USU irrigation main system hydraulic model: Replication of modeling capability in other countries

This report concerns the requirements for replicating the capability for hydraulic modeling of irrigation main systems with the USU Main System Hydraulic Model at different project sites and different countries. The computerized model was developed at Utah State University (USU) under the Water Mana...

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Detalles Bibliográficos
Autores principales: Merkley, G.P., Pojsoontorn, C., Kawsard, K., Walker, W.R., Skogerboe, G.V.
Formato: Libro
Lenguaje:Inglés
Publicado: Utah State University 1988
Materias:
Acceso en línea:https://hdl.handle.net/10568/36707
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author Merkley, G.P.
Pojsoontorn, C.
Kawsard, K.
Walker, W.R.
Skogerboe, G.V.
author_browse Kawsard, K.
Merkley, G.P.
Pojsoontorn, C.
Skogerboe, G.V.
Walker, W.R.
author_facet Merkley, G.P.
Pojsoontorn, C.
Kawsard, K.
Walker, W.R.
Skogerboe, G.V.
author_sort Merkley, G.P.
collection Repository of Agricultural Research Outputs (CGSpace)
description This report concerns the requirements for replicating the capability for hydraulic modeling of irrigation main systems with the USU Main System Hydraulic Model at different project sites and different countries. The computerized model was developed at Utah State University (USU) under the Water Management Synthesis II Project, funded and assisted by USAID through the Consortium for International Development. The information contained herein complements that which is found in the user's manual for the model
format Libro
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language Inglés
publishDate 1988
publishDateRange 1988
publishDateSort 1988
publisher Utah State University
publisherStr Utah State University
record_format dspace
spelling CGSpace367072023-02-15T12:00:19Z USU irrigation main system hydraulic model: Replication of modeling capability in other countries Merkley, G.P. Pojsoontorn, C. Kawsard, K. Walker, W.R. Skogerboe, G.V. simulation models hydraulics mathematical models irrigation programs irrigation canals computer techniques flow regulators water control small scale systems This report concerns the requirements for replicating the capability for hydraulic modeling of irrigation main systems with the USU Main System Hydraulic Model at different project sites and different countries. The computerized model was developed at Utah State University (USU) under the Water Management Synthesis II Project, funded and assisted by USAID through the Consortium for International Development. The information contained herein complements that which is found in the user's manual for the model 1988 2014-06-12T13:49:19Z 2014-06-12T13:49:19Z Book https://hdl.handle.net/10568/36707 en Limited Access Utah State University Merkley, G. P.; Pojsoontorn, C.; Kawsard, K.; Walker, W. R.; Skogerboe, G. V. 1988. USU irrigation main system hydraulic model: Replication of modeling capability in other countries. Logan, UT, USA: Utah State University. ix, 76p. (WMS report no.84)
spellingShingle simulation models
hydraulics
mathematical models
irrigation programs
irrigation canals
computer techniques
flow regulators
water control
small scale systems
Merkley, G.P.
Pojsoontorn, C.
Kawsard, K.
Walker, W.R.
Skogerboe, G.V.
USU irrigation main system hydraulic model: Replication of modeling capability in other countries
title USU irrigation main system hydraulic model: Replication of modeling capability in other countries
title_full USU irrigation main system hydraulic model: Replication of modeling capability in other countries
title_fullStr USU irrigation main system hydraulic model: Replication of modeling capability in other countries
title_full_unstemmed USU irrigation main system hydraulic model: Replication of modeling capability in other countries
title_short USU irrigation main system hydraulic model: Replication of modeling capability in other countries
title_sort usu irrigation main system hydraulic model replication of modeling capability in other countries
topic simulation models
hydraulics
mathematical models
irrigation programs
irrigation canals
computer techniques
flow regulators
water control
small scale systems
url https://hdl.handle.net/10568/36707
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