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ADIC QLS-4144 TAPE LIBRARY DRIVER
Environmental Protection Agency, have been grouped into five series. These five broad categories were established to ADIC QLS-4144 Tape Library further development a,nd application of environmental technology. Elimination of traditional grouping was consciously planned to foster technology transfer and a maximum interface in related fields.
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The five series are: Environmental Health Effects Research 2. Environmental Protection Technology 3. Ecological Research 4.
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Environmental Monitoring 5. This series describes research on the effects of pollution on humans, plant and animal species, and materials.
Problems are assessed for their long- and short-term influences. Investigations include formation, transport, and pathway studies ADIC QLS-4144 Tape Library determine the fate of pollutants and their effects. This work provides the technical basis for setting standards to minimize undesirable changes in living organisms in the aquatic, terrestrial, and atmospheric environments. This document is available to the public through the National Technical Informa- tion Service, Springfield, Virginia Donigian, Jr. Norman H. Crawford Hydrocomp Inc.
R Project Officer Lee A. Research Laboratory, U. Environmental Protection Agency, and approved for publication. Approval does not signify that the contents necessarily reflect the views and policies of the U. Environmental Protection Agency, nor does mention of trade names or commercial products consti- tute endorsement or recommendation for use. The Nonpoint Source Pollutant Loading NFS Model is comprised of subprograms to represent the hydrologic response of a watershed, including snow accumulation and melt, ADIC QLS-4144 Tape Library the processes of pollutant accumulation, generation, and washoff from the land surface. The hydrologic algorithms, derived from the Stanford Watershed Model and the Hydrocomp Simulation Program, have been previously tested and verified on numerous watersheds across the country.
The simulation of nonpoint pollutants is based on sediment as a pollutant indicator. Daily accumulation ADIC QLS-4144 Tape Library sediment, generation of sediment fines by raindrop impact, and transport of available sediment material by overland flow is simulated for both pervious and impervious areas. The NPS Model can simulate ADIC QLS-4144 Tape Library source pollution from a maximum of five different land use categories in a single operation. In addition to runoff, water temperature, dissolved oxygen, and sediment, the NPS Model allows for simulation of up to five user-specified pollutants from each land use category. Pollutant parameters are specified separately for pervious and impervious areas within each land use and can vary with the month of the year to represent seasonal pollution problems.
Thus, the methodology is sufficiently flexible to accommodate a variety of land use and land surface conditions. The hydrologic simulation results were good while the simulation of nonpoint pollutants was fair to good. The use of sediment as a pollutant indicator appears to be acceptable for nonsoluble and partially soluble pollutants; however, highly soluble pollutants may not be directly related to sediment loss and may demonstrate significant deviation from ADIC QLS-4144 Tape Library values. The scarcity of adequate water quality data severely hampered complete testing and verification of the NPS Model. In essence the results indicate that the Model can be calibrated to provide estimates of nonpoint pollutant loadings to stream channels. A detailed user manual is provided in Appendix A to assist potential users.
Parameter definitions and guidelines for parameter evaluation and calibration are included. Limitations of the Model and recommendations i i i for future work and application are presented, and possible uses of the NFS Model are discussed. Work was completed as of February The authors gratefully acknowledge the assistance and coordination ADIC QLS-4144 Tape Library by Mr.
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Lee A. The following individuals and associated organizations were instrumental in supplying data for the various test watersheds: Curtis Gunter, U. In addition to the principal investigator, Dr.
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