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Developing Computer Simulation Models for Estimating Risks of pesticide use: Research vs. user Needs

Published online by Cambridge University Press:  12 June 2017

Anthony S. Donigian Jr.
Affiliation:
AQUA TERRA Consultants, Mountain View, CA
Robert F. Carsel
Affiliation:
EPA Environ. Res. Lab., Athens, GA

Abstract

The use of models for regulatory purposes requires accurate descriptions of important chemical fate processes, techniques for applying models for specific regulatory issues, techniques for parameterizing the model, and sufficient model distribution and support. Researchers (i.e. model developers), on the other hand, want to conceive more and more complex, sophisticated models in order to better represent the important environmental processes; unfortunately this invariably tends to lead to models with greater data requirements, parameters that are difficult to evaluate, greater expertise needed for application, and greater computational requirements, all of which makes for more difficult model application and use. The development of usable models for both current needs and future regulatory requirements demands that we achieve a balance between these ‘research needs' and ‘user needs'. Software engineering and code development issues can help to establish the needed bridge between research and user needs so that future models can more quickly escape the research arena and satisfy user needs as effective regulatory tools.

Type
Symposium
Copyright
Copyright © 1990 by the Weed Science Society of America 

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References

Literature Cited

1. Carsel, R. F., Smith, C. N., Mulkey, L. A., Dean, J. D., and Jowise, P. 1984. User's Manual for the Pesticide Root Zone Model (PRZM): Release 1. U. S. Environ. Prot. Agency, Environ. Res. Lab., Athens, GA. EPA-600/3-84-109.Google Scholar
2. Dean, J. D., Huyakorn, P. S., Donigian, A. S., Voos, K. A., Schanz, R. W., Meeks, Y. J., and Carsel, R. F. 1989. Risk of unsaturated/saturated transport and transformation of chemical concentrations (RUSTIC) Volume I: theory and code verification. U. S. Environ. Prot. Agency Rep. EPA/600/3-89/048a.Google Scholar
3. Dean, J. D., Jowise, P. P., and Donigian, A. S. 1984. Leaching Evaluation of Agricultural Chemicals (LEACH) handbook. U. S. Environ. Prot. Agency Rep. No. EPA-600/3-84-0068. U. S. Environ. Prot. Lab., Athens, GA.Google Scholar
4. Donigian, A. S. Jr., and Crawford, N. H. 1976. Modeling Pesticides and Nutrients on Agricultural Lands, Office of Research and Development, U. S. Environ. Prot Agency. EPA-600/3-76-043.Google Scholar
5. Donigian, A. S. Jr. and Davis, H. H. Jr. 1978. User's Manual for Agricultural Runoff Management (ARM) Model, U. S. Environ. Prot. Agency. EPA-600/3-78-080.Google Scholar
6. Donigian, A. S. Jr., Meier, D. W., and Jowise, P. P. 1986. Stream Transport and Agricultural Runoff of Pesticides for Exposure Assessment: A Methodology, U. S. Environ. Res. Lab., Athens, GA. EPA-600/3-86-011a.Google Scholar
7. Imhoff, J. C., Carsel, R. F., Kittle, J. L. Jr., and Hummel, P. R. 1990. Data Base Analyzer and Parameter Estimater (DBAPE) interactive computer program user's manual. U. S. Environmental Protection Agency Rep. No. EPA/600/3-89/083. USEPA Laboratory, Athens, GA.Google Scholar
8. Johanson, R. C., Imhoff, J. C., Kittle, J. L., and Donigian, A. S. Jr. 1984. Hydrological simulation program—fortran (HSPF): User's Manual for Release 8.0. U. S. Environ. Prot. Agency Rep. No. EPA-600/3-84-066, June 1984. 767 pp.Google Scholar
9. Lumb, A. M., Kittle, J. L. Jr., and Flynn, K. M. 1990, User's Manual for ANNIE, a Computer Program for Interactive Hydrologic Analysis and Data Management. U. S. Geological Survey, Water Res. Invest. Rep. 89-4080, USGS, Reston, VA.Google Scholar