AquaSymb is an innovative, cloud-based platform designed to catalyze the formation, optimization, and management of water reuse consortia. Operating at the intersection of circular economy, digitalization, and advanced computing, AquaSymb enables small geographical entities—such as industrial parks, agricultural cooperatives, and peri-urban clusters—to orchestrate mutualized water networks. The core engine simulates and optimizes multi-source water cascades by evaluating inflow requirements, discharge parameters, and operating schedules in high-resolution time intervals (5 to 15 minutes). This reduces freshwater withdrawal and hazardous effluents while maximizing the integration of treatment technologies (membranes, nature-based systems) and storage infrastructures.
To transform these technical simulations into viable projects, AquaSymb embeds a holistic ecosystem encompassing Symbiosis Readiness Level (SRL) diagnostics, financial viability modeling (CAPEX/OPEX/ROI), and governance frameworks. The platform is ready for integrating a rainwater harvesting and storm-water management module, which dynamically routes meteoric inputs for direct process consumption or contaminant dilution inside accumulation tanks.
AquaSymb bridges numerical modeling and geographical reality. The AI system interprets topological, land-use, and hydrological metadata to automate pipeline routing, optimize facility localization, and predict rainwater volumes through real-time meteorological feeds. Furthermore, in its operational phase, AquaSymb uses Machine Learning for real-time anomaly detection, predictive maintenance of treatment membranes, and prescriptive flux adjustments, ensuring environmental resilience and long-term socio-economic viability.