CHANS-SD-YRB V1.0: a system dynamics model of the coupled human-natural systems for the Yellow River Basin

情景分析 可持续发展 环境科学 流域 基线(sea) 系统动力学 缺水 水资源 持续性 环境资源管理 人类系统工程 自然(考古学) 地球系统科学 稀缺 生态系统 气候变化 粮食安全 气候模式 自然资源 水安全 区域可持续发展 河流生态系统 仿真建模 构造盆地 投影(关系代数) 水资源管理 系统模型 计算机科学 可持续管理 经济模型 水文学(农业) 气候系统
作者
Shan Sang,Yan Li,Shuang Zong,Lu Yu,Shuai Wang,Yanxu Liu,Xiaofan Wu,S. H. Song,Wenwu Zhao,Xuhui Wang,Bin Fu
出处
期刊:Geoscientific Model Development [Copernicus Publications]
卷期号:19 (5): 2039-2058
标识
DOI:10.5194/gmd-19-2039-2026
摘要

Abstract. Modeling the coupled human–natural systems (CHANS) is vital for understanding human–natural interactions and achieving regional sustainability, offering a powerful tool to alleviate human–water conflicts, ensuring food security, thereby supporting the region's pathway toward sustainable development. However, the scarcity of regional-scale CHANS models constrains progress in practical applications for regional sustainability. The Yellow River basin (YRB) is an ideal region for modeling regional CHANS due to its closely coupled human and natural systems, which are stressed by water and ecosystem fragility. Here, we developed the CHANS-SD-YRB model using the System Dynamics approach, integrating 10 sectors essential for modeling human-water interactions of the basin, including five human sectors (Population, Economy, Energy, Food, and Water Demand) and five natural sectors (Water Supply, Sediment, Land, Carbon, and Climate). The model can simulate evolution and feedbacks of the YRB CHANS annually at provincial and sub-basin scales, while conserving hydrological connectivity between sub-basins. The model can accurately reproduce historical CHANS dynamics, achieving strong quantitative agreement with historical data (R > 0.95 for human sectors and R > 0.7 for natural sectors), which supports its applicability for scenario analyses and future projections. We applied the model to explore human–natural system dynamics under a future baseline scenario, assuming the continuation of existing policies and climate projection under middle of the road scenario (SSP–RCP 2-4.5). The future projections (2021–2100) indicate that achieving sustainable development in the YRB will remain challenging, though economic growth and food security are expected to improve. Emerging issues, such as ecological–human water trade-offs, labor shortages, reduced sediment loads, and limited carbon absorption capacity, may hinder regional long-term sustainability, underscoring the need for integrated policies to address these challenges.
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