Climate Change Impacts on Land Surface, Hydrological Processes and Water Management, 2nd Edition

A special issue of Water (ISSN 2073-4441). This special issue belongs to the section "Water and Climate Change".

Deadline for manuscript submissions: 20 March 2025 | Viewed by 768

Special Issue Editors


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Guest Editor
China Institute of Water Resources and Hydropower Research, Beijing, China
Interests: modelling of water cycle in watersheds; climate change and hydrological response to human activities; land use change impact on hydrology; hydroclimate; ecohydrology
Special Issues, Collections and Topics in MDPI journals
School of Geographical Sciences, Southwest University, Chongqing 400715, China
Interests: hydrological modeling; climate change and land use/land cover change impact on water resources; eco-hydrology
Special Issues, Collections and Topics in MDPI journals

Special Issue Information

Dear Colleagues,

In the context of increasing climate variability and anthropogenic stresses, changes to the water cycle and the underlying land surface have caused widespread concern regarding water resource security and ecological evolution. Investigating the changes in and driving mechanisms of the water cycle and water resources at the catchment or regional scale has become the most basic issue for global sustainable development.

In recent years, with the development of computer science, remote sensing technology, and climatic models, climate change impacts on land surfaces, hydrological processes, and water management have been further studied, alongside the emergence of new perspectives and understandings. Therefore, this Special Issue aims to represent the latest advances of this scientific topic. We welcome contributions in all fields relevant to climate change, hydrometeorological modeling, and water resources management, as well as emerging technologies and models. The specific topics of interest include, but are not limited to, the following:

  • Climate change impacts on land surface;
  • Hydrological modeling of the effects of land use/land cover change;
  • Hydrological responses to climate change;
  • Water resource management;
  • The application of regional climate models;
  • Catchment floods and droughts;
  • Remote sensing hydrology;
  • Ecological responses to hydrological change;
  • Vegetation–atmosphere interactions.

Dr. Chuanzhe Li
Dr. Xuchun Ye
Guest Editors

Manuscript Submission Information

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Keywords

  • climate change
  • land use/land cover change
  • hydrologic and ecologic modeling
  • hydrometeorology
  • ecohydrology
  • hydrological processes
  • water management

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Published Papers (1 paper)

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Research

15 pages, 1503 KiB  
Article
Dual Method for Comprehensive Evaluation of Sustainable Water Resources’ Utilization Capacity in Huangshui River in Yellow River Basin, China
by Lijuan Fan, Ronglan Li, Ju Gao, Fen Zhao and Chunhui Li
Water 2024, 16(20), 2878; https://doi.org/10.3390/w16202878 - 10 Oct 2024
Viewed by 597
Abstract
The evaluation of sustainable water resources’ utilization capacity in the Huangshui Basin is essential for effective management and development in the water-scarce regions of northwest China. This research provides valuable insights into the basin’s potential capacity for sustainable water resource use by developing [...] Read more.
The evaluation of sustainable water resources’ utilization capacity in the Huangshui Basin is essential for effective management and development in the water-scarce regions of northwest China. This research provides valuable insights into the basin’s potential capacity for sustainable water resource use by developing a comprehensive evaluation index that addresses the following three critical aspects: climate factors, water resource systems, and socio-economic conditions. The evaluation is conducted using a dual method, as follows: the fuzzy comprehensive evaluation model and the ELECTRE III evaluation method. The results indicate that the Huangshui Basin’s water resources, as a whole, exhibit a medium sustainable utilization capacity. Climatic factors and socio-economic characteristics are the main factors affecting the sustainable utilization of water resources in the Huangshui Basin. Remarkably, both methods yield consistent results, indicating that the overall sustainable utilization capacity of the Huangshui Basin’s water resources is medium. Climatic factors and socio-economic characteristics are identified as the primary aspects influencing the sustainable utilization of water resources in the basin. Based on these findings, recommendations such as enhancing the introduction of external water resources, improving water resources’ management, and implementing comprehensive remediation efforts can help to elevate the level of sustainable water use. This research not only contributes to a deeper understanding of the basin’s water resources’ dynamics, but also serves as an important reference for informed decision making regarding sustainable utilization in the Huangshui Basin. Full article
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