4.1 Article

Study on the proportion and flow path of Yangtze River water diversion into Taihu Lake

Journal

WATER SUPPLY
Volume 22, Issue 2, Pages 1820-1834

Publisher

IWA PUBLISHING
DOI: 10.2166/ws.2021.313

Keywords

hydrodynamic model; Mann-Kendall; river network; water diversion; water source tracing

Funding

  1. Major Science and Technology Program for Water Pollution Control and Treatment of China [2018ZX07208-005]
  2. Fundamental Research Fund for the Central Universities
  3. Fundamental Research Fund for the World-Class Universities (Disciplines)
  4. Characteristic Development Guidance Funds for the Central Universities
  5. National Natural Science Foundation of China [51879070]

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The study demonstrates a significant upward trend in the proportion of water diversion from the Yangtze River to Taihu Lake in the past 30 years. The Taige River is the most affected by the river diversion, while the Wuxi River is the least affected. The primary flow path of water diversion from the Yangtze River to Taihu Lake is through the Wuyi River and Lake Gehu via the Zao River water diversion station.
The purpose of this study is to quantify the proportion and flow path of the water diversion from Yangtze River (YRD) into Taihu Lake. Based on the analysis of rainfall and data of Taihu basin in recent 30 years, a 1-D hydrodynamic model of main inflow river network area of Taihu basin was constructed, coupled the convection-diffusion model with conservative material, the characteristics of YRD and the water inflow into Taihu Lake (WITL) in three typical years were calculated. The results show that the YRD has shown a significant upward trend in the past 30 years, accounting for 26.4, 35.6 and 42% of the total WITL in three typical years of wet, normal and dry respectively. From the perspective of space, Taige River is the largest river in the western part of the lake that is affected by the river diversion (35%-72%), and Wuxi River is the smallest (1-3%). In addition, the primary flow path of YRD to Taihu Lake was through the Wuyi River and Lake Gehu from the water diversion station west of the Zao River.

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