Adel Abdallah

WESTERN STATES WATER COUNCIL | Water Data Exchange Program Manager

Subject Areas: Hydroinformatics, Water Resources Management

 Recent Activity

ABSTRACT:

This resource includes an SQLite file for the Water Management Data Model (WaMDaM) that stores data for two existing models; the Bear River Watershed that spans Utah and Idaho, and the Weber Bear River Watershed in Utah.

The data is produced from Chapter 3 of my dissertation
https://digitalcommons.usu.edu/etd/7797/

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ABSTRACT:

Latitude Longitude, and basic metadata for sites in Water Data Exchange WaDE2.0 API https://app.swaggerhub.com/apis/WesternStatesWater/WaDE2.0/1.0.0

WaDE will update sites. This data is intended only for experimental use in association with the geoconnex.us project (https://github.com/internetofwater/geoconnex.us)
w
wade.geojson was created with code here: https://github.com/dblodgett-usgs/geoconnex_prep
wade_[state].geojson and wade_sites.gpkg are hosted at https://wade-test.geoconnex.us

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ABSTRACT:

test

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ABSTRACT:

WEAP and WASH Bear River Systems Models

This resource includes an SQLite file for the Water Management Data Model (WaMDaM) that stores data for two models in the Bear River Watershed in Utah.

The first model is the Watershed Area of Suitable Habitat (WASH) optimization model that allocates water to maximize watershed habitat areas for the Lower Bear River Watershed (Utah portion) (Alafifi and Rosenberg, 2020). The WASH model uses the General Algebraic Modeling System (GAMS) engine which has no user interface.

The second model is a WEAP simulation model that allocates water by water right priority within the Bear River Watershed (Utah and Idaho portions). WEAP has a proprietary database and does not support data publication. Both the WASH and WEAP models were developed from a predecessor 2010 Utah Division of Water Resources model for the lower Bear River basin that had a plain text input file and Fortran computational engine which was depreciated. The WASH model disaggregated irrigation demands within Cache Valley, Utah while the WEAP model extended the model domain upstream to Idaho and Bear Lake.

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ABSTRACT:

Monterrey Mexico model From OpenAgua

This resource includes an SQLite file for the Water Management Data Model (WaMDaM) that stores data for the water allocation model for the Monterrey metropolitan area, Mexico. The model is imported from OpenAgua using the WaMDaM Wizard. For more info, visit OpenAgua here https://www.openagua.org/home

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 Contact

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Resources
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Resource Resource
WaMDaM-Hydra plugin
Created: Feb. 1, 2018, 9:45 p.m.
Authors: Adel Abdallah

ABSTRACT:

This is a demo of the HydroShare Python Notebook Server for WaMDaM-Hydra plugin

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Resource Resource
WaDE API calls
Created: Feb. 2, 2018, 9:59 p.m.
Authors: Adel Abdallah

ABSTRACT:

This is a demo of the HydroShare Python Notebook Server for WaDE API

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Resource Resource
WaMDaM_Project_All_files_July2018
Created: July 5, 2018, 6:23 p.m.
Authors: Adel Abdallah ยท David E Rosenberg

ABSTRACT:

The Water Management Data Model (WaMDaM) is an information model and a couple of supporting software ecosystem. WaMDaM tools are designed to organize, identify, and compare multiple systems water management data in a single database. This resource contains a snapshot of all the files and source code of WaMDaM Project by July 2018 as posted on GitHub at https://github.com/WamdamProject/

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Resource Resource
Monterrey Mexico model From OpenAgua
Created: Jan. 22, 2019, 5:52 a.m.
Authors: Adel Abdallah

ABSTRACT:

Monterrey Mexico model From OpenAgua

This resource includes an SQLite file for the Water Management Data Model (WaMDaM) that stores data for the water allocation model for the Monterrey metropolitan area, Mexico. The model is imported from OpenAgua using the WaMDaM Wizard. For more info, visit OpenAgua here https://www.openagua.org/home

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Resource Resource
WEAP and WASH Bear River Systems Models
Created: Jan. 22, 2019, 4:18 a.m.
Authors: Adel Abdallah

ABSTRACT:

WEAP and WASH Bear River Systems Models

This resource includes an SQLite file for the Water Management Data Model (WaMDaM) that stores data for two models in the Bear River Watershed in Utah.

The first model is the Watershed Area of Suitable Habitat (WASH) optimization model that allocates water to maximize watershed habitat areas for the Lower Bear River Watershed (Utah portion) (Alafifi and Rosenberg, 2020). The WASH model uses the General Algebraic Modeling System (GAMS) engine which has no user interface.

The second model is a WEAP simulation model that allocates water by water right priority within the Bear River Watershed (Utah and Idaho portions). WEAP has a proprietary database and does not support data publication. Both the WASH and WEAP models were developed from a predecessor 2010 Utah Division of Water Resources model for the lower Bear River basin that had a plain text input file and Fortran computational engine which was depreciated. The WASH model disaggregated irrigation demands within Cache Valley, Utah while the WEAP model extended the model domain upstream to Idaho and Bear Lake.

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App Connector App Connector
OpenAgua
Created: April 21, 2019, 8:35 p.m.
Authors: Adel Abdallah

ABSTRACT:

test

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Resource Resource
WaDE Sites as of 2024-03-20
Created: May 15, 2020, 7:24 p.m.
Authors: Onda, Kyle

ABSTRACT:

Latitude Longitude, and basic metadata for sites in Water Data Exchange WaDE2.0 API https://app.swaggerhub.com/apis/WesternStatesWater/WaDE2.0/1.0.0

WaDE will update sites. This data is intended only for experimental use in association with the geoconnex.us project (https://github.com/internetofwater/geoconnex.us)
w
wade.geojson was created with code here: https://github.com/dblodgett-usgs/geoconnex_prep
wade_[state].geojson and wade_sites.gpkg are hosted at https://wade-test.geoconnex.us

Show More
Resource Resource
Bear and Weber Rivers WEAP Models Input Data
Created: Jan. 3, 2021, 11:10 p.m.
Authors: Adel Abdallah

ABSTRACT:

This resource includes an SQLite file for the Water Management Data Model (WaMDaM) that stores data for two existing models; the Bear River Watershed that spans Utah and Idaho, and the Weber Bear River Watershed in Utah.

The data is produced from Chapter 3 of my dissertation
https://digitalcommons.usu.edu/etd/7797/

Show More