Forecasting services for run-of-river hydropower plants

River flow forecasting services to enhance and optimize the peformance of hydropower plants.

hydropower plant

River discharge forecasts revolutionize hydropower

Efficient energy production 

Optimize energy production with forecasted river flows, maximizing electricity generation at times of peak demand.

Minimized infrastructure damages

Be better prepared for extreme discharge events, reducing repair costs and production downtime.

Optimized water resource management 

Manage reservoir level based on discharge data, ensuring sustainable supply of water.

Increased regulatory compliance

Adapting the operations to discharge conditions, and not exceeding environmental flow regulatory thresholds.

Enhanced energy trading revenues

By utilizing our 10-day forecasts, you can simplify your decision-making process between SPOT, future contracts, and regulated markets.

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Maximize your hydroelectricity production

Automate your hydropower plant further

Incoming river flow measurements unleash further water catchment and revenues.

Detect anomalies in real-time

Early anomaly detection reduces your reaction time and prevents your electricity production from suffering evitable losses.

Quantify efficiency drifts

Detect sub-optimal energy production and trigger maintenance prior to suffering losses.

Increase revenues, prevent damages

Optimize energy trading revenues

With next-day and next-week river flow forecasts, your choice between SPOT, future contract and regulated markets is made easy.

Secure your installation before it’s too late

Mid-term water level forecasts provide you with information on future flood events, giving you time to deploy preventive measures. Flood forecasts are now a reality!

Hedge your investment against droughts

Subscribe to our insurance contract to protect your hydroelectricity generation revenues from prolonged droughts.

Get river flow and water level forecasts

BWI specializes in providing near real-time estimates and forecasts of inland surface water bodies around the globe. It combines in-situ data, spaceborne observations, and machine learning to feed and empower hydrological and hydrodynamical models. Through an online, subscription-based service, BWI aims to make scalable – across space and time – hydrological software to address climate change-induced water stress. This value proposition proves particularly useful to the hydropower value chain (hydropower plant operators, energy poolers, energy resellers), who reduce water spills, streamline maintenance, and derive additional profits from electricity markets.

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