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Could the hydrological conditions of Lake Baiyangdian support a booming metropolis?

Authors

Hu,  Shi
IUGG 2023, General Assemblies, 1 General, International Union of Geodesy and Geophysics (IUGG), External Organizations;

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Citation

Hu, S. (2023): Could the hydrological conditions of Lake Baiyangdian support a booming metropolis?, XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG) (Berlin 2023).
https://doi.org/10.57757/IUGG23-2181


Cite as: https://gfzpublic.gfz-potsdam.de/pubman/item/item_5018625
Abstract
In 2017, the Chinese government announced the development of another metropolis called Xiong'an New Area (XNA) to relieve the population and service pressures affecting Beijing. By the programs of the Chinese governments, the largest natural freshwater wetland of the XNA, Lake Baiyangdian (BYD), will provide the key ecosystem services for the region. However, whether the hydrological conditions of BYD can support this booming metropolis is still unclear. To maintain the ecosystem function of BYD and provide ecological services for the XNA, the annual ecological water demands of BYD ranged from 3.10×108 m3 to 6.35 ×108 m3 under different water exchange scenarios. Due to the insufficient water resources within the watershed, under the scenario of a 1.0 time yr-1 frequency of lake water exchange, in wet years, normal flow years and dry years 1.32×108 m3, 2.10×108 m3 and 3.38×108 m3 of external water from the Yellow and Yangtze Rivers must be transferred into BYD to satisfy the ecological restoration of the XNA, and the costs may be as much as 77~277 million RMB (11.0~39.57 million USD) per year. The predicted results show that the external water demands may decrease slightly by 0.58×108~0.95×108 m3 yr-1 and 1.02×108~1.18×108 m3 yr-1 in the 2030s and 2050s, respectively. Agricultural water consumption reduction, inflow water quality improvement and the intelligent use and management of urban reclaimed water are necessary for maintaining the ecosystem function of BYD, and externally transferred water may be a potential factor needed to support the growing XNA.