Water Quality Modeling as a Management Tool for Striped Bass and Hybrid Striped Bass

被引:0
|
作者
Ruane, Richard J. [1 ]
Hauser, Gary E.
Sawyer, Andrew F. [1 ]
机构
[1] Reservoir Environm Management Inc, Chattanooga, TN 37403 USA
关键词
SUMMER MORTALITY; RESERVOIR;
D O I
暂无
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
Striped bass Morone saxatilis habitat in water bodies is affected by many factors such as hydrological and meteorological conditions, eutrophication, reservoir operations, dam outlet levels, lake characteristics, and watershed characteristics. The CE-QUAL-W2 water quality model is a tool that can integrate the effects of all these factors on striped bass habitat. Once a baseline model is calibrated, it can be used to diagnose constraints to striped bass habitat, identify potential enhancement measures, and evaluate ways to alleviate the impacts of conflicting water uses. Importantly, the model integrates the best available information within the best available scientific method of evaluating water quality or habitat issues. Centering the discussion around an agreed-upon scientific tool helps to ensure that the subjective concerns expressed by stakeholders are objectively evaluated. In the three case studies explored in this paper, a change of hydropower operation was agreed to for Lake Murray, South Carolina that would help maintain summer habitat for striped bass; simulations indicated that hydropower operations were not a major factor affecting striped bass habitat in Claytor Lake, Virginia; and an efficient oxygen injection system was designed for J. Strom Thurmond Reservoir, South Carolina and Georgia to mitigate for habitat loss associated with a change in hydropower operation. Water quality modeling is an important tool for objectively evaluating the maintenance or enhancement of striped bass and hybrid striped bass (white bass M. chrysops x striped bass) habitat in reservoirs.
引用
收藏
页码:161 / 179
页数:19
相关论文
共 50 条
  • [1] Striped bass and hybrid striped bass culture
    Woods, LC
    AQUACULTURE IN THE 21ST CENTURY, 2005, 46 : 339 - 353
  • [2] Biology and Management of Inland Striped Bass and Hybrid Striped Bass Preface
    Bulak, James S.
    Coutant, Charles C.
    Rice, James A.
    BIOLOGY AND MANAGEMENT OF INLAND STRIPED BASS AND HYBRID STRIPED BASS, 2013, 80 : IX - XII
  • [3] Regulation of Striped Bass and Hybrid Striped Bass Fisheries in the United States
    Collier, William R.
    Bettoli, Phillip W.
    Scholten, George D.
    Churchill, Timothy N.
    BIOLOGY AND MANAGEMENT OF INLAND STRIPED BASS AND HYBRID STRIPED BASS, 2013, 80 : 449 - 460
  • [4] Economics of Recreational Fisheries for Inland Striped Bass and Hybrid Striped Bass
    Whitehead, John C.
    BIOLOGY AND MANAGEMENT OF INLAND STRIPED BASS AND HYBRID STRIPED BASS, 2013, 80 : 551 - 558
  • [5] DETECTION OF STOCKING MORTALITY IN STRIPED BASS AND HYBRID STRIPED BASS CULTURE PONDS
    TURNER, CJ
    PROGRESSIVE FISH-CULTURIST, 1988, 50 (02): : 124 - 126
  • [6] OVERWINTERING SUCCESS OF STRIPED BASS AND HYBRID STRIPED BASS HELD IN CAGES IN MARYLAND
    HARRELL, RM
    MERITT, DW
    HOCHHEIMER, JN
    WEBSTER, DW
    MILLER, WD
    PROGRESSIVE FISH-CULTURIST, 1988, 50 (02): : 120 - 121
  • [7] Catch-and-Release Mortality of Inland Striped Bass and Hybrid Striped Bass
    Bettinger, Jason M.
    Wilde, Gene R.
    BIOLOGY AND MANAGEMENT OF INLAND STRIPED BASS AND HYBRID STRIPED BASS, 2013, 80 : 473 - 499
  • [8] FARMING HYBRID STRIPED BASS
    HODSON, RG
    SMITH, TIJ
    OCEANUS, 1988, 31 (03) : 70 - 74
  • [9] Performance of domesticated striped bass Morone saxatilis, palmetto bass and backcross hybrid striped bass (sunshine bass ♀ x striped bass ♂) raised in a tank culture system
    Jenkins, WE
    Heyward, LD
    Smith, TIJ
    JOURNAL OF THE WORLD AQUACULTURE SOCIETY, 1998, 29 (04) : 505 - 509
  • [10] BIOLOGY AND MANAGEMENT OF STRIPED BASS
    COOPER, JC
    MERRINER, JV
    TRANSACTIONS OF THE AMERICAN FISHERIES SOCIETY, 1981, 110 (01) : 93 - 94