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Quantifying spatial changes in the structure of water quality constituents in a large prairie river within two frameworks of a water quality model

Hosseini, Nasim; Chun, Kwok Pan; Lindenschmidt, Karl Erich

Quantifying spatial changes in the structure of water quality constituents in a large prairie river within two frameworks of a water quality model Thumbnail


Authors

Nasim Hosseini

Profile image of Kwok Chun

Dr Kwok Chun Kwok.Chun@uwe.ac.uk
Lecturer in Environmental Managment

Karl Erich Lindenschmidt



Abstract

A global sensitivity analysis was carried out on a water quality model to quantify the spatial changes in parameter sensitivity of a model of a large prairie river, the South Saskatchewan River (SSR). The method is used to assess the relative impacts of major nutrient loading sources and a reservoir on the river's water quality. The river completely freezes over during winter; hence, the sensitivity analysis was carried out seasonally, for winter and summer, to account for the influence of ice-covered conditions on nutrient transformations. Furthermore, the integrity of the river's aquatic ecosystem was examined through the inter-relationship between variables and comparing hierarchy index values and water quality indices at four locations along the river. Sensitivities of model parameters varied slightly at different locations along the river, with the phytoplankton growth rate being the most influential parameter. Nitrogen and phosphorus transformation processes were more sensitive in winter, while chlorophyll-a and dissolved oxygen parameters showed higher sensitivity in summer. A more complicated correlation between variables was observed downstream of the junction of the Red Deer River. Our results reveal that the lower correlation between variables may suggest a more balanced and healthier system, although further analysis is needed to support this statement.

Journal Article Type Article
Acceptance Date Apr 12, 2016
Online Publication Date Apr 20, 2016
Publication Date Apr 20, 2016
Deposit Date Jan 25, 2022
Publicly Available Date Jan 26, 2022
Journal Water
Electronic ISSN 2073-4441
Publisher MDPI
Peer Reviewed Peer Reviewed
Volume 8
Issue 4
Article Number 158
DOI https://doi.org/10.3390/w8040158
Public URL https://uwe-repository.worktribe.com/output/8545342

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