Principles of Surface Water Quality Modeling and ControlThis book teaches the fundamentals and principles which underlie the mathematical modeling techniques used to analyze the quality of surface waters. The text first provides an overview of the different bodies of water in which water quality problems need to be addressed before examining specific problems that occur across all bodies of water. |
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Results 1-3 of 89
Page 30
... river systems , for example , natural salt springs in the Arkansas - White - Red River basins and TDS buildup in the Colorado River basin . 4. Chemicals that are potentially toxic ... River 30 2 / RIVERS AND STREAMS River Hydrology and Flow.
... river systems , for example , natural salt springs in the Arkansas - White - Red River basins and TDS buildup in the Colorado River basin . 4. Chemicals that are potentially toxic ... River 30 2 / RIVERS AND STREAMS River Hydrology and Flow.
Page 44
... River or river basin b d f Great Plains and Southwest 0.40 0.34 0.26 Tennessee Valley 0.48 0.46 Scioto River , Susquehanna basin , PA 0.30 0.70 Willamette River , Eugene to Oregon City , OR 0.61 Potomac River ( MP340-116 ) 0.40 0.47 0.13 ...
... River or river basin b d f Great Plains and Southwest 0.40 0.34 0.26 Tennessee Valley 0.48 0.46 Scioto River , Susquehanna basin , PA 0.30 0.70 Willamette River , Eugene to Oregon City , OR 0.61 Potomac River ( MP340-116 ) 0.40 0.47 0.13 ...
Page 54
... river flow . This is a dilution effect . If the river flow is increased , a given mass discharge W will result in a decreased concentration in the river due to the diluting effect of the increased river flow . Equations 2.18 and 2.19 ...
... river flow . This is a dilution effect . If the river flow is increased , a given mass discharge W will result in a decreased concentration in the river due to the diluting effect of the increased river flow . Equations 2.18 and 2.19 ...
Contents
Rivers and Streams | 29 |
Estuaries Bays and Harbors | 91 |
Lakes | 173 |
Copyright | |
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Principles of Surface Water Quality Modeling and Control Robert V. Thomann,John A. Mueller No preview available - 1987 |
Common terms and phrases
analysis approximately aquatic assumed average bacteria biomass calculated CBOD CBODU chemical chlorophyll coliform completely mixed concentration decay rate deficit depth discharge dispersion coefficient dissolved oxygen distribution downstream effect effluent epilimnion equation estimate estuary eutrophication Figure finite finite difference flow ft² given growth Hydroscience hypolimnion input K₁ lake Lake Huron Lake Ontario lb/day load loss rate m/day m³/s mass balance maximum mg/l NBOD nitrification nitrogen nutrient organic outfall parameters particulate partition coefficient phosphorus photosynthesis phytoplankton plant point source ratio reaeration reduced result river runoff salinity Sample Problem saturation sediment segment shown in Fig steady stream substance surface Table Thomann tidal Toro total phosphorus toxicant treatment upstream uptake USEPA V₁ values variable velocity waste water body water column water quality water quality modeling water temperature zero zooplankton µg/l