Successful modelling of river dissolved oxygen dynamics requires knowledge of stream channel environments

被引:14
作者
Hutchins, Michael G. [1 ]
Qu, Yueming [1 ]
Charlton, Matthew B. [2 ]
机构
[1] UK Ctr Ecol & Hydrol, Maclean Bldg,Benson Lane, Wallingford OX10 8BB, Oxon, England
[2] Environm Agcy, Horizon House,Deanery Rd, Bristol BS1 5AH, Avon, England
关键词
Dissolved oxygen; Water temperature; River; Hydraulics; Water quality model; Local knowledge; WATER-QUALITY; FRAMEWORK; LOWLAND; IMPACTS;
D O I
10.1016/j.jhydrol.2021.126991
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Water quality in lowland rivers is sensitive to changes in flow during summer dry periods, when high temperatures and low pollutant dilution are problematic and may reduce oxygen concentrations to levels of ecological concern. A 10-year period of monitoring data was collated for a typical small lowland UK river. Two hourly-resolution applications of a process-based water quality model (QUESTOR) were made, with and without local knowledge, to establish whether specific information on stream channel hydraulics is an essential precursor to successful simulation. Results showed this information to be necessary, with considerably better goodness-of-fit statistics obtained when the local knowledge was used. In this regard, mean improvements in Nash-Sutcliffe Efficiency across all monitoring sites were from -0.33 to 0.18 and from 0.24 to 0.78 for dissolved oxygen and water temperature respectively. Percent bias was within 10% for the local model. The 10-year record also allowed a detailed characterisation of how changes in flow, as described by a comprehensive range of Indicators of Hydrological Alteration, relate to the water quality determinants. Analysis revealed these dynamics were also captured more realistically when the model was driven by local knowledge. The research concludes that river dissolved oxygen simulations driven by national-level information are of some value as screening tools, but model refinement supported by sufficient provision of local information is necessary when detailed simulations are required to support specific decision-making.
引用
收藏
页数:10
相关论文
共 39 条
[1]   A continental-scale hydrology and water quality model for Europe: Calibration and uncertainty of a high-resolution large-scale SWAT model [J].
Abbaspour, K. C. ;
Rouholahnejad, E. ;
Vaghefi, S. ;
Srinivasan, R. ;
Yang, H. ;
Klove, B. .
JOURNAL OF HYDROLOGY, 2015, 524 :733-752
[2]   Macrophytes enhance reach-scale metabolism on a daily, seasonal and annual basis in agricultural lowland streams [J].
Alnoee, Anette Baisner ;
Levi, Peter S. ;
Baattrup-Pedersen, Annette ;
Riis, Tenna .
AQUATIC SCIENCES, 2021, 83 (01)
[3]   A novel application of remote sensing for modelling impacts of tree shading on water quality [J].
Bachiller-Jareno, N. ;
Hutchins, M. G. ;
Bowes, M. J. ;
Charlton, M. B. ;
Orr, H. G. .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2019, 230 :33-42
[4]   Long term simulations of macronutrients (C, N and P) in UK freshwaters [J].
Bell, V. A. ;
Naden, P. S. ;
Tipping, E. ;
Davies, H. N. ;
Carnell, E. ;
Davies, J. A. C. ;
Dore, A. J. ;
Dragosits, U. ;
Lapworth, D. J. ;
Muhammed, S. E. ;
Quinton, J. N. ;
Stuart, M. ;
Tomlinson, S. ;
Wang, L. ;
Whitmore, A. P. ;
Wu, L. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 776 (776)
[5]  
Benyaha L., 2007, Canadian Water Resources Journal, V32, P179, DOI [10.4296/cwrj3203179, DOI 10.4296/CWRJ3203179]
[6]   Oxygen uptake by aquatic sediments measured with a novel non-invasive eddy-correlation technique [J].
Berg, P ;
Roy, H ;
Janssen, F ;
Meyer, V ;
Jorgensen, BB ;
Huettel, M ;
de Beer, D .
MARINE ECOLOGY PROGRESS SERIES, 2003, 261 :75-83
[7]   Hypoxia dynamics and spatial distribution in a low gradient river [J].
Carter, Alice M. ;
Blaszczak, Joanna R. ;
Heffernan, James B. ;
Bernhardt, Emily S. .
LIMNOLOGY AND OCEANOGRAPHY, 2021, 66 (06) :2251-2265
[8]   Application of artificial neural networks to the forecasting of dissolved oxygen content in the Hungarian section of the river Danube [J].
Csabragi, Anita ;
Molnar, Sandor ;
Tanos, Peter ;
Kovacs, Jozsef .
ECOLOGICAL ENGINEERING, 2017, 100 :63-72
[9]  
Defra, 2019, ABSTR REF REP PROG M
[10]   River temperature modelling: A review of process-based approaches and future directions [J].
Dugdale, Stephen J. ;
Hannah, David M. ;
Malcolm, Iain A. .
EARTH-SCIENCE REVIEWS, 2017, 175 :97-113