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Optimatics worked with Southern Water and Arcadis to optimize interventions addressing rising groundwater nitrate concentrations, in conjunction with overall hydraulic performance and network resilience.

The key objective was to pilot the application of a resilience framework with optimization in a real and practical environment, and understand the capability needs for scalability across the region. This project suggests a 20-50% CAPEX and OPEX savings or budget stretch is possible.

Arcadis helped develop an industry-leading resilience framework which it translated into Southern Water. Optimatics configured bespoke functionality to integrate this framework into Optimizer, allowing multiobjective optimization between cost, performance, and resilience.

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Holistic Assessment
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Integrated Bespoke Resilience Methodology
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Multi-objective Analysis

The key business drivers of this project were to improve system redundancy, address rising groundwater nitrate concentration risks, and address rising costs of nitrate removal with the most cost-effective asset locations for the Thanet Network.

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Nitrate Concentration
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Network Resilience
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Hydraulic Performance
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Cost

Approach

Southern Water, ARCADIS, and Optimatics worked collaboratively to develop and apply new functionality as relevant to this application. Through the process, Southern Water gained a better understanding of the needs and possibilities of working with Optimizer. The project has been an opportunity to test asset mix options, provide better clarity of Southern Water’s needs, and engage other stakeholders in the business.

There were various iterations of the methodology as learnings emerged through the process of formulating the problem and reviewing results. The problem was thus able to be explored in much more detail than what was possible before using Optimizer.

Analysis Outcomes

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3D graph showing performance penalties, asset totex, and resilience

On a performance vs. cost basis, Southern Water was able to find asset combinations 20-50% cheaper than their previously defined plan. In addition, solutions were evaluated more comprehensively in terms of their hydraulic and water quality performance.

The multi-objective optimization allowed the conjunctive consideration of network resilience. Understanding how resilience changed with cost allowed Southern Water to quantify a meaningful step change in resilience and define how it could be achieved.

Conclusion

The bespoke resilience methodology developed by Arcadis was incorporated into the Optimizer platform, enabling multi-objective optimization of water quality, hydraulic performance, network resilience, and cost. Significant cost savings were achieved through the project. A transparent and scalable methodology was developed that Southern Water could replicate in other networks.

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