Spatial response of water level and quality shows more significant heterogeneity during dry seasons in large river-connected lakes

Author:

Yin Yingze,Xia Rui,Liu Xiaoyu,Chen Yan,Song Jinxi,Dou Jinghui

Abstract

AbstractThe spatial response mechanism of hydrology and water quality of large river-connected lakes is very complicated. In this study, we developed a spatial response analysis method that couples wavelet correlation analysis (WTC) with self-organizing maps (SOM), revealing the spatial response and variation of water level and water quality in Poyang Lake, China's largest river-connected lake, over the past decade. The results show that: (1) there was significant spatial heterogeneity in water level and quality during the dry seasons (2010–2018) compared to other hydrological stages. (2) We identified a more pronounced difference in response of water level and quality between northern and southern parts of Poyang Lake. As the distance increases from the northern lake outlet, the impact of rising water levels on water quality deterioration intensified during the dry seasons. (3) The complex spatial heterogeneity of water level and quality response in the dry seasons is primarily influenced by water level fluctuations from the northern region and the cumulative pollutant entering the lake from the south, which particularly leads to the reversal of the response in the central area of Poyang Lake. The results of this study can contribute to scientific decision-making regarding water environment zoning management in large river-connected lakes amidst complex environment conditions.

Funder

National Key Research and Development Program of China

the Deeply Support the Implementation of Ecological Protection and Governance of Yellow River

the Fundamental Research Funds for the Central Public-interest Scientific Institution

Publisher

Springer Science and Business Media LLC

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