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基于知识图谱的毛乌素沙地生态水文研究进展分析

Analysis of research progress on eco-hydrology of Mu Us Sandy Land based on knowledge graph

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【作者】 唐亦朗翁白莎严登华段利民高海波苗平乌罕图郭建英张铁钢

【Author】 TANG Yilang;WENG Baisha;YAN Denghua;DUAN Limin;GAO Haibo;MIAO Ping;WU Hantu;GUO Jianying;ZHANG Tiegang;State Key Laboratory of Water Cycle and Water Security, China Institute of Water Resources and Hydropower Research;Water Conservancy and Civil Engineering College, Inner Mongolia Agricultural University;Water Conservancy Development Center of Uxin Banner;River and Lake Conservation Center of Ordos;Water Investment Group Ltd of Uxin Banner;Yinshanbeilu Grassland Eco-hydrology National Observation and Research Station, China Institute of Water Resources and Hydropower Research;

【通讯作者】 翁白莎;

【机构】 中国水利水电科学研究院流域水循环与水安全全国重点实验室内蒙古农业大学水利与土木建筑工程学院乌审旗水利事业发展中心鄂尔多斯市河湖保护中心乌审旗水务投资集团有限公司中国水利水电科学研究院内蒙古阴山北麓草原生态水文国家野外科学观测研究站

【摘要】 从有文献收录(1983年)开始至2024年中国知网和Web of Sciences核心合集数据库中筛选出1063篇有关毛乌素沙地生态水文研究的文献,采用文献计量和可视化分析的方法,分析了上述文献发表数量随时间变化、国家及地区研究情况、发文机构、关键词及其聚类等,系统归纳并评述了毛乌素沙地生态水文研究的关键进展。结果表明,毛乌素沙地生态水文研究方向主要集中在沙地生态水文要素的演变规律与互馈机理、沙地生态水文演变的驱动机制以及沙地荒漠化的影响效应及应对等方面。基于前述研究基础,本文就持续性巩固毛乌素沙地荒漠化防治成果提出了相关建议,未来研究仍需重点关注该区域的生态水文、气候变化适应以及生态保护等核心议题。

【Abstract】 This paper screens 1 063 research papers on eco-hydrology in the Mu Us Sandy Land from the beginning of the literature collection(1983) to 2024 in the China National Knowledge Infrastructure and Web of Sciences Core Collection database. By using bibliometric analysis and visualization analysis, we examine temporal trends in the publication numbers of the above literature, research situation in countries and regions, institutional distributions, keywords and their clustering, etc., and summarize the progress of research on eco-hydrology for this region. The results show the previous studies of eco-hydrology focused on three subjects of this sandy land-the evolution pattern of eco-hydrological elements and their mutual feedback mechanism, the driving mechanism of this evolution, and the effects of desertification and how to prevent it in such a sandy condition. Based on the analysis above, we give suggestions for continuous consolidation of the desertification control achievements in this land. Future research should prioritize eco-hydrological processes, climate change adaptation, and ecosystem protection in the Mu Us Sandy Land.

【基金】 鄂尔多斯市国家可持续发展议程创新示范区建设科技支撑项目(KCX2024013);中国水科院基本科研业务费项目(MK0145B022021)
  • 【文献出处】 水力发电学报 ,Journal of Hydroelectric Engineering , 编辑部邮箱 ,2025年12期
  • 【分类号】X143;G353.1
  • 【下载频次】135
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