Abu Dhabi water budget model: technical documentation and user guide

Technical report


Mohamed, M., El-Shorbagy, W., Chowdhury, R., Kizhisseri, M., Nawaz, R., McDonald, A. and Tompkins, J.. 2016. Abu Dhabi water budget model: technical documentation and user guide. United Arab Emirates. Unpublished.
Title

Abu Dhabi water budget model: technical documentation and user guide

Report TypeTechnical report
AuthorsMohamed, M. (Author), El-Shorbagy, W. (Author), Chowdhury, R. (Author), Kizhisseri, M. (Author), Nawaz, R. (Author), McDonald, A. (Author) and Tompkins, J. (Author)
Institution of OriginUnited Arab Emirates University
Number of Pages60
Year2016
PublisherUnpublished
Place of PublicationUnited Arab Emirates
Abstract

This document provides a user guide for the Abu Dhabi Water Budget Model (ADWBM). ADWBM is an easy-to-use model that has been developed using Microsoft Excel and not front end programming, such as visual basic. The Excel-based model was selected to ensure transparency by allowing users to observe/change input data under different scenarios. ADWBM is developed based on system dynamics methodology and comprises four supply sources (groundwater, desalination, treated wastewater and surface water), seven demand sectors (agriculture, forestry, amenities, residential, municipal, commercial and industrial), and three transfer components held as separate worksheets. Several additional worksheets are included to facilitate data entry, data review, and outputs retention for later comparison. ADWBM allows interactions and feedbacks between different water budget components.

Details of all model modules along with list of all assumptions used are also included in this document. A conceptual water budget model was first designed and used to develop a static water budget in Abu Dhabi by achieving mass balance among demand sectors, resources and main transfer components for the period from 2008 to 2014. The static model is then expanded into a dynamic water budget model. The model has been calibrated against the best available data. Then, it was used to evaluate the impact of conservation policies on water demand and water vailability in Abu Dhabi Emirate. The model can be used to examine the effects of various interventions on the seven water demand sectors and to estimate the supply-demand imbalances over time. This manual also includes step-by-step guide on how to use the model. The model can be easily used by any individual with basic background of water resources. The ADWBM model can be updated consequently upon receiving more consistent and reliable datasets from different stakeholders.

Apart from the model ability to present different water budget scenarios, ADWBM can also handle options for allocating water to different demand sectors. Additionally, the model can accommodate future population growth in Abu Dhabi Emirate into new water budget scenarios. ADWBM can be used as a robust tool to assist developing efficient management and conservation future plans of water resources in the Emirate of Abu Dhabi. It could allow regulators to carry out independent assessments of the water budget until the year 2050 with the available water resources and growing water demands. This tool will also allow water policy makers to identify sustainable future scenarios.

The key features of ADWBM are:

1. Establish an accurate understanding of the current water supply and demand in Abu Dhabi Emirate.
2. Project water demand until 2050 through different built-in scenarios.
3. Ensure scenarios reflect future likely policies and conservation plans reported in AD 2030 vision.
4. Recommend the most feasible and future practical water plans through user-defined scenarios.
5. Identify interventions that could lead to most effective demand reductions.
6. Allocate available water resources to different demand sectors.

KeywordsAbu Dhabi; Water Budget Model
ANZSRC Field of Research 2020400513. Water resources engineering
Public Notes

Copyright:
© 2016 Environment Agency-Abu Dhabi. To the extent permitted by law, all rights are reserved and no part of this publication covered by copyright may be reproduced or copied in any form or by any means except with the written permission of the Environment Agency – Abu Dhabi.

