HYDRAULIC MODELLING

Advanced simulations for intelligent infrastructure management.

The complexity of technology networks, such as aqueducts, sewers, and drainage systems, requires advanced analysis and simulation tools to ensure optimal operation.

 

Aquanexa offers a complete service, designed to analyze, simulate and optimize the behavior of technological networks, providing decision support to operators: hydraulic invariance and hydraulic risk management studies, hydraulic modeling, optimization of underground piping routes, 3D return of spillways/chambers/pumping stations and operation analysis.

 

Using state-of-the-art hydraulic modeling software, we combine real data collected in the field, and analysis of the interactions between technological networks and territory, with predictive algorithms to create virtual representations of infrastructures, according to the following steps:

  • study of the network and territory;
  • evaluation of districts;
  • understanding of network operation and water systems;
  • mathematical modeling of the network;
  • calibration of models with the use of measured data series.

 

These models make it possible to predict the behavior of networks under different operating conditions, simulate hydraulic stress scenarios, and identify potential criticalities before they become real problems.

 

This approach supports more efficient resource management, improving  intervention planning and reducing operating costs, all while complying with environmental regulations.

Application areas

Extended waterExtended water
GasGas
District heatingDistrict heating
WasteWaste
InfrastructuresInfrastructures
Smart citiesSmart cities
AgricultureAgriculture

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Planning support

Precise data to design targeted interventions and optimize resources.

Risk prevention

Early identification of critical issues to improve the resilience of infrastructures.

Reduced operating costs

Efficiency in the management of water and energy resources.

Sustainability

Promoting solutions that are more environmentally friendly and aligned with the Sustainable Development Goals.

Dynamic simulations

Real-time analytics to assess the behavior of the network under varying conditions, such as peak demand or extreme weather events.

Crisis scenario forecasting

Simulation of extraordinary events, such as breakdowns or floods, to plan response strategies.

Energy Analysis

Evaluation of the operational efficiency of the network to identify opportunities for energy savings.

Advanced digital representations

3D models of networks to visualize flows, pressures, and loads intuitively.

Integration with SCADA systems

Synchronization with remote control platforms for continuous updates and monitoring.

Regulatory compliance

Verification of networks against environmental and safety standards required by current legislation.

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