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中国沙漠 ›› 2026, Vol. 46 ›› Issue (1): 1-10.DOI: 10.7522/j.issn.1000-694X.2025.00361

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临泽站河西走廊内陆河流域生态水文研究进展

赵文智(), 何志斌   

  1. 中国科学院西北生态环境资源研究院 甘肃临泽农田生态系统国家野外科学观测研究站/干旱区生态安全与可持续发展全国重点实验室/山水林田湖草沙系统治理国家林业和草原局重点实验室,甘肃 兰州 730000
  • 收稿日期:2025-11-23 修回日期:2025-12-29 出版日期:2026-01-20 发布日期:2026-03-09
  • 作者简介:赵文智(1966—),男,陕西定边人,研究员,主要从事干旱区生态水文学研究。E-mail: zhaowzh@lzb.ac.cn
  • 基金资助:
    国家自然科学基金项目(42230720)

A review of ecohydrology research progress at Linze Station in the inland river basins of the Hexi Corridor

Wenzhi Zhao(), Zhibin He   

  1. Gansu Linze National Field Scientific Observation and Research Station of Farmland Ecosystem / State Key Laboratory of Ecological Safety and Sustainable Development in Arid Region / Key Laboratory of Landscape,Forest,Field,Lake,Grass and Sand System Management,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences,Lanzhou 730000,China
  • Received:2025-11-23 Revised:2025-12-29 Online:2026-01-20 Published:2026-03-09

摘要:

临泽站地处河西走廊中段、中国第二大内陆河黑河流域中游,是国内较早定位开展干旱区生态水文学研究的野外台站,也是中国内陆河流域生态水文研究的缩影。本文梳理了临泽站“生态水文学”学科的引入及干旱区生态水文研究科学问题的凝练过程,综述了在干旱区植被耗水及绿洲生态需水,祁连山北坡森林格局、过程及其水文学机制,山地生态系统对气候变化的响应,荒漠植被演变过程及其稳定性维持的生态水文机理,荒漠生态系统对降水的响应,荒漠河岸林格局、结构和功能变化及其对地下水和地表水的响应等方面的研究进展,提出应在山地、荒漠、绿洲相对独立的单元研究基础上,探讨内陆河流域山水林田湖草沙体系景观格局、要素组成、系统效率及耦合关系,解析林、沙、草、水、湖、田等要素间相互作用及尺度效应,模拟不同水资源配置情景下系统的稳定性与生态效益,阐明从典型小流域到内陆河流域山水林田湖草沙系统协同与权衡的生态水文机制,关注祁连山-河西走廊-阿拉善高原三大地貌单元物质迁移与生态响应,关注外流域调水与绿洲农业可持续发展的途径与技术。

关键词: 生态水文, 内陆河流域, 荒漠, 绿洲, 山地

Abstract:

The Linze Inland River Basin Research Station (Linze Station) is located in the middle section of the Hexi Corridor, in the middle reaches of the Heihe River Basin, China's second-largest inland river basin. It is one of the earliest field stations dedicated to ecohydrology research in arid regions and represents a microcosm of ecohydrology studies in inland river basins in China. This paper reviews the introduction of the discipline of “Ecohydrology” at the Linze Station and the process of refining scientific questions in arid region ecohydrology research. It summarizes the research progress on arid region vegetation water consumption and oasis ecological water demand; forest patterns, processes, and hydrological mechanisms on the northern slope of the Qilian Mountains; the response of mountain ecosystems to climate change; desert vegetation evolution and the ecohydrology mechanisms for maintaining stability; desert ecosystems' responses to precipitation; the pattern, structure, and functional changes of riparian forest ecosystems in deserts, as well as their responses to groundwater and surface water. It proposes that, based on research on relatively independent units of mountains, deserts, and oases, the landscape patterns, component elements, system efficiency, and coupling relationships of the mountain-water-forest-field-lake-grass-sand system in inland river basins should be explored. The interactions between forest, sand, grass, water, lakes, and fields, as well as scale effects, should be analyzed. The stability and ecological benefits of the system under different water resource allocation scenarios should be simulated. The ecohydrology mechanisms of the coordinated and trade-off systems from typical small watersheds to inland river basins, such as the Qilian Mountains, Hexi Corridor, and Alashan Plateau, should be clarified, with a focus on material migration and ecological responses across the three geomorphic units. The study should also address the pathways and technologies for inter-basin water diversion and sustainable oasis agriculture.

Key words: ecological hydrology, inland river basin, desert, oasis, mountains

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