Decision Support Systems Based on a Multiple-Criteria Decision Analysis to Promote a Whole-of-Resource Approach for Water Management, with a Case Study of Rural Bengaluru in India

Author:

Shah Tavseef Mairaj1ORCID,Egwu Chidinma Onyekaozuoro1,Hammad Mohammad1,Otterpohl Ralf1

Affiliation:

1. Institute of Wastewater Management and Water Protection, Hamburg University of Technology, 21073 Hamburg, Germany

Abstract

The sustainable availability and resilient supply of safe drinking water remains a challenge that is far from fulfilled. As of 2024, around 2 billion people worldwide do not have access to safe drinking water. The regions of Sub-Saharan Africa and South Asia are the most vulnerable regions in this regard. This is despite the fact that these regions are home to some of the world’s fastest-growing economies. However, economic growth and rapid urbanization may also be connected to the increasing water stress in the suburban and rural areas. We propose addressing the two main challenges in this regard, which are the selection of the suitable treatment and distribution systems for different contexts using a decision support system following a Whole-of-Resource Approach (WORA). This approach considers the different water sources and sinks as contributing to a positive or negative change in the single resource, irrespective of whether the resource, in this case water, is used for domestic, industrial, or agricultural purposes. In this regard, this paper presents an illustrative proof of concept for such a decision support tool based on a multiple-criteria decision analysis. The decision support tool is aimed at facilitating water management within a WORA by providing recommendations regarding rainwater harvesting and savings in agricultural water consumption, in addition to suggesting water treatment and distribution systems, enabling systemic water resource management adapted to local context-specific conditions and needs.

Publisher

MDPI AG

Reference52 articles.

1. Evans, A.E.V., Varma, S., and Krishnamurthy, A. (2014, January 15–19). Formal Approaches to Wastewater Reuse in Bangalore, India. Proceedings of the 37th WEDC International Conference, Hanoi, Vietnam.

2. Paul, R. (2020). Energy Sensitive Urban Water Planning in Developing Countries: Unlocking the Potential of Distributed Recycled Water Systems to Reduce the Overall Energy Intensity for Urban Water Services, University of Technology Sydney.

3. Appropriate Technologies for Drinking water Treatment in Mediterranean Countries;Sorlini;Environ. Eng. Manag. J.,2015

4. Decentralized Systems for Potable Water and the Potential of Membrane Technology;Swartz;Water Res.,2009

5. Ramachandra, T.V., Vinay, S., Mahapatra, D.M., Varghese, S., and Withal, B.H. (2016). Water Situation in Bengaluru. ENVIS Technical Report 114, Environmental Information System, CES.

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