Pular para o conteúdo principal

ETHNOS_APP

Início • Busca • Periódicos • Lista 0

New Framework for Dynamic Water Environmental Capacity Estimation Integrating the Hydro-Environmental Model and Load–Duration Curve Method—A Case Study in Data-Scarce Luanhe River Basin

Dados Bibliográficos

ID15499729
AutoresHuiyu Jin (Fudan University), Wanqi Chen (0000-0001-5990-3691, Fudan University), Zhenghong Zhao (Fudan University), Jiajia Wang (0009-0004-5064-5859, Fudan University), Weichun Ma (0000-0003-0273-6727, Fudan University, autor correspondente)
Ano2022
Volume19
Fascículo14
Páginas8389-8389
Data de publicação2022-07-09
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoInternational Journal of Environmental Research and Public Health (JOURNAL)
Identificadores do periódicoISSN: 1661-7827 • E-ISSN: 1660-4601
EditoraMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph19148389
PMID35886241
OpenAlexW4285006362
IdiomaEN
Referências citadas47

A better understanding of river capacity for contaminants (i.e., water environmental capacity, WEC) is essential for the reasonable utilization of water resources, providing government's with guidance about sewage discharge management, and allocating investments for pollutant reduction. This paper applied a new framework integrating a modified hydro-environmental model, Soil and Water Assessment Tool (SWAT) model, and load-duration curve (LDC) method for the dynamic estimation of the NH 3 -N WEC of the data-scarce Luanhe River basin in China. The impact mechanisms of hydrological and temperature conditions on WEC are discussed. We found that 77% of the WEC was concentrated in 40% hydrological guarantee flow rates. While the increasing flow velocity promoted the pollutant decay rate, it shortened its traveling time in streams, eventually reducing the river WEC. The results suggest that the integrated framework combined the merits of the traditional LDC method and the mechanism model. Thus, the integrated framework dynamically presents the WEC's spatiotemporal distribution under different hydrological regimes with fewer data. It can also be applied in multi-segment rivers to help managers identify hot spots for fragile water environmental regions and periods at the basin scale

Drainage basin · Geography · Hydrology (agriculture · Pollutant · Soil and Water Assessment Tool · Streamflow · Structural basin · Water resource management · Water resources · Engineering · Environmental Science · Flood Risk Assessment and Management · Hydrology and Watershed Management Studies · Soil and Water Nutrient Dynamics · Environmental Engineering · Geology

  • Model Evaluation Guidelines for Systematic Quantification of Accuracy in Watershed Simulations

    D N Moriasi D N Moriasi, Daniel N Moriasi et al.•Transactions of the ASABE•2007

  • Spatial and Seasonal Dynamics of Water Environmental Capacity in Mountainous Rivers of the Southeastern Coast, China

    Open Access•Qiankun Liu, Jingang Jiang et al.•International Journal of…•2018

  • Water Environmental Capacity Analysis of Taihu Lake and Parameter Estimation Based on the Integration of the Inverse Method and Bayesian Modeling

    Open Access•Ranran Li, Zhihong Zou•International Journal of…•2015

  • China's water security

    Open Access•Yong Jiang•Environmental Science & Policy•2015

Velocidade de citaçãohistorical
Altamente citadoNão
Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae