystem remain within a reasonable range, thereby guaranteeing the normal operation of the entire system.

Key words: water resources, system dynamics, groundwater, irrigation water

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