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Guide for authors - Agricultural Water Management - ISSN
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- Daily Life in the Hellenistic Age: From Alexander to Cleopatra.
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- Cardiac arrhythmias 2005: proceedings of the 9th international workshop on cardiac arrhythmias - Venice, October 2-5 2005;
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Guide for Authors
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Water Management Models: A Guide to Software / Edition 1
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Environmental Modelling & Software
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Present the authors' affiliation addresses where the actual work was done below the names. It pertains to long-throated flumes which describes a broad class of critical-flow flumes and broad-crested weir devices also referred to as the Replogle Flume or ramp weir used to measure flow in open channels. These devices are adaptable to a variety of measurement applications in both natural and man-made channels, and both new and existing canal systems. Water Conservation Lab. The application provides a Windows interface to those programs and will also serve as the foundation for future development.
WinSRFR is a tool to help evaluate and design border, basin, and furrow irrigation systems. The tool will assist the user in determining the optimum efficiencies and water utilization. Based on user input the model will calculate advance times, recession times, infiltration depths, runoff, deep percolation, and will provide graphical display of the efficiency and options evaluated.
The model is targeted for use by the field office technicians and engineers. Contact local ITS personnel for installation. Natural Resources Conservation Service. Stay Connected. Loading Tree The manual contains the principles, theory, user menu and examples of application. It can be found on the articles page , from where it can be downloaded.
The table of contents of the manual can be seen on-line. Also, the introduction of the SahysMod manual can be viewed on line as a. PDF document. In addition, a PowerPoint slide show can be viewed on-line or downloaded.
Publications in which SahysMod is used can be downloaded from this list. The required data per polygon are polygonal characteristics, hydraulic conductivity and soil porosity. Further data needed are leaching efficiency, parameters of the drainage system, and capillary rise factors. Seasonal data encompass rainfall, irrigation and evaporation.
The depth of the watertable can be seen in the output in a row of nodes at a certain time, or in one node over the whole time period. The same holds for the soil salinity in the different soil layers, the amount of groundwater flow and the irrigation efficiency. There are many more output data. Output graphs can be seen for polygons at a certain time as well as for period of time in a certain polygon. This graph shows the fluctuation in time of various components of groundwater flow in one of the polygons.
The soil salinity in the irrigated alluvial fan of Garmsar Iran was simulated with SahysMod using a nodal network and an example of results is shown here for Cr4 being the soil salinity of, from year to year, fully rotated cropped areas.