This paper presents the "WaterMet2" model for long-term assessment of urban water system (UWS) performance which will be used for strategic planning of the integrated UWS. WaterMet2 quantifies the principal water-related flows and other metabolism-based fluxes in the UWS such as materials, chemicals, energy and greenhouse gas emissions. The suggested model is demonstrated through sustainability-based assessment of an integrated real-life UWS for a daily time-step over a 30-year planning horizon. The integrated UWS modelled by WaterMet2 includes both water supply and wastewater systems. Given a rapid population growth, WaterMet2 calculates six quantitative sustainability-based indicators of the UWS. The result of the water supply reliability...
University of Technology, Sydney. Institute for Sustainable Futures.This thesis develops and applies...
This paper presents a new “WaterMet2” model for integrated modelling of an urban water system (UWS)....
Strengthening the resilience of integrated urban water systems (UWS) comprised of water supply and s...
This paper presents the "WaterMet2" model for long-term assessment of urban water system (UWS) perfo...
This paper presents the "WaterMet2" model for long-term assessment of urban water system (UWS) perfo...
This paper presents a new quantitative model called ‘WaterMet2’ for the metabolism based assessment ...
Despite providing water-related services as the primary purpose of urban water system (UWS), all rel...
The WaterMet2 tool encapsulates a conceptual, mass balance based model that enables quantifying the ...
TRUST project / IWA Cities of the Future conference, Mülheim an der Ruhr, Germany, 28-30 April 2015...
This paper presents a new “WaterMet2” model for integrated modelling of an urban water system (UWS)....
There is a discernible need for a holistic, long-term and sustainability approach in decision-making...
This is an Accepted Manuscript of an article published by Taylor & Francis in Urban Water Journal on...
Increasing urban water demand and water stress conditions due to population growth, combined with cl...
Increasing urban water demand and water stress conditions due to population growth, combined with cl...
Water resources in urban areas have been managed for a long time following the engineering approach,...
University of Technology, Sydney. Institute for Sustainable Futures.This thesis develops and applies...
This paper presents a new “WaterMet2” model for integrated modelling of an urban water system (UWS)....
Strengthening the resilience of integrated urban water systems (UWS) comprised of water supply and s...
This paper presents the "WaterMet2" model for long-term assessment of urban water system (UWS) perfo...
This paper presents the "WaterMet2" model for long-term assessment of urban water system (UWS) perfo...
This paper presents a new quantitative model called ‘WaterMet2’ for the metabolism based assessment ...
Despite providing water-related services as the primary purpose of urban water system (UWS), all rel...
The WaterMet2 tool encapsulates a conceptual, mass balance based model that enables quantifying the ...
TRUST project / IWA Cities of the Future conference, Mülheim an der Ruhr, Germany, 28-30 April 2015...
This paper presents a new “WaterMet2” model for integrated modelling of an urban water system (UWS)....
There is a discernible need for a holistic, long-term and sustainability approach in decision-making...
This is an Accepted Manuscript of an article published by Taylor & Francis in Urban Water Journal on...
Increasing urban water demand and water stress conditions due to population growth, combined with cl...
Increasing urban water demand and water stress conditions due to population growth, combined with cl...
Water resources in urban areas have been managed for a long time following the engineering approach,...
University of Technology, Sydney. Institute for Sustainable Futures.This thesis develops and applies...
This paper presents a new “WaterMet2” model for integrated modelling of an urban water system (UWS)....
Strengthening the resilience of integrated urban water systems (UWS) comprised of water supply and s...