Challenges of modelling water quality in a shallow prairie lake with seasonal ice cover

被引:16
|
作者
Terry, Julie A. [1 ]
Sadeghian, Amir [1 ]
Baulch, Helen M. [1 ]
Chapra, Steven C. [2 ]
Lindenschmidt, Karl-Erich [1 ]
机构
[1] Univ Saskatchewan, Global Inst Water Secur, Saskatoon, SK S7N 3H5, Canada
[2] Tufts Univ, Dept Civil & Environm Engn, Medford, MA 02155 USA
基金
加拿大自然科学与工程研究理事会;
关键词
CE-QUAL-W2; Shallow lake; Modelling; Ice cover; Albedo; Water quality; CE-QUAL-W2; RESERVOIR; DEPTH;
D O I
10.1016/j.ecolmodel.2018.06.002
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The link between under ice processes and open water eutrophication dynamics has been proven in the field. Water quality models still lack the capability to capture the connection between both environments. The hydrodynamic-ecological model CE-QUAL-W2 is being applied to a eutrophic drinking water reservoir on the Canadian Prairies as part of larger collaborative research project. CE-QUAL-W2 is one of the few water quality models that includes an ice algorithm, yet is restricted by a fixed albedo coefficient. Field studies have shown albedo to change through the ice cover season - varying the solar radiation that reaches the ice-water interface as a result. In order to better represent the light and heat environment during the under ice periods we modify the ice algorithm to incorporate a variable albedo rate. While assessing the modified version of CE-QUAL-W2 on the reservoir we encounter a number of challenges during the calibration process. These challenges pertain to difficulties with modelling the under ice environment, and with modelling shallow lakes and reservoirs. We recommend a targeted monitoring program to supplement available data that will reduce the uncertainty associated with the results of the reservoir model.
引用
收藏
页码:43 / 52
页数:10
相关论文
共 50 条
  • [1] Stable isotopes track biogeochemical processes under seasonal ice cover in a shallow, productive lake
    Gammons, Christopher H.
    Henne, William
    Poulson, Simon R.
    Parker, Stephen R.
    Johnston, Tyler B.
    Dore, John E.
    Boyd, Eric S.
    BIOGEOCHEMISTRY, 2014, 120 (1-3) : 359 - 379
  • [2] Stable isotopes track biogeochemical processes under seasonal ice cover in a shallow, productive lake
    Christopher H. Gammons
    William Henne
    Simon R. Poulson
    Stephen R. Parker
    Tyler B. Johnston
    John E. Dore
    Eric S. Boyd
    Biogeochemistry, 2014, 120 : 359 - 379
  • [3] A history evaluation modelling and forecastation of water quality in shallow lake
    Xu, Ligang
    Pan, Jizheng
    Jiang, Jiahu
    Zhao, Hongbo
    Liu, Caihong
    WATER AND ENVIRONMENT JOURNAL, 2013, 27 (04) : 514 - 523
  • [4] Seasonal variation of water quality parameters and plankton in a shallow Greek lake
    Kagalou, I
    Petridis, D
    Tsimarakis, G
    JOURNAL OF FRESHWATER ECOLOGY, 2003, 18 (02) : 199 - 206
  • [5] Interannual variability of ice and snow cover of a small shallow lake
    Zdorovennov, Roman
    Palshin, Nikolay
    Zdorovennova, Galina
    Efremova, Tatiana
    Terzhevik, Arkady
    ESTONIAN JOURNAL OF EARTH SCIENCES, 2013, 62 (01) : 26 - 32
  • [6] Seasonal water quality of shallow and eutrophic Lake Pamvotis, Greece: implications for restoration
    Romero, JR
    Kagalou, I
    Imberger, J
    Hela, D
    Kotti, M
    Bartzokas, A
    Albanis, T
    Evmirides, N
    Karkabounas, S
    Papagiannis, J
    Bithava, A
    HYDROBIOLOGIA, 2002, 474 (1-3) : 91 - 105
  • [7] Seasonal water quality of shallow and eutrophic Lake Pamvotis, Greece: implications for restoration
    José R. Romero
    Iphigenia Kagalou
    Jörg Imberger
    Dimitra Hela
    Melina Kotti
    Aristides Bartzokas
    Triantafyllos Albanis
    Nicholaos Evmirides
    Spiros Karkabounas
    Joannis Papagiannis
    Amalia Bithava
    Hydrobiologia, 2002, 474 : 91 - 105
  • [8] Seasonal variability of thermal regime in a shallow ice covered lake
    Maher, OA
    Malm, J
    NORDIC HYDROLOGY, 2003, 34 (1-2) : 107 - 124
  • [9] Methane hydrate emergence from Lake Baikal: direct observations, modelling, and hydrate footprints in seasonal ice cover
    N. G. Granin
    I. A. Aslamov
    V. V. Kozlov
    M. M. Makarov
    G. Kirillin
    D. F. McGinnis
    K. M. Kucher
    V. V. Blinov
    V. G. Ivanov
    I. B. Mizandrontsev
    A. A. Zhdanov
    A. S. Anikin
    M. N. Granin
    R. Yu. Gnatovsky
    Scientific Reports, 9
  • [10] Methane hydrate emergence from Lake Baikal: direct observations, modelling, and hydrate footprints in seasonal ice cover
    Granin, N. G.
    Aslamov, I. A.
    Kozlov, V. V.
    Makarov, M. M.
    Kirillin, G.
    McGinnis, D. F.
    Kucher, K. M.
    Blinov, V. V.
    Ivanov, V. G.
    Mizandrontsev, I. B.
    Zhdanov, A. A.
    Anikin, A. S.
    Granin, M. N.
    Gnatovsky, R. Yu
    SCIENTIFIC REPORTS, 2019, 9 (1)