Computer model improves real-time management of water quality

Members of the San Joaquin River Management Program's Water Quality Subcommittee have developed a water-quality forecasting model to help improve the timing, coordination and management of agricultural drainage and reservoir releases into the San Joaquin River. The go...

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Main Authors: Nigel W.T. Quinn, Leslie F. Grober, Jo-Anne Kipps, Carl W. Chen, Earle Cummings
Format: Article
Language:English
Published: University of California Agriculture and Natural Resources 1997-09-01
Series:California Agriculture
Online Access:http://calag.ucanr.edu/archive/?article=ca.v051n05p14
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spelling doaj-9b695bf1f68c4bb1acebdd289783faa52020-11-24T21:36:33ZengUniversity of California Agriculture and Natural ResourcesCalifornia Agriculture0008-08452160-80911997-09-01515142010.3733/ca.v051n05p1410.3733/cav051n05_9Computer model improves real-time management of water qualityNigel W.T. Quinn0Leslie F. Grober1Jo-Anne Kipps2Carl W. Chen3Earle Cummings4N.W.T. Quinn is Staff Geological Scientist, Lawrence Berkeley National Laboratory, and Water Resources Engineer, U.S. Bureau of ReclamationL.F. Grober is Water Quality Control Engineer, California Regional Water Quality Control BoardJ. Kipps is Associate Engineer, Department of Water ResourcesC. W. Chen is President, Systech Inc.E. Cummings is Wetlands Coordinator, Department of Water ResourcesMembers of the San Joaquin River Management Program's Water Quality Subcommittee have developed a water-quality forecasting model to help improve the timing, coordination and management of agricultural drainage and reservoir releases into the San Joaquin River. The goal of this effort is to improve water quality in the San Joaquin River and to meet federal and state water-quality objectives for salt, boron and selenium. A graphical user interface has been developed and features have been added to make this computer software useful and accessible to a wide range of decision makers.http://calag.ucanr.edu/archive/?article=ca.v051n05p14
collection DOAJ
language English
format Article
sources DOAJ
author Nigel W.T. Quinn
Leslie F. Grober
Jo-Anne Kipps
Carl W. Chen
Earle Cummings
spellingShingle Nigel W.T. Quinn
Leslie F. Grober
Jo-Anne Kipps
Carl W. Chen
Earle Cummings
Computer model improves real-time management of water quality
California Agriculture
author_facet Nigel W.T. Quinn
Leslie F. Grober
Jo-Anne Kipps
Carl W. Chen
Earle Cummings
author_sort Nigel W.T. Quinn
title Computer model improves real-time management of water quality
title_short Computer model improves real-time management of water quality
title_full Computer model improves real-time management of water quality
title_fullStr Computer model improves real-time management of water quality
title_full_unstemmed Computer model improves real-time management of water quality
title_sort computer model improves real-time management of water quality
publisher University of California Agriculture and Natural Resources
series California Agriculture
issn 0008-0845
2160-8091
publishDate 1997-09-01
description Members of the San Joaquin River Management Program's Water Quality Subcommittee have developed a water-quality forecasting model to help improve the timing, coordination and management of agricultural drainage and reservoir releases into the San Joaquin River. The goal of this effort is to improve water quality in the San Joaquin River and to meet federal and state water-quality objectives for salt, boron and selenium. A graphical user interface has been developed and features have been added to make this computer software useful and accessible to a wide range of decision makers.
url http://calag.ucanr.edu/archive/?article=ca.v051n05p14
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AT carlwchen computermodelimprovesrealtimemanagementofwaterquality
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