Spatial heterogeneity of the effects of river network patterns on water quality in highly urbanized city

空间异质性 环境科学 水质 空间变异性 地理 生态学 生物 数学 统计
作者
Yuanyuan Wang,Weixian Wang,Lijuan Liu,Rongjia Wang,Xiangyu Tang,Yan Li,Xiaoyu Li
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:937: 173549-173549 被引量:2
标识
DOI:10.1016/j.scitotenv.2024.173549
摘要

River water quality deterioration is a serious problem in urban water environments. River network patterns affect water quality by influencing the flow, mixing, and other processes of water bodies. However, the effects of urban river network patterns on water quality remain poorly understood, thereby hindering the urban planning and management decision-making process. In this study, the geographically weighted regression (GWR) model was used to explore the spatial heterogeneity of the relationship between river network pattern and water quality. The results showed that the river network has a complex structure, high connectivity, and relatively even distribution and morphology. Important river structure indicators affecting water quality included the water surface ratio (Wp) and multifractal features (∆α, ∆f) while important river connectivity indicators included circuitry (α) and network connectivity (γ). River structure has a more complex effect on water quality than connectivity. This study recommends that the Wp should be increased in agricultural areas and appropriately reduced in urban built-up areas, and the number of river segments and nodes should be controlled within a rational configuration. Our study provides key insights for evaluating and optimizing the river network patterns to improve water quality of urban rivers. In the future, the land use intensity, hydrological processes, and human activities should be coupled with the river network pattern to deepen our understanding of urban river environment.
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