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  • Volume 37, Issue 2

Coliform transport in a pristine reservoir: modeling and field studies

Elisa Garvey, John E. Tobiason, Michael Hayes, Evelyn Wolfram, David A. Reckhow, James W. Male
Published January 1998, 37 (2) 137-144;
Elisa Garvey
Department of Civil and Environmental Engineering, Marston Hall, University of Massachusetts, Amherst, MA 01003, USA
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John E. Tobiason
Department of Civil and Environmental Engineering, Marston Hall, University of Massachusetts, Amherst, MA 01003, USA
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Michael Hayes
Department of Civil and Environmental Engineering, Marston Hall, University of Massachusetts, Amherst, MA 01003, USA
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Evelyn Wolfram
Department of Civil and Environmental Engineering, Marston Hall, University of Massachusetts, Amherst, MA 01003, USA
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David A. Reckhow
Department of Civil and Environmental Engineering, Marston Hall, University of Massachusetts, Amherst, MA 01003, USA
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James W. Male
Department of Civil and Environmental Engineering, Marston Hall, University of Massachusetts, Amherst, MA 01003, USA
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Abstract

This paper reports on field studies and model development aimed at understanding coliform fate and transport in the Quabbin Reservoir, an oligotrophic drinking water supply reservoir. An investigation of reservoir currents suggested the importance of wind driven phenomena, and that both lateral and vertical circulation patterns exist. In-situ experiments of coliform decay suggested dependence on light intensity and yielded an appropriate decay coefficient to be used in CE-QUAL-W2, a two-dimensional hydrodynamic and water quality model. Modeling confirmed the sensitivity of reservoir outlet concentration to vertical variability within the reservoir, meteorological conditions, and location of coliform source.

  • Coliform fate and transport
  • coliform decay
  • hydrodynamic modeling
  • water currents
  • water quality modeling
  • © IWA Publishing 1998

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Water Science and Technology: 77 (7)
  Volume 37, Issue 2

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Coliform transport in a pristine reservoir: modeling and field studies
Elisa Garvey, John E. Tobiason, Michael Hayes, Evelyn Wolfram, David A. Reckhow, James W. Male
Water Science and Technology Jan 1998, 37 (2) 137-144;
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Coliform transport in a pristine reservoir: modeling and field studies
Elisa Garvey, John E. Tobiason, Michael Hayes, Evelyn Wolfram, David A. Reckhow, James W. Male
Water Science and Technology Jan 1998, 37 (2) 137-144;

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Keywords

Coliform fate and transport
coliform decay
hydrodynamic modeling
water currents
water quality modeling
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