长江流域资源与环境 >> 2025, Vol. 34 >> Issue (09): 2028-.doi: 10.11870/cjlyzyyhj202509011

• 自然资源 • 上一篇    下一篇

基于水量和水质的三江源水生态服务功能评估及水安全格局构建

贾天朝1,文琦2,3,4*,施琳娜3,4, 吴昕燕5,丁金梅3,申彩婷6,郝智娟6,万媛媛1   

  1. (1.宁夏大学民族与历史学院,宁夏 银川 750021;2.宁夏大学建筑学院,宁夏 银川 750021;3.宁夏大学地理科学与规划学院,宁夏 银川 750021;4.宁夏大学 乡村振兴研究院乡村治理中心,宁夏 银川 750021;5.宁夏大学工程与地理学部,宁夏 银川 750021;6.宁夏大学经济管理学院,宁夏 银川 750021)
  • 出版日期:2025-09-20 发布日期:2025-09-22

Assessment of Water Ecosystem Service Function and Construction of Water Security Pattern of  Three- River-Source Based on Water Quantity and Quality

JIA Tian-chao1, WEN Qi2,3,4, SHI Lin-na3,4, WU Xin-yan5, DING Jin-mei3, SHEN Cai-ting6, HAO Zhi-juan6, WAN Yuan-yuan1   

  1. (1.School of Ethnology and Historiography, Ningxia University, Ningxia 750021, China;2.School of Architecture, Ningxia University, Ningxia 750021, China;3.School of Geographic Sciences and Planning, Ningxia University,  Ningxia 750021, China;4.Rural Governance Center of the Rural Revitalization Research Institute, Ningxia University, Ningxia 750021, China;5.Faculty of Engineering and Geography, Ningxia University,  Ningxia 750021, China;6.School of Economics and Management, Ningxia University, Ningxia 750021, China)
  • Online:2025-09-20 Published:2025-09-22

摘要: 三江源作为“中华水塔”,水生态地位突出,开展水生态系统服务功能评估和水安全格局构建,对维护国家水生态安全具有重要意义。运用InVEST模型Water Yield模块和Nutrient Delivery Ratio模块分析了1980~2020年三江源产水服务(水量)和水质净化服务(水质)时空格局,在此基础上结合最小累积阻力模型(MCR)进行三江源水生态安全格局构建。结果表明:(1)1980~2020年三江源多年平均产水量为600.08×108m3,整体上呈波动增加趋势,表现为“南高北低”的空间分布格局,产水深度增加区主要位于三江源西北部、东部和东南部,减少区为三江源南部和西南边缘地带。(2)1980~2020年三江源TN(氮)、TP(磷)和水质净化输出量均呈先减少后增加的变化趋势,多年平均输出量分别为84 628.37、8 167.32和92 795.69 t,高输出量区域呈现“南部和东南部集中分布,东部零星状分布”的空间特征。(3)在水安全格局构建中,共识别水生态源地斑块34个(面积为4 626.28 km2),提取水生态廊道199条(总长度约为9 943.92 km),整体呈现“中东部密集、西部稀疏分布,东西向延伸”的空间特征。

Abstract: As the “China Water Tower”, Three-River-Source has a prominent water ecological status. It is of great significance to carry out the assessment of water ecosystem service function and the construction of water security pattern for maintaining national water ecological security. In this paper, the Water Yield module of the InVEST model and Nutrient Delivery Ratio module were used to analyze the spatial and temporal patterns of water production service (water quantity) and water quality purification service (water quality) in Three-River-Source from 1980 to 2020. The minimum cumulative resistance model (MCR) was used to construct the water ecological security pattern of Three-River-Source. The results showed that: (1) The average annual water yield of Three-River-Source was 600.08×108m3, showing a fluctuating increasing trend as a whole, and a spatial pattern of “high in the south and low in the north”. The areas with increased water yield depth were mainly located in the northwest, east and southeast of Three-River-Source, while the areas with decreased water yield depth were in the south and southwest edge of Three-River-Source. (2) The TN (nitrogen), TP (phosphorus) and water purification output of the Three-River-Source showed a trend of decreasing first and then increasing. The average annual output was 84628.37 t, 8167.32 t and 92795.69 t, respectively. The high output area showed the spatial characteristics of “concentrated distribution in the south and southeast, scattered distribution in the east”. (3) In terms of the construction of water security pattern, 34 water ecological source patches (area of 4626.28 km2) were identified, and 199 water ecological corridors (total length of about 9943.92 km) were extracted, which showed the spatial characteristics of “dense in the middle and east, sparse in the west, and east-west extension”.

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