Byline AffiliationsUnited Arab Emirates University, United Arab Emirates
No affiliation
University of Leeds, United Kingdom
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Chowdhury, Rezaul K., Sharvelle, Sybil E. and Beecham, Simon. 2016. "Greywater quality changes in a permeable pavement reservoir." Proceedings of the Institution of Civil Engineers: Water Management. 169 (4), pp. 190-198. https://doi.org/10.1680/wama.14.00107
Statistical downscaling of rainfall: a non-stationary and multi-resolution approach
Rashid, Md. Mamunur, Beecham, Simon and Chowdhury, Rezaul Kabir. 2016. "Statistical downscaling of rainfall: a non-stationary and multi-resolution approach." Theoretical and Applied Climatology. 124 (3-4), pp. 919-933. https://doi.org/10.1007/s00704-015-1465-3
Learning and teaching style assessment for improving project-based learning of engineering students: a case of United Arab Emirates University
Chowdhury, R. K.. 2016. "Learning and teaching style assessment for improving project-based learning of engineering students: a case of United Arab Emirates University." Australasian Journal of Engineering Education. 20 (1), pp. 81-94. https://doi.org/10.7158/D13-014.2015.20.1
Quantitative assessment of residential water end uses and greywater generation in the City of Al Ain
Chowdhury, Rezaul K., El-Shorbagy, Walid, Ghanma, Mwafag and El-Ashkar, Assem. 2015. "Quantitative assessment of residential water end uses and greywater generation in the City of Al Ain." Water Science and Technology: Water Supply. 15 (1), pp. 114-123. https://doi.org/10.2166/ws.2014.090
Understanding South Australian rainfall trends and step changes
Chowdhury, Rezaul K., Beecham, Simon, Boland, John and Piantadosi, Julia. 2015. "Understanding South Australian rainfall trends and step changes." International Journal of Climatology. 35 (3), pp. 348-360. https://doi.org/10.1002/joc.3982
Statistical characteristics of rainfall in the Onkaparinga catchment in South Australia
Rashid, M. Mamunur, Beecham, Simon and Chowdhury, Rezaul K.. 2015. "Statistical characteristics of rainfall in the Onkaparinga catchment in South Australia." Journal of Water and Climate Change. 6 (2), pp. 352-373. https://doi.org/10.2166/wcc.2014.031
Assessment of trends in point rainfall using Continuous Wavelet Transforms
Rashid, Md. Mamunur, Beecham, Simon and Chowdhury, Rezaul Kabir. 2015. "Assessment of trends in point rainfall using Continuous Wavelet Transforms." Advances in Water Resources. 82, pp. 1-15. https://doi.org/10.1016/j.advwatres.2015.04.006
Statistical downscaling of CMIP5 outputs for projecting future changes in rainfall in the Onkaparinga catchment
Rashid, Md. Mamunur, Beecham, Simon and Chowdhury, Rezaul K.. 2015. "Statistical downscaling of CMIP5 outputs for projecting future changes in rainfall in the Onkaparinga catchment." Science of the Total Environment. 530-531, pp. 171-182. https://doi.org/10.1016/j.scitotenv.2015.05.024
Greywater reuse through a bioretention system prototype in the arid region
Chowdhury, Rezaul K.. 2015. "Greywater reuse through a bioretention system prototype in the arid region." Water Science and Technology. 72 (12), pp. 2201-2211. https://doi.org/10.2166/wst.2015.442
Variability of extreme hydro-climate parameters in the north-eastern region of United Arab Emirates
Chowdhury, Rezaul, Mohamed, Mohamad M. A. and Murad, Ahmed. 2016. "Variability of extreme hydro-climate parameters in the north-eastern region of United Arab Emirates." Procedia Engineering. 154 (2016), pp. 639-644. https://doi.org/10.1016/j.proeng.2016.07.563
Leakage and failures of water distribution mains in the city of Al Ain, UAE
Chowdhury, R. K. and Rajput, M. A.. 2016. "Leakage and failures of water distribution mains in the city of Al Ain, UAE." Water Practice and Technology. 11 (4), pp. 806-814. https://doi.org/10.2166/wpt.2016.086
Greywater quality changes in laboratory scale vegetative biofiltration prototypes
Chowdhury, Rezaul K., Abaya, Jameelu S., Tsiksi, Taoufik and Mohamed, Mohamad M.. 2017. "Greywater quality changes in laboratory scale vegetative biofiltration prototypes ." The Journal of Water Management Modeling (JWMM). 26 (C434), pp. 1-7. https://doi.org/10.14796/JWMM.C434
An alternative method for estimating total impervious area in catchments using high-resolution colour aerial photography
Hartcher, Michael G. and Chowdhury, Rezaul K.. 2017. "An alternative method for estimating total impervious area in catchments using high-resolution colour aerial photography." Water Practice and Technology. 12 (2), pp. 478-486. https://doi.org/10.2166/wpt.2017.053
Will greywater reuse really affect the sewer flow? Experience of a residential complex in Al Ain, UAE
Chowdhury, R. K. and Rajput, M. A.. 2017. "Will greywater reuse really affect the sewer flow? Experience of a residential complex in Al Ain, UAE." Water Science and Technology: Water Supply. 17 (1), pp. 246-258. https://doi.org/10.2166/ws.2016.131
Evaluation of groundwater quality in the Eastern District of Abu Dhabi Emirate, UAE
Mohamed, Mohamed M., Murad, Ahmed and Chowdhury, RezaulKabir. 2017. "Evaluation of groundwater quality in the Eastern District of Abu Dhabi Emirate, UAE." Bulletin of Environmental Contamination and Toxicology. 98 ( 3), pp. 385-391. https://doi.org/10.1007/s00128-016-2017-y
Simulation of extreme rainfall and projection of future changes using the GLIMCLIM model
Rashid, Md. Mamunur, Beecham, Simon and Chowdhury, Resaul Kabir. 2017. "Simulation of extreme rainfall and projection of future changes using the GLIMCLIM model." Theoretical and Applied Climatology. 130 (1-2), pp. 453-466. https://doi.org/10.1007/s00704-016-1892-9
A comparative assessment of variable selection methods in urban water demand forecasting
Haque, Md Mahmudul, Rahman, Ataur, Hagare, Dharma and Chowdhury, Rezaul Kabir. 2018. "A comparative assessment of variable selection methods in urban water demand forecasting." Water: an open access journal. 10 (4), pp. 1-15. https://doi.org/10.3390/w10040419
An experimental study of greywater irrigated green roof systems in an arid climate
Chowdhury, Rezaul K and Abaya, Jameelu S.. 2018. "An experimental study of greywater irrigated green roof systems in an arid climate." The Journal of Water Management Modeling (JWMM). 26 (C437), pp. 1-10. https://doi.org/10.14796/JWMM.C437
Performance criteria for multi-sourced urban water systems
Chowdhury, R. and Beecham, S.. 2011. "Performance criteria for multi-sourced urban water systems." 12th International Conference on Urban Drainage (IUCD 2011). Porto Alegre, Brazil 11 - 16 Sep 2011 Brazil.